Watanabe Y, Lee S W, Detmar M, Ajioka I, Dvorak H F
Department of Pathology, Beth Israel Hospital and Harvard Medical School, Boston, Massachusetts 02215, USA.
Oncogene. 1997 May 1;14(17):2025-32. doi: 10.1038/sj.onc.1201033.
Like most other normal cells, human endothelial cells possess a limited replicative life span, and, after multiple passages in vitro, develop an arrest in cell division referred to as replicative senescence. For many cell types senescence can be delayed by oncogenes or tumor suppressor genes or prevented altogether by malignant transformation; however, once developed, senescence has been regarded as irreversible. We now report that a cytokine, vascular permeability factor/vascular endothelial growth factor (VPF/VEGF), significantly delays senescence in human dermal microvascular endothelial cells (HDMEC). Typically, VPF/VEGF-treated HDMEC could be cultured for at least 15-20 more population doublings (PD) than control cells. Protection from senescence was reversible in that subsequent withdrawal of VPF/VEGF returned cells to the senescent phenotype. Expression of several cell cycle-related genes (p21, p16 and p27) was significantly reduced in VPF/VEGF-treated cells but p53 expression was not significantly altered. Of particular importance, VPF/VEGF was able to rescue senescent HDMEC, restoring them to proliferation, to a more normal morphology, and to reduced expression of a senescence marker, neutral beta-galactosidase. Taken together, VPF/VEGF delayed the onset of senescence and also reversed senescence in microvascular endothelial cells without inducing cell transformation.
与大多数其他正常细胞一样,人内皮细胞具有有限的复制寿命,并且在体外多次传代后,会出现细胞分裂停滞,即复制性衰老。对于许多细胞类型,衰老可被癌基因或肿瘤抑制基因延迟,或通过恶性转化完全阻止;然而,一旦发生,衰老被认为是不可逆的。我们现在报告,一种细胞因子,血管通透性因子/血管内皮生长因子(VPF/VEGF),可显著延迟人真皮微血管内皮细胞(HDMEC)的衰老。通常,与对照细胞相比,经VPF/VEGF处理的HDMEC可以再培养至少15 - 20次群体倍增(PD)。对衰老的保护是可逆的,因为随后去除VPF/VEGF会使细胞恢复到衰老表型。在经VPF/VEGF处理的细胞中,几个细胞周期相关基因(p21、p16和p27)的表达显著降低,但p53表达没有显著改变。特别重要的是,VPF/VEGF能够挽救衰老的HDMEC,使其恢复增殖、恢复到更正常的形态,并降低衰老标志物中性β - 半乳糖苷酶的表达。综上所述,VPF/VEGF延迟了微血管内皮细胞衰老的发生,并且在不诱导细胞转化的情况下逆转了衰老。