Clark D L, Hamel F G, Queener S F
Lipids. 1983 Oct;18(10):696-705. doi: 10.1007/BF02534536.
Male Sprague-Dawley rats made diabetic with alloxan (37.5 mg/kg) or streptozotocin (65 mg/kg) were killed after 3-6 weeks of disease; renal tissues were studied for phospholipid content and for fatty acid composition of the phospholipids. No consistent change was noted in total phospholipid content nor in the proportion of various phospholipids in diabetics. However, diabetic animals showed a consistent reduction of arachidonic acid content in phosphatidylcholine (PC) and phosphatidylethanolamine in whole renal cortex, plasma membranes purified from renal cortex, and in isolated glomeruli. Associated with the fall in arachidonic acid was a rise in linoleic acid in the samples studied. Insulin therapy returned the fatty acid profiles to normal. These results are similar to patterns observed in other diabetic tissues and suggest that diabetes is associated with generalized changes in cell membranes. That these structural changes may have functional significance is suggested by demonstrated alterations in the temperature-dependence of adenylate cyclase in renal plasma membranes of diabetic animals. Adenylate cyclase is thought to be intimately associated with PC in plasma membranes, a phospholipid showing significant changes in fatty acid content in diabetes (unsaturation index 165 +/- 2 for normals, 147 +/- 5 for diabetics). Na+,K+-ATPase which is thought to be primarily associated in vivo with phosphatidylinositol (PI), shows no change in apparent energy of activation in diabetes. The fatty acid content of PI is minimally altered in diabetes, and the unsaturation index is unchanged.
用四氧嘧啶(37.5毫克/千克)或链脲佐菌素(65毫克/千克)诱导成糖尿病的雄性斯普拉格-道利大鼠在患病3至6周后被处死;对肾组织进行磷脂含量及磷脂脂肪酸组成的研究。糖尿病大鼠的总磷脂含量及各种磷脂的比例均未发现一致的变化。然而,糖尿病动物整个肾皮质、从肾皮质纯化的质膜以及分离的肾小球中的磷脂酰胆碱(PC)和磷脂酰乙醇胺中的花生四烯酸含量持续降低。在所研究的样本中,花生四烯酸含量下降的同时亚油酸含量上升。胰岛素治疗可使脂肪酸谱恢复正常。这些结果与在其他糖尿病组织中观察到的模式相似,提示糖尿病与细胞膜的普遍变化有关。糖尿病动物肾质膜中腺苷酸环化酶温度依赖性的改变表明这些结构变化可能具有功能意义。腺苷酸环化酶被认为与质膜中的PC密切相关,PC是一种在糖尿病中脂肪酸含量有显著变化的磷脂(正常大鼠的不饱和指数为165±2,糖尿病大鼠为147±5)。被认为在体内主要与磷脂酰肌醇(PI)相关的Na⁺,K⁺-ATP酶在糖尿病中活化能的表观值没有变化。糖尿病中PI的脂肪酸含量变化极小,不饱和指数不变。