Melk Anette, Kittikowit Wipawee, Sandhu Irwindeep, Halloran Kieran M, Grimm Paul, Schmidt Bernhard M W, Halloran Philip F
Department of Medicine, Division of Nephrology and Immunology, University of Alberta, Edmonton, Alberta, Canada.
Kidney Int. 2003 Jun;63(6):2134-43. doi: 10.1046/j.1523-1755.2003.00032.x.
Somatic cells in vitro have a finite life expectancy before entering a state of senescence, but it is unclear whether this state occurs in vivo in kidney development, growth, and aging. We previously showed that human kidney cortex displays telomere shortening with age. In this study, we compared the structural and functional changes in rat kidney with age to phenomena associated with cellular senescence in vitro.
We assessed the changes in Fischer 344 rat kidneys from age 1 to 9 months to define growth and development and from age 9 to 24 months to define aging.
Rat kidney telomeres were approximately 35 to 40 kb long and did not shorten significantly. Expression of mRNA for p16INK4a, a characteristic senescence gene in vitro, was undetectable in most young rats but rose 27 fold during growth and a further 72-fold during aging. p16INK4a protein was localized to the nucleus and increased with age. p16INK4a mRNA also increased in other tissues. Lipofuscin and senescence-associated beta-galactosidase increased in epithelium with growth and aging and their occurrence was significantly associated with each other. Lipofuscin was particularly found in atrophic nephrons.
We conclude that cell senescence occurs in both growth and aging in rat kidney and may contribute to the age-related pathology. These changes are not due to telomere shortening, but may reflect cumulative environmental stress.
体外培养的体细胞在进入衰老状态前具有有限的寿命,但目前尚不清楚这种状态是否会在肾脏发育、生长和衰老的体内过程中出现。我们之前的研究表明,人类肾皮质会随着年龄增长出现端粒缩短的现象。在本研究中,我们将大鼠肾脏随年龄增长发生的结构和功能变化与体外细胞衰老相关的现象进行了比较。
我们评估了1至9月龄Fischer 344大鼠肾脏的变化以确定其生长和发育情况,并评估了9至24月龄大鼠肾脏的变化以确定其衰老情况。
大鼠肾脏端粒长度约为35至40 kb,且未出现明显缩短。体外特征性衰老基因p16INK4a的mRNA表达在大多数年轻大鼠中无法检测到,但在生长过程中上升了27倍,在衰老过程中又进一步上升了72倍。p16INK4a蛋白定位于细胞核,并随年龄增长而增加。p16INK4a mRNA在其他组织中也有所增加。脂褐素和衰老相关β-半乳糖苷酶在生长和衰老过程中在上皮细胞中增加,且它们的出现显著相关。脂褐素尤其在萎缩性肾单位中被发现。
我们得出结论,大鼠肾脏在生长和衰老过程中均发生细胞衰老,这可能导致与年龄相关的病理学变化。这些变化并非由端粒缩短引起,而是可能反映了累积的环境压力。