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瞬时改变的肌膜通透性和碱性成纤维细胞生长因子释放在成年大鼠心室肌细胞体外对机械活动增加的肥大反应中的作用。

Role of transiently altered sarcolemmal membrane permeability and basic fibroblast growth factor release in the hypertrophic response of adult rat ventricular myocytes to increased mechanical activity in vitro.

作者信息

Kaye D, Pimental D, Prasad S, Mäki T, Berger H J, McNeil P L, Smith T W, Kelly R A

机构信息

Department of Medicine, Brigham and Women's Hospital, Boston, Massachusetts 02115, USA.

出版信息

J Clin Invest. 1996 Jan 15;97(2):281-91. doi: 10.1172/JCI118414.

Abstract

One of the trophic factors that has been implicated in initiating or facilitating growth in response to increased mechanical stress in several tissues and cell types is basic fibroblast growth factor (bFGF; FGF-2). Although mammalian cardiac muscle cells express bFGF, it is not known whether it plays a role in mediating cardiac adaptation to increased load, nor how release of the cytosolic 18-kD isoform of bFGF would be regulated in response to increased mechanical stress. To test the hypothesis that increased mechanical activity induces transient alterations in sarcolemmal permeability that allow cytosolic bFGF to be released and subsequently to act as an autocrine and paracrine growth stimulus, we examined primary isolates of adult rat ventricular myocytes maintained in serum-free, defined medium that were continually paced at 3 Hz for up to 5 d. Paced myocytes, but not nonpaced control cells, exhibited a "hypertrophic" response, which was characterized by increases in the rate of phenylalanine incorporation, total cellular protein content, and cell size. These changes could be mimicked in control cells by exogenous recombinant bFGF and could be blocked in continually paced cells by a specific neutralizing anti-bFGF antibody. In addition, medium conditioned by continually paced myocytes contained significantly more bFGF measured by ELISA and more mitogenic activity for 3T3 cells, activity that could be reduced by a neutralizing anti-bFGF antibody. The hypothesis that transient membrane disruptions sufficient to allow release of cytosolic bFGF occur in paced myocytes was examined by monitoring the rate of uptake into myocytes from the medium of 10-kD dextran linked to fluorescein. Paced myocytes exhibited a significantly higher rate of fluoresceinlabeled dextran uptake. These data are consistent with the hypothesis that nonlethal, transient alterations in sarcolemmal membrane permeability with release of cytosolic bFGF is one mechanism by which increased mechanical activity could lead to a hypertrophic response in cardiac myocytes.

摘要

在多种组织和细胞类型中,一种与因机械应力增加而启动或促进生长相关的营养因子是碱性成纤维细胞生长因子(bFGF;FGF - 2)。尽管哺乳动物心肌细胞表达bFGF,但尚不清楚它是否在介导心脏对负荷增加的适应性过程中发挥作用,也不清楚bFGF胞质18-kD异构体的释放如何响应机械应力增加而受到调节。为了验证这一假说,即增加的机械活动会诱导肌膜通透性的短暂改变,使胞质bFGF得以释放,随后作为自分泌和旁分泌生长刺激因子发挥作用,我们研究了在无血清、特定培养基中培养的成年大鼠心室肌细胞原代分离物,这些细胞以3 Hz的频率持续起搏长达5天。起搏的心肌细胞,而非未起搏的对照细胞,表现出“肥大”反应,其特征为苯丙氨酸掺入速率、细胞总蛋白含量和细胞大小增加。这些变化可通过外源性重组bFGF在对照细胞中模拟,且可被持续起搏细胞中的特异性中和抗bFGF抗体阻断。此外,通过ELISA检测,持续起搏的心肌细胞条件培养基中含有的bFGF显著更多,对3T3细胞的促有丝分裂活性也更高,而这种活性可被中和抗bFGF抗体降低。通过监测与荧光素相连的10-kD葡聚糖从培养基进入心肌细胞的摄取速率,研究了在起搏心肌细胞中是否发生足以允许胞质bFGF释放的短暂膜破坏这一假说。起搏的心肌细胞表现出显著更高的荧光素标记葡聚糖摄取速率。这些数据与以下假说一致,即肌膜通透性的非致死性短暂改变伴随胞质bFGF释放是机械活动增加可导致心肌细胞肥大反应的一种机制。

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