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Mitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype - PubMed
Cellular senescence permanently arrests cell proliferation, often accompanied by a multi-faceted senescence-associated secretory phenotype (SASP). Loss of mitochondrial function can drive age-related declines in the function of many post-mitotic tissues, but little is known about how mitochondrial d …
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Mitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype - PubMed
Cellular senescence permanently arrests cell proliferation, often accompanied by a multi-faceted senescence-associated secretory phenotype (SASP). Loss of mitochondrial function can drive age-related declines in the function of many post-mitotic tissues, but little is known about how mitochondrial d …
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Mitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype - PubMed
Cellular senescence permanently arrests cell proliferation, often accompanied by a multi-faceted senescence-associated secretory phenotype (SASP). Loss of mitochondrial function can drive age-related declines in the function of many post-mitotic tissues, but little is known about how mitochondrial d …
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44- titleMitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype - PubMed
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7- og:titleMitochondrial Dysfunction Induces Senescence with a Distinct Secretory Phenotype - PubMed
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- og:descriptionCellular senescence permanently arrests cell proliferation, often accompanied by a multi-faceted senescence-associated secretory phenotype (SASP). Loss of mitochondrial function can drive age-related declines in the function of many post-mitotic tissues, but little is known about how mitochondrial d …
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- twitter:descriptionCellular senescence permanently arrests cell proliferation, often accompanied by a multi-faceted senescence-associated secretory phenotype (SASP). Loss of mitochondrial function can drive age-related declines in the function of many post-mitotic tissues, but little is known about how mitochondrial d …
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