Iwata T, Kojima R, Nagamatsu T, Ito M, Suzuki Y
Nihon Jinzo Gakkai Shi. 1989 Nov;31(11):1105-15.
In order to clarify the mechanisms of the initiation and progression of focal glomerular sclerosis (FGS), we investigated changes in the mesangial function or qualitative changes in the extracellular matrix of mesangium in puromycin aminonucleoside (PAN)-induced FGS in rats. At first, we investigated that the relationship between the progression of FGS and mesangial function. In order to evaluate the mesangial function, rats received the i.v. injection of colloidal carbon (C. C.) (20 or 30 mg/100 g). Results obtained from this experiment suggest that the progression of glomerular sclerosis may be related to changes in mesangial function. Furthermore, results suggest that the abnormality of the extracellular matrix may lead to changes in mesangial function and the progression of glomerular sclerosis. Therefore, in the next experiment, the proteoglycans (PGs), one of the components of extracellular matrix, were analyzed by the column chromatography to clarify qualitative changes in the PGs such as the molecular size and charge density. Results obtained from this experiment indicate that the sclerotic glomeruli synthesize the PGs with different molecular size and charge density from normal glomeruli. It is concluded from these experiments that the abnormality of the mesangial function and the synthesis of PGs, the components of the extracellular matrix, may lead to the progression of FGS. Namely, the qualitatively altered PGs may cause abnormal interactions with other components of matrix, which lead to changes in mesangial function, death of mesangial cell and the progression of FGS.
为了阐明局灶性肾小球硬化(FGS)起始和进展的机制,我们研究了嘌呤霉素氨基核苷(PAN)诱导的大鼠FGS中系膜功能的变化或系膜细胞外基质的质性改变。首先,我们研究了FGS进展与系膜功能之间的关系。为了评估系膜功能,给大鼠静脉注射胶体碳(C.C.)(20或30mg/100g)。该实验获得的结果表明肾小球硬化的进展可能与系膜功能的变化有关。此外,结果表明细胞外基质的异常可能导致系膜功能改变和肾小球硬化的进展。因此,在接下来的实验中,通过柱色谱法分析细胞外基质的成分之一蛋白聚糖(PGs),以阐明PGs在分子大小和电荷密度等方面的质性变化。该实验获得的结果表明,硬化肾小球合成的PGs在分子大小和电荷密度方面与正常肾小球不同。从这些实验得出的结论是,系膜功能异常以及细胞外基质成分PGs的合成异常可能导致FGS的进展。也就是说,质性改变的PGs可能与基质的其他成分发生异常相互作用,从而导致系膜功能改变、系膜细胞死亡以及FGS的进展。