Takamura Yoshihiro, Tomomatsu Takeshi, Kubo Eri, Tsuzuki Syousai, Akagi Yoshio
Department of Ophthalmology, Faculty of Medical Sciences, University of Fukui, Fukui, Japan.
Invest Ophthalmol Vis Sci. 2008 Jul;49(7):3216-23. doi: 10.1167/iovs.07-1643. Epub 2008 Mar 24.
The selective degeneration of pericytes and the proliferation of endothelial cells (ECs) appear to be associated with microaneurysm formation, an initial deficit in the early stage of diabetic retinopathy. The preventive effect of aldose reductase (AR) inhibitor (ARI) for high glucose-induced pericyte loss and EC growth was investigated.
The effect of high glucose (30 mM) exposure in the presence or absence of ARI for the cell growth of porcine pericytes and ECs was examined with the use of an in vitro coculture system to mimic the interaction between pericytes and ECs. To determine the role of transforming growth factor (TGF)-beta, its amount in culture media was measured, and the effects of the treatment of TGF-beta or neutralizing antibody on EC growth were examined.
Abundant expression of AR and increased levels of polyol and apoptosis induced by high glucose were observed in pericytes, but not in ECs. ECs overexpressing AR cultured in high-glucose medium showed decreased cell viability. The growth-inhibitory effect of ECs on coculture with pericytes was attenuated by exposure to a high glucose concentration. Biochemical assays disclosed that the levels of active TGF-beta in media were linked to EC growth. Supply of active TGF-beta to coculture medium containing 30 mM D-glucose restored the inhibitory activity on EC growth.
ARI rescued pericytes from high glucose-induced apoptosis and maintained the levels of TGF-beta, resulting in the prevention of cocultured EC growth.
周细胞的选择性变性和内皮细胞(ECs)的增殖似乎与微动脉瘤形成有关,微动脉瘤形成是糖尿病视网膜病变早期的一种初始缺陷。研究了醛糖还原酶(AR)抑制剂(ARI)对高糖诱导的周细胞丢失和EC生长的预防作用。
使用体外共培养系统模拟周细胞与ECs之间的相互作用,研究在有或没有ARI的情况下高糖(30 mM)暴露对猪周细胞和ECs细胞生长的影响。为了确定转化生长因子(TGF)-β的作用,测量其在培养基中的含量,并检测TGF-β或中和抗体处理对EC生长的影响。
在周细胞中观察到AR的大量表达以及高糖诱导的多元醇水平升高和细胞凋亡,但在ECs中未观察到。在高糖培养基中培养的过表达AR的ECs显示细胞活力降低。暴露于高糖浓度会减弱ECs与周细胞共培养时的生长抑制作用。生化分析表明,培养基中活性TGF-β的水平与EC生长有关。向含有30 mM D-葡萄糖的共培养基中供应活性TGF-β可恢复对EC生长的抑制活性。
ARI使周细胞免受高糖诱导的凋亡,并维持TGF-β水平,从而预防共培养的EC生长。