Berfield Anne K, Chait Alan, Oram John F, Zager Richard A, Johnson Ali C, Abrass Christine K
Univ. of Washington School of Medicine and Department of Medicine, Veterans Affairs Puget Sound Health Care System, 1660 South Columbian Way, Seattle, WA 98108, USA.
Am J Physiol Renal Physiol. 2006 Jan;290(1):F138-47. doi: 10.1152/ajprenal.00054.2005. Epub 2005 Aug 2.
Rat glomerular mesangial cells (MC) become lipid-laden foam cells when they are exposed to IGF-1. IGF-1 increased accumulation of triglyceride (TG) 2.5-fold in MC after 7 days. TG accumulation resulted from enhanced macropinocytosis and decreased efflux secondary to a 40-50% reduction in peroxisome proliferator-activated receptor (PPAR)-delta (PPARdelta). There was no evidence of primary or secondary changes in cholesterol or TG synthesis, increased uptake by LDL or scavenger receptors, or reduced efflux via ATP-binding cassette A-1. Although the lipid moiety taken up can be influenced by the concentration of cholesterol or TG in the medium, in standard medium MC preferentially accumulate TG. TG-rich MC foam cells fail to contract in response to angiotensin II (Berfield AK, Andress DL, and Abrass CK. Kidney Int 62: 1229-1237, 2002); however, their migratory response to IGF binding protein-5 is unaffected. This differs from cholesterol loading, which impairs both phagocytosis and migration. These findings have important implications for understanding the mechanisms that contribute to lipid accumulation in MC and the functional consequences of different forms of foam cells. These observations are relevant to understanding vascular disease and progressive renal diseases that are accelerated by abnormalities in lipid metabolism.
大鼠肾小球系膜细胞(MC)在暴露于胰岛素样生长因子-1(IGF-1)时会变成充满脂质的泡沫细胞。7天后,IGF-1使MC中的甘油三酯(TG)积累增加了2.5倍。TG积累是由于巨胞饮作用增强以及过氧化物酶体增殖物激活受体(PPAR)-δ(PPARδ)减少40 - 50%导致的外排减少所致。没有证据表明胆固醇或TG合成存在原发性或继发性变化,通过低密度脂蛋白(LDL)或清道夫受体的摄取增加,或通过ATP结合盒A-1的外排减少。尽管摄取的脂质部分可受培养基中胆固醇或TG浓度的影响,但在标准培养基中,MC优先积累TG。富含TG的MC泡沫细胞对血管紧张素II无收缩反应(伯菲尔德AK、安德雷斯DL和阿布拉斯CK。《肾脏国际》62:1229 - 1237,2002);然而,它们对IGF结合蛋白-5的迁移反应未受影响。这与胆固醇负载不同,胆固醇负载会损害吞噬作用和迁移。这些发现对于理解导致MC脂质积累的机制以及不同形式泡沫细胞的功能后果具有重要意义。这些观察结果与理解因脂质代谢异常而加速的血管疾病和进行性肾脏疾病相关。