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吉非贝齐在体外对人脂肪组织中脂肪动员性脂解的作用。

Effect of gemfibrozil in vitro on fat-mobilizing lipolysis in human adipose tissue.

作者信息

Carlson L A

出版信息

Proc R Soc Med. 1976;69 Suppl 2(Suppl 2):101-3. doi: 10.1177/00359157760690S226.

Abstract

Fat-mobilizing lipolysis was studied in rat and human adipose tissue during incubation in vitro by following the release of glycerol into the incubation medium. Gemfibrozil as well as clofibrate consistently and readily inhibited basal as well as noradrenaline-stimulated fat-mobilizing lipolysis in rat fat. With human adipose tissue no effect was observed with gemfibrozil and clofibrate on basal lipolysis. This may be due to the comparatively low rate of the nonstimulated fat-mobilizing lipolysis in human tissue incubated in vitro. When lipolysis was stimulated with noradrenaline as well as isoprenaline, however, both gemfibrozil and clofibrate significantly reduced the fat-mobilizing lipolysis. This inhibition of lipolysis was however not observed in all studies. When lipolysis had been stimulated with theophylline, no inhibition of lipolysis was obtained with either compound. The possibility that reduced fat-mobilizing lipolysis in adipose tissue may cause a lowering of plasma triglycerides by reducing the flow of FFA to the liver is discussed in some detail. It is also suggested that inhibition of lipolysis may be accompanied by increased activity of lipoprotein lipase as well as an increase in the FIAT process. However, the pharmacological implication of the above-mentioned findings, particularly for gemfibrozil, must await further studies, as fairly large doses, around 1 mg/ml of incubation medium, were needed to obtain inhibition of fat-mobilizing lipolysis.

摘要

在体外孵育过程中,通过追踪甘油释放到孵育培养基中的情况,对大鼠和人体脂肪组织中的脂肪动员性脂解进行了研究。吉非贝齐以及氯贝丁酯持续且容易地抑制了大鼠脂肪中基础以及去甲肾上腺素刺激的脂肪动员性脂解。对于人体脂肪组织,未观察到吉非贝齐和氯贝丁酯对基础脂解有影响。这可能是由于在体外孵育的人体组织中,非刺激的脂肪动员性脂解速率相对较低。然而,当用去甲肾上腺素以及异丙肾上腺素刺激脂解时,吉非贝齐和氯贝丁酯均显著降低了脂肪动员性脂解。不过,并非所有研究都观察到了这种脂解抑制作用。当用茶碱刺激脂解时,这两种化合物均未获得脂解抑制效果。本文详细讨论了脂肪组织中脂肪动员性脂解减少可能通过减少游离脂肪酸向肝脏的流动而导致血浆甘油三酯降低的可能性。还提出脂解抑制可能伴随着脂蛋白脂肪酶活性增加以及脂肪酸转运蛋白(FATP)过程增强。然而,上述发现的药理学意义,特别是对于吉非贝齐而言,由于需要大约1毫克/毫升孵育培养基的相当大剂量才能获得脂肪动员性脂解的抑制效果,所以必须等待进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3a7f/1864042/e56c3c127801/procrsmed00035-0108-a.jpg

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