際際滷shows by User: shinycthomas / http://www.slideshare.net/images/logo.gif 際際滷shows by User: shinycthomas / Sun, 28 Aug 2022 06:22:10 GMT 際際滷Share feed for 際際滷shows by User: shinycthomas Herbal drug technology.pdf /slideshow/herbal-drug-technologypdf/252728124 herbaldrugtechnology-220828062210-98ef6dbd
Herbal Drug Technology Herbs as Raw Materials: Definition of herb, herbal medicine, herbal medicinal product and herbal drug preparation, source of herbs, selection, identification and authentication of herbal materials, processing of herbal raw material. Herbal Excipients : Herbal Excipients Significance of substances of natural origin as excipients, colorants, sweeteners, binders, diluents, viscosity builders, dis-integrants, flavors & perfumes. Herbal Formulations: Stages involved in herbal formulations, Orthodox formulations and methods of delivery of herbal extracts, Novel formulations of herbal extracts.]]>

Herbal Drug Technology Herbs as Raw Materials: Definition of herb, herbal medicine, herbal medicinal product and herbal drug preparation, source of herbs, selection, identification and authentication of herbal materials, processing of herbal raw material. Herbal Excipients : Herbal Excipients Significance of substances of natural origin as excipients, colorants, sweeteners, binders, diluents, viscosity builders, dis-integrants, flavors & perfumes. Herbal Formulations: Stages involved in herbal formulations, Orthodox formulations and methods of delivery of herbal extracts, Novel formulations of herbal extracts.]]>
Sun, 28 Aug 2022 06:22:10 GMT /slideshow/herbal-drug-technologypdf/252728124 shinycthomas@slideshare.net(shinycthomas) Herbal drug technology.pdf shinycthomas Herbal Drug Technology Herbs as Raw Materials: Definition of herb, herbal medicine, herbal medicinal product and herbal drug preparation, source of herbs, selection, identification and authentication of herbal materials, processing of herbal raw material. Herbal Excipients : Herbal Excipients Significance of substances of natural origin as excipients, colorants, sweeteners, binders, diluents, viscosity builders, dis-integrants, flavors & perfumes. Herbal Formulations: Stages involved in herbal formulations, Orthodox formulations and methods of delivery of herbal extracts, Novel formulations of herbal extracts. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/herbaldrugtechnology-220828062210-98ef6dbd-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Herbal Drug Technology Herbs as Raw Materials: Definition of herb, herbal medicine, herbal medicinal product and herbal drug preparation, source of herbs, selection, identification and authentication of herbal materials, processing of herbal raw material. Herbal Excipients : Herbal Excipients Significance of substances of natural origin as excipients, colorants, sweeteners, binders, diluents, viscosity builders, dis-integrants, flavors &amp; perfumes. Herbal Formulations: Stages involved in herbal formulations, Orthodox formulations and methods of delivery of herbal extracts, Novel formulations of herbal extracts.
Herbal drug technology.pdf from shinycthomas
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Metabolomics-II.pdf /slideshow/metabolomicsiipdf/252727650 metabolomics-ii-220828045545-feb1562b
Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.]]>

Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.]]>
Sun, 28 Aug 2022 04:55:45 GMT /slideshow/metabolomicsiipdf/252727650 shinycthomas@slideshare.net(shinycthomas) Metabolomics-II.pdf shinycthomas Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/metabolomics-ii-220828045545-feb1562b-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.
Metabolomics-II.pdf from shinycthomas
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metabolomics-Overview.pdf /slideshow/metabolomicsoverviewpdf/252727503 metabolomics-overview-220828043211-e1bdfab9
Metabolomics-Introduction, metabolism, intermediary metabolism, metabolic pathways, metabolites, metabolome, metabolic turnover, techniques used in metabolomics, metabolite profiling methods, data analysis, metabolomic resources, role of metabolomics in system biology. ]]>

Metabolomics-Introduction, metabolism, intermediary metabolism, metabolic pathways, metabolites, metabolome, metabolic turnover, techniques used in metabolomics, metabolite profiling methods, data analysis, metabolomic resources, role of metabolomics in system biology. ]]>
Sun, 28 Aug 2022 04:32:11 GMT /slideshow/metabolomicsoverviewpdf/252727503 shinycthomas@slideshare.net(shinycthomas) metabolomics-Overview.pdf shinycthomas Metabolomics-Introduction, metabolism, intermediary metabolism, metabolic pathways, metabolites, metabolome, metabolic turnover, techniques used in metabolomics, metabolite profiling methods, data analysis, metabolomic resources, role of metabolomics in system biology. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/metabolomics-overview-220828043211-e1bdfab9-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Metabolomics-Introduction, metabolism, intermediary metabolism, metabolic pathways, metabolites, metabolome, metabolic turnover, techniques used in metabolomics, metabolite profiling methods, data analysis, metabolomic resources, role of metabolomics in system biology.
metabolomics-Overview.pdf from shinycthomas
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Proteomics, techniques, applications.pdf /slideshow/proteomics-techniques-applicationspdf/252727241 proteomicstechniquesapplications-220828035128-7b52109c
Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.]]>

Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.]]>
Sun, 28 Aug 2022 03:51:28 GMT /slideshow/proteomics-techniques-applicationspdf/252727241 shinycthomas@slideshare.net(shinycthomas) Proteomics, techniques, applications.pdf shinycthomas Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/proteomicstechniquesapplications-220828035128-7b52109c-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Introduction to proteomics, techniques to study proteomics such as protein electrophoresis, chromatography and mass spectrometry and protein database analysis, case studies derived from scientific literature including comparisons between healthy and diseased tissues, new approaches to analyse metabolic pathways, comprehensive analysis of protein-protein interactions in different cell types.
Proteomics, techniques, applications.pdf from shinycthomas
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Transcriptomics,techniqes, applications.pdf /slideshow/transcriptomicstechniqes-applicationspdf/252727005 transcriptomicstechniqesapplications-220828031707-9bdf13bd
The analysis of global gene expression and transcription factor regulation, global approaches to alternative splicing and its regulation, long noncoding RNAs, gene expression models of signalling pathways, from gene expression to disease phenotypes, introduction to isoform sequencing, systematic and integrative analysis of gene expression to identify feature genes underlying human diseases.]]>

The analysis of global gene expression and transcription factor regulation, global approaches to alternative splicing and its regulation, long noncoding RNAs, gene expression models of signalling pathways, from gene expression to disease phenotypes, introduction to isoform sequencing, systematic and integrative analysis of gene expression to identify feature genes underlying human diseases.]]>
Sun, 28 Aug 2022 03:17:07 GMT /slideshow/transcriptomicstechniqes-applicationspdf/252727005 shinycthomas@slideshare.net(shinycthomas) Transcriptomics,techniqes, applications.pdf shinycthomas The analysis of global gene expression and transcription factor regulation, global approaches to alternative splicing and its regulation, long noncoding RNAs, gene expression models of signalling pathways, from gene expression to disease phenotypes, introduction to isoform sequencing, systematic and integrative analysis of gene expression to identify feature genes underlying human diseases. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/transcriptomicstechniqesapplications-220828031707-9bdf13bd-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> The analysis of global gene expression and transcription factor regulation, global approaches to alternative splicing and its regulation, long noncoding RNAs, gene expression models of signalling pathways, from gene expression to disease phenotypes, introduction to isoform sequencing, systematic and integrative analysis of gene expression to identify feature genes underlying human diseases.
Transcriptomics,techniqes, applications.pdf from shinycthomas
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Gene exp-expression models-techniques.pdf /slideshow/gene-expexpression-modelstechniquespdf/252712126 geneexp-expressionmodels-techniques-220826121750-86cf0610
Gene expression-Transcription and translation. Transcription: Initiation, elongation, termination, processing. Splicing, exon, intron, promoter, enhancer, silencers or repressors. Translation-Initiation, elongation, termination, post-translation. Gene regulation, transcription factors. Gene expression models, prokaryotic and eukaryotic gene expression, signal transduction, gene expression technology]]>

Gene expression-Transcription and translation. Transcription: Initiation, elongation, termination, processing. Splicing, exon, intron, promoter, enhancer, silencers or repressors. Translation-Initiation, elongation, termination, post-translation. Gene regulation, transcription factors. Gene expression models, prokaryotic and eukaryotic gene expression, signal transduction, gene expression technology]]>
Fri, 26 Aug 2022 12:17:50 GMT /slideshow/gene-expexpression-modelstechniquespdf/252712126 shinycthomas@slideshare.net(shinycthomas) Gene exp-expression models-techniques.pdf shinycthomas Gene expression-Transcription and translation. Transcription: Initiation, elongation, termination, processing. Splicing, exon, intron, promoter, enhancer, silencers or repressors. Translation-Initiation, elongation, termination, post-translation. Gene regulation, transcription factors. Gene expression models, prokaryotic and eukaryotic gene expression, signal transduction, gene expression technology <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/geneexp-expressionmodels-techniques-220826121750-86cf0610-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Gene expression-Transcription and translation. Transcription: Initiation, elongation, termination, processing. Splicing, exon, intron, promoter, enhancer, silencers or repressors. Translation-Initiation, elongation, termination, post-translation. Gene regulation, transcription factors. Gene expression models, prokaryotic and eukaryotic gene expression, signal transduction, gene expression technology
Gene exp-expression models-techniques.pdf from shinycthomas
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population genomics.pdf /slideshow/population-genomicspdf/252711906 populationgenomics-220826120203-1de33c36
Population genomics: Description, history, research applications, mathematical models, future developments]]>

Population genomics: Description, history, research applications, mathematical models, future developments]]>
Fri, 26 Aug 2022 12:02:03 GMT /slideshow/population-genomicspdf/252711906 shinycthomas@slideshare.net(shinycthomas) population genomics.pdf shinycthomas Population genomics: Description, history, research applications, mathematical models, future developments <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/populationgenomics-220826120203-1de33c36-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Population genomics: Description, history, research applications, mathematical models, future developments
population genomics.pdf from shinycthomas
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Sanger-Shortgun sequencing.pdf /slideshow/sangershortgun-sequencingpdf/252711764 sanger-shortgunsequencing-220826114801-85c39b2a
Sanger Sequencing-chain termination method, gold standard for validating DNA sequences, dideoxynucleotide triphosphates , steps of Sanger sequencing. Shotgun sequencing-Steps, limitation]]>

Sanger Sequencing-chain termination method, gold standard for validating DNA sequences, dideoxynucleotide triphosphates , steps of Sanger sequencing. Shotgun sequencing-Steps, limitation]]>
Fri, 26 Aug 2022 11:48:01 GMT /slideshow/sangershortgun-sequencingpdf/252711764 shinycthomas@slideshare.net(shinycthomas) Sanger-Shortgun sequencing.pdf shinycthomas Sanger Sequencing-chain termination method, gold standard for validating DNA sequences, dideoxynucleotide triphosphates , steps of Sanger sequencing. Shotgun sequencing-Steps, limitation <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/sanger-shortgunsequencing-220826114801-85c39b2a-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Sanger Sequencing-chain termination method, gold standard for validating DNA sequences, dideoxynucleotide triphosphates , steps of Sanger sequencing. Shotgun sequencing-Steps, limitation
Sanger-Shortgun sequencing.pdf from shinycthomas
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Next Generation Sequencing /slideshow/next-generation-sequencing-252711674/252711674 ngs-220826113811-5a3966ba
NGS -Highthroughput sequencing: Illumina (Solexa) sequencing Roche 454 sequencing Ion torrent: Proton / PGM sequencing SOLiD sequencing ]]>

NGS -Highthroughput sequencing: Illumina (Solexa) sequencing Roche 454 sequencing Ion torrent: Proton / PGM sequencing SOLiD sequencing ]]>
Fri, 26 Aug 2022 11:38:11 GMT /slideshow/next-generation-sequencing-252711674/252711674 shinycthomas@slideshare.net(shinycthomas) Next Generation Sequencing shinycthomas NGS -Highthroughput sequencing: Illumina (Solexa) sequencing Roche 454 sequencing Ion torrent: Proton / PGM sequencing SOLiD sequencing <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/ngs-220826113811-5a3966ba-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> NGS -Highthroughput sequencing: Illumina (Solexa) sequencing Roche 454 sequencing Ion torrent: Proton / PGM sequencing SOLiD sequencing
Next Generation Sequencing from shinycthomas
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Genomics-health, Pharmacogenomics.pdf /slideshow/genomicshealth-pharmacogenomicspdf/252710866 genomics-healthpharmacogenomics-220826102003-dd6e7c8d
Public health genomics-personalized medicine, population health, ]]>

Public health genomics-personalized medicine, population health, ]]>
Fri, 26 Aug 2022 10:20:03 GMT /slideshow/genomicshealth-pharmacogenomicspdf/252710866 shinycthomas@slideshare.net(shinycthomas) Genomics-health, Pharmacogenomics.pdf shinycthomas Public health genomics-personalized medicine, population health, <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/genomics-healthpharmacogenomics-220826102003-dd6e7c8d-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Public health genomics-personalized medicine, population health,
Genomics-health, Pharmacogenomics.pdf from shinycthomas
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GENOME PROJECTS .pdf /slideshow/genome-projects-pdf/252710616 genomeprojects-220826095430-7f2140cf
Genome projects Definition of genome, history of genome projects, whole genome sequencing, Maxam Gilbert sequencing, sanger sequencing, explanation on the first sequenced organisms (Bacteriophage, bacteria, archaeon, virus, bakers yeast, nematode. Model organism-Arabidopsis thaliana, Mus musculus, Oryza sativa, Pan troglodyte etc. Human genome project, milestones and significance.]]>

Genome projects Definition of genome, history of genome projects, whole genome sequencing, Maxam Gilbert sequencing, sanger sequencing, explanation on the first sequenced organisms (Bacteriophage, bacteria, archaeon, virus, bakers yeast, nematode. Model organism-Arabidopsis thaliana, Mus musculus, Oryza sativa, Pan troglodyte etc. Human genome project, milestones and significance.]]>
Fri, 26 Aug 2022 09:54:30 GMT /slideshow/genome-projects-pdf/252710616 shinycthomas@slideshare.net(shinycthomas) GENOME PROJECTS .pdf shinycthomas Genome projects Definition of genome, history of genome projects, whole genome sequencing, Maxam Gilbert sequencing, sanger sequencing, explanation on the first sequenced organisms (Bacteriophage, bacteria, archaeon, virus, bakers yeast, nematode. Model organism-Arabidopsis thaliana, Mus musculus, Oryza sativa, Pan troglodyte etc. Human genome project, milestones and significance. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/genomeprojects-220826095430-7f2140cf-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Genome projects Definition of genome, history of genome projects, whole genome sequencing, Maxam Gilbert sequencing, sanger sequencing, explanation on the first sequenced organisms (Bacteriophage, bacteria, archaeon, virus, bakers yeast, nematode. Model organism-Arabidopsis thaliana, Mus musculus, Oryza sativa, Pan troglodyte etc. Human genome project, milestones and significance.
GENOME PROJECTS .pdf from shinycthomas
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Epigenetics & Epigenomics .pdf /slideshow/epigenetics-epigenomics-pdf/252710315 epigeneticsepigenomics-220826092918-6f1e57fc
Epigeneticsstudies stably heritable traits that cannot be explained by changes inDNA sequence. Covalent modifications in chromatin DNA- DNA methylation (CpG); hydroxymethylation Histone - lysine acetylation, lysine and arginine methylation, serine and threonine phosphorylation, and lysine ubiquitination and sumoylation Epigenetic mechanisms: Modified histones as post translational modification DNA methylation 5mC the 5th base, methyl transferases; genetic imprinting. Epigenomics: complete set ofepigeneticmodifications on the genetic material of a cell. Specific epigenetic regulation RNA interference X inactivation (Lyonization) Genomic imprinting Epigenetics in development and diseases. ]]>

Epigeneticsstudies stably heritable traits that cannot be explained by changes inDNA sequence. Covalent modifications in chromatin DNA- DNA methylation (CpG); hydroxymethylation Histone - lysine acetylation, lysine and arginine methylation, serine and threonine phosphorylation, and lysine ubiquitination and sumoylation Epigenetic mechanisms: Modified histones as post translational modification DNA methylation 5mC the 5th base, methyl transferases; genetic imprinting. Epigenomics: complete set ofepigeneticmodifications on the genetic material of a cell. Specific epigenetic regulation RNA interference X inactivation (Lyonization) Genomic imprinting Epigenetics in development and diseases. ]]>
Fri, 26 Aug 2022 09:29:17 GMT /slideshow/epigenetics-epigenomics-pdf/252710315 shinycthomas@slideshare.net(shinycthomas) Epigenetics & Epigenomics .pdf shinycthomas Epigeneticsstudies stably heritable traits that cannot be explained by changes inDNA sequence. Covalent modifications in chromatin DNA- DNA methylation (CpG); hydroxymethylation Histone - lysine acetylation, lysine and arginine methylation, serine and threonine phosphorylation, and lysine ubiquitination and sumoylation Epigenetic mechanisms: Modified histones as post translational modification DNA methylation 5mC the 5th base, methyl transferases; genetic imprinting. Epigenomics: complete set ofepigeneticmodifications on the genetic material of a cell. Specific epigenetic regulation RNA interference X inactivation (Lyonization) Genomic imprinting Epigenetics in development and diseases. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/epigeneticsepigenomics-220826092918-6f1e57fc-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Epigeneticsstudies stably heritable traits that cannot be explained by changes inDNA sequence. Covalent modifications in chromatin DNA- DNA methylation (CpG); hydroxymethylation Histone - lysine acetylation, lysine and arginine methylation, serine and threonine phosphorylation, and lysine ubiquitination and sumoylation Epigenetic mechanisms: Modified histones as post translational modification DNA methylation 5mC the 5th base, methyl transferases; genetic imprinting. Epigenomics: complete set ofepigeneticmodifications on the genetic material of a cell. Specific epigenetic regulation RNA interference X inactivation (Lyonization) Genomic imprinting Epigenetics in development and diseases.
Epigenetics & Epigenomics .pdf from shinycthomas
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Comparative genomics.pdf /slideshow/comparative-genomicspdf/252710088 comparativegenomics-220826091032-c4e44728
Comparative genomics: Genomic features are compared, evolutionary relationship The major principle of comparative genomics is that common features of two organisms will often be encoded within theDNAthat is evolutionarilyconservedbetween them. orthologoussequences, Started as soon as the whole genomes of two organisms became available (that is, the genomes of the bacteriaHaemophilus influenzaeandMycoplasma genitalium) in 1995, comparative genomics is now a standard component of the analysis of every new genome sequence. comparative genomics studies of smallmodel organisms(for example the modelCaenorhabditis elegansand closely relatedCaenorhabditis briggsae) are of great importance to advance our understanding of general mechanisms of evolution Computational tools for analyzing sequences and complete genomes. Application of comparative genomics in agriculture and medicine. ]]>

Comparative genomics: Genomic features are compared, evolutionary relationship The major principle of comparative genomics is that common features of two organisms will often be encoded within theDNAthat is evolutionarilyconservedbetween them. orthologoussequences, Started as soon as the whole genomes of two organisms became available (that is, the genomes of the bacteriaHaemophilus influenzaeandMycoplasma genitalium) in 1995, comparative genomics is now a standard component of the analysis of every new genome sequence. comparative genomics studies of smallmodel organisms(for example the modelCaenorhabditis elegansand closely relatedCaenorhabditis briggsae) are of great importance to advance our understanding of general mechanisms of evolution Computational tools for analyzing sequences and complete genomes. Application of comparative genomics in agriculture and medicine. ]]>
Fri, 26 Aug 2022 09:10:32 GMT /slideshow/comparative-genomicspdf/252710088 shinycthomas@slideshare.net(shinycthomas) Comparative genomics.pdf shinycthomas Comparative genomics: Genomic features are compared, evolutionary relationship The major principle of comparative genomics is that common features of two organisms will often be encoded within theDNAthat is evolutionarilyconservedbetween them. orthologoussequences, Started as soon as the whole genomes of two organisms became available (that is, the genomes of the bacteriaHaemophilus influenzaeandMycoplasma genitalium) in 1995, comparative genomics is now a standard component of the analysis of every new genome sequence. comparative genomics studies of smallmodel organisms(for example the modelCaenorhabditis elegansand closely relatedCaenorhabditis briggsae) are of great importance to advance our understanding of general mechanisms of evolution Computational tools for analyzing sequences and complete genomes. Application of comparative genomics in agriculture and medicine. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/comparativegenomics-220826091032-c4e44728-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Comparative genomics: Genomic features are compared, evolutionary relationship The major principle of comparative genomics is that common features of two organisms will often be encoded within theDNAthat is evolutionarilyconservedbetween them. orthologoussequences, Started as soon as the whole genomes of two organisms became available (that is, the genomes of the bacteriaHaemophilus influenzaeandMycoplasma genitalium) in 1995, comparative genomics is now a standard component of the analysis of every new genome sequence. comparative genomics studies of smallmodel organisms(for example the modelCaenorhabditis elegansand closely relatedCaenorhabditis briggsae) are of great importance to advance our understanding of general mechanisms of evolution Computational tools for analyzing sequences and complete genomes. Application of comparative genomics in agriculture and medicine.
Comparative genomics.pdf from shinycthomas
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Genomics-Mapping and sequencing.pdf /slideshow/genomicsmapping-and-sequencingpdf/252709942 genomics-mappingandsequencing-220826085740-5ad787e7
Mapping and sequencing genomes: Genetic and physical mapping, Sequencing genomes different strategies, High-throughput sequencing, next-generation sequencing technologies, comparative genomics, population genomics, epigenetics, Human genome project, pharmacogenomics, genomic medicine, applications of genomics to improve public health.]]>

Mapping and sequencing genomes: Genetic and physical mapping, Sequencing genomes different strategies, High-throughput sequencing, next-generation sequencing technologies, comparative genomics, population genomics, epigenetics, Human genome project, pharmacogenomics, genomic medicine, applications of genomics to improve public health.]]>
Fri, 26 Aug 2022 08:57:40 GMT /slideshow/genomicsmapping-and-sequencingpdf/252709942 shinycthomas@slideshare.net(shinycthomas) Genomics-Mapping and sequencing.pdf shinycthomas Mapping and sequencing genomes: Genetic and physical mapping, Sequencing genomes different strategies, High-throughput sequencing, next-generation sequencing technologies, comparative genomics, population genomics, epigenetics, Human genome project, pharmacogenomics, genomic medicine, applications of genomics to improve public health. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/genomics-mappingandsequencing-220826085740-5ad787e7-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Mapping and sequencing genomes: Genetic and physical mapping, Sequencing genomes different strategies, High-throughput sequencing, next-generation sequencing technologies, comparative genomics, population genomics, epigenetics, Human genome project, pharmacogenomics, genomic medicine, applications of genomics to improve public health.
Genomics-Mapping and sequencing.pdf from shinycthomas
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Disorders of liver and kidney, Nitrogen metabolism.pdf /slideshow/disorders-of-liver-and-kidney-nitrogen-metabolismpdf/252642554 disordersofliverandkidneynitrogenmetabolism-220822070630-1f249d12
Disorders of liver and kidney Jaundice, fatty liver, normal and abnormal functions of liver and kidney. Inulin and urea clearance. Abnormalities of nitrogen metabolism]]>

Disorders of liver and kidney Jaundice, fatty liver, normal and abnormal functions of liver and kidney. Inulin and urea clearance. Abnormalities of nitrogen metabolism]]>
Mon, 22 Aug 2022 07:06:30 GMT /slideshow/disorders-of-liver-and-kidney-nitrogen-metabolismpdf/252642554 shinycthomas@slideshare.net(shinycthomas) Disorders of liver and kidney, Nitrogen metabolism.pdf shinycthomas Disorders of liver and kidney Jaundice, fatty liver, normal and abnormal functions of liver and kidney. Inulin and urea clearance. Abnormalities of nitrogen metabolism <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/disordersofliverandkidneynitrogenmetabolism-220822070630-1f249d12-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Disorders of liver and kidney Jaundice, fatty liver, normal and abnormal functions of liver and kidney. Inulin and urea clearance. Abnormalities of nitrogen metabolism
Disorders of liver and kidney, Nitrogen metabolism.pdf from shinycthomas
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Lipid metabolism and its disorders.pdf /shinycthomas/lipid-metabolism-and-its-disorderspdf lipidmetabolismanditsdisorders-220822064040-c9614654
Disorders of Lipids Plasma lipoproteins, cholesterol, triglycerides and phospholipids in health and disease, hyperlipidemia, hyperlipoproteinemia, Gauchers disease, Tay-Sachs and Niemann-Pick disease, ketone bodies.]]>

Disorders of Lipids Plasma lipoproteins, cholesterol, triglycerides and phospholipids in health and disease, hyperlipidemia, hyperlipoproteinemia, Gauchers disease, Tay-Sachs and Niemann-Pick disease, ketone bodies.]]>
Mon, 22 Aug 2022 06:40:40 GMT /shinycthomas/lipid-metabolism-and-its-disorderspdf shinycthomas@slideshare.net(shinycthomas) Lipid metabolism and its disorders.pdf shinycthomas Disorders of Lipids Plasma lipoproteins, cholesterol, triglycerides and phospholipids in health and disease, hyperlipidemia, hyperlipoproteinemia, Gauchers disease, Tay-Sachs and Niemann-Pick disease, ketone bodies. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/lipidmetabolismanditsdisorders-220822064040-c9614654-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Disorders of Lipids Plasma lipoproteins, cholesterol, triglycerides and phospholipids in health and disease, hyperlipidemia, hyperlipoproteinemia, Gauchers disease, Tay-Sachs and Niemann-Pick disease, ketone bodies.
Lipid metabolism and its disorders.pdf from shinycthomas
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Carbohydrate metabolism and its disorders.pdf /slideshow/carbohydrate-metabolism-and-its-disorderspdf/252641850 carbohydratemetabolismanditsdisorders-220822061346-b6e5044d
Disorders of Carbohydrate Metabolism - Diabetes mellitus, glucose and galactose tolerance tests, sugar levels in blood, renal threshold for glucose, factors influencing blood glucose level, glycogen storage diseases, pentosuria, galactosemia]]>

Disorders of Carbohydrate Metabolism - Diabetes mellitus, glucose and galactose tolerance tests, sugar levels in blood, renal threshold for glucose, factors influencing blood glucose level, glycogen storage diseases, pentosuria, galactosemia]]>
Mon, 22 Aug 2022 06:13:45 GMT /slideshow/carbohydrate-metabolism-and-its-disorderspdf/252641850 shinycthomas@slideshare.net(shinycthomas) Carbohydrate metabolism and its disorders.pdf shinycthomas Disorders of Carbohydrate Metabolism - Diabetes mellitus, glucose and galactose tolerance tests, sugar levels in blood, renal threshold for glucose, factors influencing blood glucose level, glycogen storage diseases, pentosuria, galactosemia <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/carbohydratemetabolismanditsdisorders-220822061346-b6e5044d-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Disorders of Carbohydrate Metabolism - Diabetes mellitus, glucose and galactose tolerance tests, sugar levels in blood, renal threshold for glucose, factors influencing blood glucose level, glycogen storage diseases, pentosuria, galactosemia
Carbohydrate metabolism and its disorders.pdf from shinycthomas
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Module-6-Proteins.pdf /slideshow/module6proteinspdf/252630571 module-6-proteins-220821090652-716418e7
a) Definition, classification, structure, stereochemistry and reactions of amino acids; b) Classification of proteins on the basis of solubility and shape, structure, and biological functions. Primary structure - determination of amino acid sequences of proteins, the peptide bond, Ramachandran plot. c) Secondary structure - weak interactions involved - alpha helix and beta sheet and beta turns structure, Pauling and Corey model for fibrous proteins, Collagen triple helix, and super secondary structures - helix-loop-helix. d) Tertiary structure - alpha and beta domains. Quaternary structure - structure of haemoglobin, Solid state synthesis of peptides, Protein-Protein interactions, Concept of chaperones. ]]>

a) Definition, classification, structure, stereochemistry and reactions of amino acids; b) Classification of proteins on the basis of solubility and shape, structure, and biological functions. Primary structure - determination of amino acid sequences of proteins, the peptide bond, Ramachandran plot. c) Secondary structure - weak interactions involved - alpha helix and beta sheet and beta turns structure, Pauling and Corey model for fibrous proteins, Collagen triple helix, and super secondary structures - helix-loop-helix. d) Tertiary structure - alpha and beta domains. Quaternary structure - structure of haemoglobin, Solid state synthesis of peptides, Protein-Protein interactions, Concept of chaperones. ]]>
Sun, 21 Aug 2022 09:06:52 GMT /slideshow/module6proteinspdf/252630571 shinycthomas@slideshare.net(shinycthomas) Module-6-Proteins.pdf shinycthomas a) Definition, classification, structure, stereochemistry and reactions of amino acids; b) Classification of proteins on the basis of solubility and shape, structure, and biological functions. Primary structure - determination of amino acid sequences of proteins, the peptide bond, Ramachandran plot. c) Secondary structure - weak interactions involved - alpha helix and beta sheet and beta turns structure, Pauling and Corey model for fibrous proteins, Collagen triple helix, and super secondary structures - helix-loop-helix. d) Tertiary structure - alpha and beta domains. Quaternary structure - structure of haemoglobin, Solid state synthesis of peptides, Protein-Protein interactions, Concept of chaperones. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/module-6-proteins-220821090652-716418e7-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> a) Definition, classification, structure, stereochemistry and reactions of amino acids; b) Classification of proteins on the basis of solubility and shape, structure, and biological functions. Primary structure - determination of amino acid sequences of proteins, the peptide bond, Ramachandran plot. c) Secondary structure - weak interactions involved - alpha helix and beta sheet and beta turns structure, Pauling and Corey model for fibrous proteins, Collagen triple helix, and super secondary structures - helix-loop-helix. d) Tertiary structure - alpha and beta domains. Quaternary structure - structure of haemoglobin, Solid state synthesis of peptides, Protein-Protein interactions, Concept of chaperones.
Module-6-Proteins.pdf from shinycthomas
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Nucleic acids.pdf /shinycthomas/nucleic-acidspdf nucleicacids-220821064221-f7457738
Nucleic acid-DNA and RNA Gene-part of DNA Functions of DNA RNA-Functions, different types of RNA-Ribosomal RNAs (rRNAs), Messenger RNAs (mRNAs), Transfer RNAs (tRNAs)-Other RNA-Small nuclear RNA (snRNA), Micro RNA (miRNA), Small interfering RNA (siRNA), Heterogenous RNA (hnRNA). Nucleic acid-nucleotides-nucleoside Components of nucleotide-a nitrogenous (nitrogen-containing) base (pyrimidine and purine), (2) a pentose, and (3) a phosphate Structure of pentose sugar, and 5 major bases (cytosine, thymine, uracil-pyrimidine bases and adenine, guanine-purine bases). Deoxyribonucleotides and Ribo nucleotides-Molecular structure of deoxyadenosine monophosphate (dAMP), deoxyguanosine monophosphate (dGMP), deoxythymidine monophosphate (dTMP), deoxycytidine monophosphate (dCMP) and Adenosine monophosphate (AMP), Guanosine monophosphate (GMP), Cytosine monophosphate (CMP) and Uridine monophosphate (UMP), Watson crick base pairing, Hoogsteen base pairing, Helical structure-Heterocylic N -Glycosides, Syn and Anti Conformers, detailed structure of single strand and double stranded DNA. DNA Nucleotides and Tautomeric Form-Tautomers of Adenine, Cytosine, Guanine, and Thymine Template strand, non coding strand and coding strand Hydrogen bonds, phosphodiester linkage, hydrolysis of DNA and RNA. Different forms of DNA-A, B, and Z forms. Palindrome sequence, Linear DNA, Cruciform DNA, H DNA (Triplex DNA), Denaturation of DNA, Hyperchromicity, Tm, Renaturation of DNA, Tertiary structure of DNA, Difference of DNA and RNA, RNA structural elements, primary. secondary and tertiary structure of RNA. Detailed structure and functions of tRNA, mRNA, rRNA, miRNA, siRNA, hn RNA, snRNA. Nucleic acid hybridization, C0t analysis, Buoyant density of DNA, Isopycnic centrifugation. ]]>

Nucleic acid-DNA and RNA Gene-part of DNA Functions of DNA RNA-Functions, different types of RNA-Ribosomal RNAs (rRNAs), Messenger RNAs (mRNAs), Transfer RNAs (tRNAs)-Other RNA-Small nuclear RNA (snRNA), Micro RNA (miRNA), Small interfering RNA (siRNA), Heterogenous RNA (hnRNA). Nucleic acid-nucleotides-nucleoside Components of nucleotide-a nitrogenous (nitrogen-containing) base (pyrimidine and purine), (2) a pentose, and (3) a phosphate Structure of pentose sugar, and 5 major bases (cytosine, thymine, uracil-pyrimidine bases and adenine, guanine-purine bases). Deoxyribonucleotides and Ribo nucleotides-Molecular structure of deoxyadenosine monophosphate (dAMP), deoxyguanosine monophosphate (dGMP), deoxythymidine monophosphate (dTMP), deoxycytidine monophosphate (dCMP) and Adenosine monophosphate (AMP), Guanosine monophosphate (GMP), Cytosine monophosphate (CMP) and Uridine monophosphate (UMP), Watson crick base pairing, Hoogsteen base pairing, Helical structure-Heterocylic N -Glycosides, Syn and Anti Conformers, detailed structure of single strand and double stranded DNA. DNA Nucleotides and Tautomeric Form-Tautomers of Adenine, Cytosine, Guanine, and Thymine Template strand, non coding strand and coding strand Hydrogen bonds, phosphodiester linkage, hydrolysis of DNA and RNA. Different forms of DNA-A, B, and Z forms. Palindrome sequence, Linear DNA, Cruciform DNA, H DNA (Triplex DNA), Denaturation of DNA, Hyperchromicity, Tm, Renaturation of DNA, Tertiary structure of DNA, Difference of DNA and RNA, RNA structural elements, primary. secondary and tertiary structure of RNA. Detailed structure and functions of tRNA, mRNA, rRNA, miRNA, siRNA, hn RNA, snRNA. Nucleic acid hybridization, C0t analysis, Buoyant density of DNA, Isopycnic centrifugation. ]]>
Sun, 21 Aug 2022 06:42:20 GMT /shinycthomas/nucleic-acidspdf shinycthomas@slideshare.net(shinycthomas) Nucleic acids.pdf shinycthomas Nucleic acid-DNA and RNA Gene-part of DNA Functions of DNA RNA-Functions, different types of RNA-Ribosomal RNAs (rRNAs), Messenger RNAs (mRNAs), Transfer RNAs (tRNAs)-Other RNA-Small nuclear RNA (snRNA), Micro RNA (miRNA), Small interfering RNA (siRNA), Heterogenous RNA (hnRNA). Nucleic acid-nucleotides-nucleoside Components of nucleotide-a nitrogenous (nitrogen-containing) base (pyrimidine and purine), (2) a pentose, and (3) a phosphate Structure of pentose sugar, and 5 major bases (cytosine, thymine, uracil-pyrimidine bases and adenine, guanine-purine bases). Deoxyribonucleotides and Ribo nucleotides-Molecular structure of deoxyadenosine monophosphate (dAMP), deoxyguanosine monophosphate (dGMP), deoxythymidine monophosphate (dTMP), deoxycytidine monophosphate (dCMP) and Adenosine monophosphate (AMP), Guanosine monophosphate (GMP), Cytosine monophosphate (CMP) and Uridine monophosphate (UMP), Watson crick base pairing, Hoogsteen base pairing, Helical structure-Heterocylic N -Glycosides, Syn and Anti Conformers, detailed structure of single strand and double stranded DNA. DNA Nucleotides and Tautomeric Form-Tautomers of Adenine, Cytosine, Guanine, and Thymine Template strand, non coding strand and coding strand Hydrogen bonds, phosphodiester linkage, hydrolysis of DNA and RNA. Different forms of DNA-A, B, and Z forms. Palindrome sequence, Linear DNA, Cruciform DNA, H DNA (Triplex DNA), Denaturation of DNA, Hyperchromicity, Tm, Renaturation of DNA, Tertiary structure of DNA, Difference of DNA and RNA, RNA structural elements, primary. secondary and tertiary structure of RNA. Detailed structure and functions of tRNA, mRNA, rRNA, miRNA, siRNA, hn RNA, snRNA. Nucleic acid hybridization, C0t analysis, Buoyant density of DNA, Isopycnic centrifugation. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/nucleicacids-220821064221-f7457738-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Nucleic acid-DNA and RNA Gene-part of DNA Functions of DNA RNA-Functions, different types of RNA-Ribosomal RNAs (rRNAs), Messenger RNAs (mRNAs), Transfer RNAs (tRNAs)-Other RNA-Small nuclear RNA (snRNA), Micro RNA (miRNA), Small interfering RNA (siRNA), Heterogenous RNA (hnRNA). Nucleic acid-nucleotides-nucleoside Components of nucleotide-a nitrogenous (nitrogen-containing) base (pyrimidine and purine), (2) a pentose, and (3) a phosphate Structure of pentose sugar, and 5 major bases (cytosine, thymine, uracil-pyrimidine bases and adenine, guanine-purine bases). Deoxyribonucleotides and Ribo nucleotides-Molecular structure of deoxyadenosine monophosphate (dAMP), deoxyguanosine monophosphate (dGMP), deoxythymidine monophosphate (dTMP), deoxycytidine monophosphate (dCMP) and Adenosine monophosphate (AMP), Guanosine monophosphate (GMP), Cytosine monophosphate (CMP) and Uridine monophosphate (UMP), Watson crick base pairing, Hoogsteen base pairing, Helical structure-Heterocylic N -Glycosides, Syn and Anti Conformers, detailed structure of single strand and double stranded DNA. DNA Nucleotides and Tautomeric Form-Tautomers of Adenine, Cytosine, Guanine, and Thymine Template strand, non coding strand and coding strand Hydrogen bonds, phosphodiester linkage, hydrolysis of DNA and RNA. Different forms of DNA-A, B, and Z forms. Palindrome sequence, Linear DNA, Cruciform DNA, H DNA (Triplex DNA), Denaturation of DNA, Hyperchromicity, Tm, Renaturation of DNA, Tertiary structure of DNA, Difference of DNA and RNA, RNA structural elements, primary. secondary and tertiary structure of RNA. Detailed structure and functions of tRNA, mRNA, rRNA, miRNA, siRNA, hn RNA, snRNA. Nucleic acid hybridization, C0t analysis, Buoyant density of DNA, Isopycnic centrifugation.
Nucleic acids.pdf from shinycthomas
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Lipids.pdf /slideshow/lipidspdf-252629510/252629510 lipids-220821061153-132c7004
Lipids-Introduction, properties and functions. Classification-Simple lipids, complex lipids and derived lipids. Lipids contain fatty acid and alcohol. Saturated and Unsaturated fatty acids. Nomenclature of fatty acids, Cis-trans isomerism, essential fatty acids Simple lipids-Fats, waxes Compound lipids-Structure, function with examples of Phospholipids, Glycolipids, sulpholipids and lipoproteins. Derived lipids: Structure, types, and functions of steroids, terpenes and carotenoids. Lipoproteins-classified into chylomicrons, very low-density lipoproteins (VLDL), low density lipoproteins (LDL) and high-density lipoproteins (HDL) and their function. Eicosanoids-prostanoids, leukotrienes (LTs), and lipoxins (LXs). Functions of Eicosanoids Lipids, micelles and liposomes. ]]>

Lipids-Introduction, properties and functions. Classification-Simple lipids, complex lipids and derived lipids. Lipids contain fatty acid and alcohol. Saturated and Unsaturated fatty acids. Nomenclature of fatty acids, Cis-trans isomerism, essential fatty acids Simple lipids-Fats, waxes Compound lipids-Structure, function with examples of Phospholipids, Glycolipids, sulpholipids and lipoproteins. Derived lipids: Structure, types, and functions of steroids, terpenes and carotenoids. Lipoproteins-classified into chylomicrons, very low-density lipoproteins (VLDL), low density lipoproteins (LDL) and high-density lipoproteins (HDL) and their function. Eicosanoids-prostanoids, leukotrienes (LTs), and lipoxins (LXs). Functions of Eicosanoids Lipids, micelles and liposomes. ]]>
Sun, 21 Aug 2022 06:11:53 GMT /slideshow/lipidspdf-252629510/252629510 shinycthomas@slideshare.net(shinycthomas) Lipids.pdf shinycthomas Lipids-Introduction, properties and functions. Classification-Simple lipids, complex lipids and derived lipids. Lipids contain fatty acid and alcohol. Saturated and Unsaturated fatty acids. Nomenclature of fatty acids, Cis-trans isomerism, essential fatty acids Simple lipids-Fats, waxes Compound lipids-Structure, function with examples of Phospholipids, Glycolipids, sulpholipids and lipoproteins. Derived lipids: Structure, types, and functions of steroids, terpenes and carotenoids. Lipoproteins-classified into chylomicrons, very low-density lipoproteins (VLDL), low density lipoproteins (LDL) and high-density lipoproteins (HDL) and their function. Eicosanoids-prostanoids, leukotrienes (LTs), and lipoxins (LXs). Functions of Eicosanoids Lipids, micelles and liposomes. <img style="border:1px solid #C3E6D8;float:right;" alt="" src="https://cdn.slidesharecdn.com/ss_thumbnails/lipids-220821061153-132c7004-thumbnail.jpg?width=120&amp;height=120&amp;fit=bounds" /><br> Lipids-Introduction, properties and functions. Classification-Simple lipids, complex lipids and derived lipids. Lipids contain fatty acid and alcohol. Saturated and Unsaturated fatty acids. Nomenclature of fatty acids, Cis-trans isomerism, essential fatty acids Simple lipids-Fats, waxes Compound lipids-Structure, function with examples of Phospholipids, Glycolipids, sulpholipids and lipoproteins. Derived lipids: Structure, types, and functions of steroids, terpenes and carotenoids. Lipoproteins-classified into chylomicrons, very low-density lipoproteins (VLDL), low density lipoproteins (LDL) and high-density lipoproteins (HDL) and their function. Eicosanoids-prostanoids, leukotrienes (LTs), and lipoxins (LXs). Functions of Eicosanoids Lipids, micelles and liposomes.
Lipids.pdf from shinycthomas
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