Difference between revisions of "Jong Bhak's Geromics Syllabus 2024 2nd semester"

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<br/> {|<br/> |-<br/> | Week<br/> | Contents<br/> |-<br/> | 01<br/> | &nbsp;Introduction to aging<br/> |-<br/> | 02<br/> | [[Theories_of_aging|Theories of aging]]<br/> |-<br/> | 03<br/> | &nbsp;[[Molecular_mechanisms_of_aging_-1_(DNA_damage_and_telomere_attrition)|Molecular mechanisms of aging -1 (DNA damage and telomere attrition)]]<br/> |-<br/> | 04<br/> | &nbsp;Molecular mechanisms of aging -2 (Mitochondrial dysfunction, Loss of proteostasis and compromised autophagy)<br/> |-<br/> | 05<br/> | Molecular mechanisms of aging -3 ([[Geromics:_Stem_cell_exhaustion]], Epigenetic alterations and others)<br/> |-<br/> | 06<br/> | Methodologies of aging research -1 (Omics: Genomics, Transcriptomics, Proteomics)<br/> |-<br/> | 07<br/> | Methodologies of aging research -2 (Bioinformatics, Programming)<br/> |-<br/> | 08<br/> | &nbsp;Methodologies of aging research -3 (Aging network analysis using omics data)<br/> |-<br/> | 09<br/> | Experimental organisms for aging – 1 (Invertebrates. invertebrates)<br/> |-<br/> | 10<br/> | Experimental organisms for aging – 2 (Emerging organisms)<br/> |-<br/> | 11<br/> | &nbsp;[[Geromics:_Aging_as_a_disease]]: Curing aging: Resisting aging, Stopping aging, and Reversing aging.&nbsp;<br/> |-<br/> | 12<br/> | Interventions for aging<br/> |-<br/> | 13<br/> | &nbsp;Use of omics to cure/prevention of aging<br/> |-<br/> | 14<br/> | &nbsp;Research Report presentation<br/> |-<br/> | 15<br/> | &nbsp;Research Report presentation<br/> |}<br/> &nbsp;
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{|
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|-
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| Week
 +
| Contents
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|-
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| 01
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| Introduction to the class and biological aging
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|-
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| 02
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| [[Theories_of_aging|Theories of aging]]
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|-
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| 03
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| &nbsp;[[Molecular_mechanisms_of_aging_-1_(DNA_damage_and_telomere_attrition)|Molecular mechanisms of aging -1 (DNA damage and telomere attrition)]]
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|-
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| 04
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| &nbsp;Molecular mechanisms of aging -2 (Mitochondrial dysfunction, Loss of proteostasis and compromised autophagy)
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|-
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| 05
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| Molecular mechanisms of aging -3 ([[Geromics:_Stem_cell_exhaustion]], Epigenetic alterations and others)
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|-
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| 06
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| Methodologies of aging research -1 (Omics: Genomics, Epigenomics, Transcriptomics, Proteomics)
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|-
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| 07
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| Methodologies of aging research -2 (Bioinformatics, Programming, AI)
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|-
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| 08
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| &nbsp;Methodologies of aging research -3 (Aging network analysis using omics data)
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|-
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| 09
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| Experimental organisms for aging – 1 (Invertebrates. invertebrates)
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|-
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| 10
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| Experimental organisms for aging – 2 (Emerging organisms)
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|-
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| 11
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| Measuring aging precisely using omics.
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|-
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| 12
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| Aging_as_a_disease: Curing aging: Resisting aging, Stopping aging&nbsp;
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|-
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| 13
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| Aging_as_a_disease: Curing aging: Reversing aging.&nbsp;
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|-
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| 14
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| &nbsp;Anti-aging supplements<br/> &nbsp; [[GLP-1 and GLP-1R target supplements]]
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|-
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| 15
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| &nbsp;Research Report presentation
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|-
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| 16
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| &nbsp;Research Report presentation
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|}

Latest revision as of 09:39, 12 September 2024

Week Contents
01 Introduction to the class and biological aging
02 Theories of aging
03  Molecular mechanisms of aging -1 (DNA damage and telomere attrition)
04  Molecular mechanisms of aging -2 (Mitochondrial dysfunction, Loss of proteostasis and compromised autophagy)
05 Molecular mechanisms of aging -3 (Geromics:_Stem_cell_exhaustion, Epigenetic alterations and others)
06 Methodologies of aging research -1 (Omics: Genomics, Epigenomics, Transcriptomics, Proteomics)
07 Methodologies of aging research -2 (Bioinformatics, Programming, AI)
08  Methodologies of aging research -3 (Aging network analysis using omics data)
09 Experimental organisms for aging – 1 (Invertebrates. invertebrates)
10 Experimental organisms for aging – 2 (Emerging organisms)
11 Measuring aging precisely using omics.
12 Aging_as_a_disease: Curing aging: Resisting aging, Stopping aging 
13 Aging_as_a_disease: Curing aging: Reversing aging. 
14  Anti-aging supplements
  GLP-1 and GLP-1R target supplements
15  Research Report presentation
16  Research Report presentation