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Updated: Aug 30, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
High glucose-induced replicative senescence: point of no return and effect of telomerase
Shraga Blazer1, Eli Khankin, Yardena Segev
1Department of Neonatology, Rambam Medical Center, Bruce Rappaport Faculty of Medicine and Research Institute, Technion-Israel Institute of Technology, P.O. Box 9602, 31096, Haifa, Israel. blazer@rambam.health.gov.il
Abstract:
Primary human cells enter senescence after a characteristic number of population doublings (PDs). In the current study, human skin fibroblasts were propagated in culture under 5.5mM glucose (normoglycemia); addition of 16.5mM D-glucose to a concentration of 22 mM (hyperglycemia); and addition of 16.5mM L-glucose (osmotic control). Hyperglycemia induced premature replicative senescence after 44.42+/-1.5 PDs compared to 57.9+/-3.83 PDs under normoglycemia (p<0.0001). L-Glucose had no effect, suggesting that the effect of hyperglycemia was not attributed to hyperosmolarity. Activated caspase-3 measurement showed a significantly higher percentage of apoptotic cells in high glucose medium. Telomerase overexpression circumvented the effects of hyperglycemia on replicative capacity and apoptosis. The "point of no return," beyond which hyperglycemia resulted in irreversible progression to premature replicative senescence, occurred after exposure to hyperglycemia for as few as 20 PDs. These results may provide a biochemical basis for the relationship between hyperglycemia and those complications of diabetes, which are reminiscent of accelerated senescence.
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