4.7 Article

Loss of Pla2r1 decreases cellular senescence and age-related alterations caused by aging and Western diets

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AGING CELL
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WILEY
DOI: 10.1111/acel.13971

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aging; cellular senescence; liver; Western diet

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Cellular senescence is caused by various stresses and leads to the accumulation of senescent cells. These cells secrete factors that contribute to age-related alterations and diseases. The pro-senescent receptor PLA2R1 plays a significant role in regulating age-related alterations in mice, and its loss provides protection against the effects of a Western diet.
Cellular senescence is induced by many stresses including telomere shortening, DNA damage, oxidative, or metabolic stresses. Senescent cells are stably cell cycle arrested and they secrete many factors including cytokines and chemokines. Accumulation of senescent cells promotes many age-related alterations and diseases. In this study, we investigated the role of the pro-senescent phospholipase A2 receptor 1 (PLA2R1) in regulating some age-related alterations in old mice and in mice subjected to a Western diet, whereas aged wild-type mice displayed a decreased ability to regulate their glycemia during glucose and insulin tolerance tests, aged Pla2r1 knockout (KO) mice efficiently regulated their glycemia and displayed fewer signs of aging. Loss of Pla2r1 was also found protective against the deleterious effects of a Western diet. Moreover, these Pla2r1 KO mice were partially protected from diet-induced senescent cell accumulation, steatosis, and fibrosis. Together these results support that Pla2r1 drives several age-related alterations, especially in the liver, arising during aging or through a Western diet.

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