[No authors listed]
Previous studies have indicated that cellular senescence is a critical underlying mechanism of intervertebral disc degeneration. However, the precise mechanism by which cellular senescence accelerates disc degeneration has not been fully elucidated. Caveolinâ1 has recently emerged as an important regulator of cellular senescence. Therefore, the aim of the present study was to investigate whether caveolinâ1 is involved in nucleus pulposus (NP) cellular senescence during oxidative stress. PCR was used to detect caveolinâ1 mRNA expression and protein expression was detected by western blotting. Caveolinâ1 expression at the mRNA and protein levels was markedly increased following treatment with tertâbutyl hydroperoxide, and an increase in premature senescence was observed, as determined by senescenceâassociated βâgalactosidase staining and the decline of cellular proliferative ability. In addition, caveolinâ1 gene expression was successfully knocked down by lentivirusâmediated RNA interference, which exerted a protective effect against the cellular senescence induced by oxidative stress. Notably, p53 and p21 protein expression, though not p16 protein expression, decreased with caveolinâ1 silencing. The results suggested that caveolinâ1 may be involved in NP cellular senescence during oxidative stress in vitro, mainly via the p53/p21 signaling pathway. Thus, caveolinâ1 may represent a novel therapeutic target for the prevention of intervertebral disc degeneration.
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