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培养后的心肌细胞中肝素可释放的脂蛋白脂肪酶活性增加。

Heparin-releasable lipoprotein lipase activity is increased in cardiomyocytes after culture.

作者信息

Anderson L G, Carroll R, Acharya A, Severson D L

机构信息

Department of Pharmacology and Therapeutics, Faculty of Medicine, University of Calgary, AB, Canada.

出版信息

Can J Physiol Pharmacol. 1998 Feb;76(2):229-36.

PMID:9635164
Abstract

The activity of lipoprotein lipase (LPL) in adult rat heart cardiomyocytes after overnight culture on laminin-coated plates for 18-22 h was compared with enzyme activity in freshly isolated cardiomyocytes. LPL activity in cellular homogenates from cultured cardiomyocytes and freshly isolated cells was 240 and 233 nmol oleate released h-1.mg-1 protein, respectively. LPL specific activity (mU/ng LPL protein) was 0.07 in cultured cells compared with 0.42 in freshly isolated cells, indicating an increased content of inactive LPL mass after overnight culture. The heparin-induced release of LPL activity into the medium of cultured cardiomyocytes (198 nmol.h-1.mg-1) was much greater than heparin-releasable LPL (HR-LPL) activity (59 nmol.h-1.mg-1) from freshly isolated cells. HR-LPL activity from cultured cardiomyocytes was dependent on serum (16.3-fold activation) and was inhibited by high ionic strength (1 M NaCl) and by a polyclonal antibody to LPL. Cultured cardiomyocytes also had more immunodetectable LPL on the cell surface compared with freshly isolated cardiomyocytes, consistent with increased HR-LPL activity. Therefore, overnight culture may permit cardiomyocytes time to recover from the stress of isolation by increasing the content of LPL on the cell surface.

摘要

将成年大鼠心肌细胞在纤连蛋白包被的平板上过夜培养18 - 22小时后的脂蛋白脂肪酶(LPL)活性,与新鲜分离的心肌细胞中的酶活性进行了比较。培养的心肌细胞和新鲜分离细胞的细胞匀浆中LPL活性分别为每小时每毫克蛋白释放240和233纳摩尔油酸。培养细胞中LPL的比活性(毫微单位/纳克LPL蛋白)为0.07,而新鲜分离细胞中为0.42,这表明过夜培养后无活性LPL质量增加。肝素诱导培养的心肌细胞培养基中LPL活性的释放(198纳摩尔·小时-1·毫克-1)远大于新鲜分离细胞中肝素可释放的LPL(HR-LPL)活性(59纳摩尔·小时-1·毫克-1)。培养的心肌细胞的HR-LPL活性依赖于血清(激活16.3倍),并受到高离子强度(1 M NaCl)和LPL多克隆抗体的抑制。与新鲜分离的心肌细胞相比,培养的心肌细胞在细胞表面也有更多可免疫检测的LPL,这与HR-LPL活性增加一致。因此,过夜培养可能使心肌细胞有时间通过增加细胞表面LPL的含量从分离应激中恢复。

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