Joosten Simone A, van Ham Vanessa, Nolan Claire E, Borrias Maria C, Jardine Alan G, Shiels Paul G, van Kooten Cees, Paul Leendert C
Department of Nephrology, Leiden University Medical Center, Leiden, The Netherlands.
Am J Pathol. 2003 Apr;162(4):1305-12. doi: 10.1016/S0002-9440(10)63926-0.
Cellular senescence has been suggested to play a role in the deterioration of renal graft function and has been linked to telomere shortening. We have investigated markers of cellular senescence in the F344 to LEW rat model of chronic renal transplant rejection. Syngeneic and LEW to F344 transplants were used as controls. Substantial telomere shortening was observed in all transplants, including allogeneic and syngeneic grafts from day 7 post-transplant onwards. Ischemia of native F344 kidneys was already sufficient to induce telomere shortening. It is known that shortened telomeres can activate cell cycle regulators, such as p21 and p16. Accordingly, all cases showed a transient p21 increase, with a maximum at day 7 and a sustained expression of p16. Importantly, senescence-associated beta-galactosidase staining, a cytological marker for senescence, was only observed in tubular epithelial cells of chronically rejecting F344 allografts from day 30 post-transplantation onwards. Long-term surviving LEW allografts or syngeneic F344 grafts were negative for senescence-associated beta-galactosidase. In conclusion, ischemia during transplantation results in telomere shortening and subsequent activation of p21 and p16, whereas senescence-associated beta-galactosidase staining is only present in chronically rejecting kidney grafts.
细胞衰老被认为在肾移植功能恶化中起作用,并与端粒缩短有关。我们在慢性肾移植排斥反应的F344到LEW大鼠模型中研究了细胞衰老的标志物。同基因移植以及LEW到F344的移植用作对照。在所有移植中均观察到明显的端粒缩短,包括移植后第7天起的同种异体和同基因移植物。F344大鼠自体肾的缺血已足以诱导端粒缩短。已知缩短的端粒可激活细胞周期调节因子,如p21和p16。相应地,所有病例均显示p21短暂升高,在第7天达到峰值,p16持续表达。重要的是,衰老相关β-半乳糖苷酶染色作为衰老的细胞学标志物,仅在移植后30天起的慢性排斥F344同种异体移植的肾小管上皮细胞中观察到。长期存活的LEW同种异体移植物或同基因F344移植物的衰老相关β-半乳糖苷酶呈阴性。总之,移植过程中的缺血导致端粒缩短以及随后p21和p16的激活,而衰老相关β-半乳糖苷酶染色仅存在于慢性排斥的肾移植物中。