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home:diseases:aging [01.26.2019]
sallieq [summary of Olmesartan research on aging]
home:diseases:aging [01.26.2019] (current)
sallieq [Aging (senescence)]
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  ​[[https://​immunityageing.biomedcentral.com/​articles/​10.1186/​1742-4933-3-12/​comments|Recovery from some of the diseases of aging]]  ​[[https://​immunityageing.biomedcentral.com/​articles/​10.1186/​1742-4933-3-12/​comments|Recovery from some of the diseases of aging]]
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 +Inflammation,​ But Not Telomere Length, Predicts Successful Ageing at Extreme Old Age: A Longitudinal Study of Semi-supercentenarians. ​   (({{pubmed>​long:​26629551}})) ​
  
 Health of the hypothalamus may be a controlling factor as demonstrated in a mouse study by Yalin Zhang et al <​blockquote>​ Mechanistically,​ hypothalamic stem/​progenitor cells contributed greatly to exosomal microRNAs (miRNAs) in the cerebrospinal fluid, and these exosomal miRNAs declined during ageing, whereas central treatment with healthy hypothalamic stem/​progenitor cell-secreted exosomes led to the slowing of ageing. ​ [[http://​www.nature.com/​nature/​journal/​vaop/​ncurrent/​full/​nature23282.html|Hypothalamic stem cells control ageing speed partly through exosomal miRNAs]] Health of the hypothalamus may be a controlling factor as demonstrated in a mouse study by Yalin Zhang et al <​blockquote>​ Mechanistically,​ hypothalamic stem/​progenitor cells contributed greatly to exosomal microRNAs (miRNAs) in the cerebrospinal fluid, and these exosomal miRNAs declined during ageing, whereas central treatment with healthy hypothalamic stem/​progenitor cell-secreted exosomes led to the slowing of ageing. ​ [[http://​www.nature.com/​nature/​journal/​vaop/​ncurrent/​full/​nature23282.html|Hypothalamic stem cells control ageing speed partly through exosomal miRNAs]]
home/diseases/aging.txt · Last modified: 01.26.2019 by sallieq
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