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二高γ-亚麻酸对血小板聚集、前列腺素释放、红细胞膜脂肪酸及血脂的影响:胰岛素依赖型糖尿病患者中前列腺素E1合成及Δ5-去饱和酶活性缺陷的证据。

The effect of dihomogammalinolenic acid on platelet aggregation and prostaglandin release, erythrocyte membrane fatty acids and serum lipids: evidence for defects in PGE1 synthesis and delta 5-desaturase activity in insulin-dependent diabetics.

作者信息

Mikhailidis D P, Kirtland S J, Barradas M A, Mahadeviah S, Dandona P

出版信息

Diabetes Res. 1986 Jan;3(1):7-12.

PMID:2937601
Abstract

The effect of dihomogammalinolenic acid (DHLA) administration on platelet aggregation and prostaglandin production, erythrocyte fatty acid composition and serum lipids was compared in healthy subjects and insulin-dependent diabetics (IDDs). In healthy subjects, DHLA caused a significant inhibition of ADP-induced platelet aggregation and an increase in platelet PGE1 release; IDDs did not show these changes. There were no differences, however, in platelet thromboxane A2 (TXA2) or PGE2 release between healthy subjects and IDDs before and after DHLA. Following DHLA, the arachidonic acid content of erythrocytes increased in healthy subjects; this increase was not observed in IDDs. DHLA induced a significant fall in serum non-esterified fatty acid concentrations in both groups without altering either cholesterol or triglyceride concentrations. These data show for the first time that IDD platelets may have a specific defect of PGE1 synthesis quite distinct from the delta 5- and delta 6-desaturase defects known to be associated with experimental diabetes; this defect may contribute to platelet hyper-aggregability in diabetes; and DHLA has a potent antilipolytic effect in vivo; and erythrocytes from IDDs may have a delta 6-desaturase defect.

摘要

在健康受试者和胰岛素依赖型糖尿病患者(IDDs)中,比较了给予二高γ-亚麻酸(DHLA)对血小板聚集、前列腺素生成、红细胞脂肪酸组成和血脂的影响。在健康受试者中,DHLA显著抑制ADP诱导的血小板聚集,并增加血小板PGE1释放;IDDs未表现出这些变化。然而,在给予DHLA前后,健康受试者和IDDs之间的血小板血栓素A2(TXA2)或PGE2释放没有差异。给予DHLA后,健康受试者红细胞中的花生四烯酸含量增加;IDDs中未观察到这种增加。DHLA使两组血清非酯化脂肪酸浓度显著下降,而不改变胆固醇或甘油三酯浓度。这些数据首次表明,IDD血小板可能存在PGE1合成的特定缺陷,与已知与实验性糖尿病相关的δ5-和δ6-去饱和酶缺陷截然不同;这种缺陷可能导致糖尿病中血小板的高聚集性;并且DHLA在体内具有强大的抗脂解作用;IDDs的红细胞可能存在δ6-去饱和酶缺陷。

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