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脊椎动物心脏心房和心室中的碱性成纤维细胞生长因子。

Basic fibroblast growth factor in atria and ventricles of the vertebrate heart.

作者信息

Kardami E, Fandrich R R

机构信息

St. Boniface General Hospital Research Centre, Division of Cardiovascular Sciences, Winnipeg, Manitoba, Canada.

出版信息

J Cell Biol. 1989 Oct;109(4 Pt 1):1865-75. doi: 10.1083/jcb.109.4.1865.

Abstract

Extracts from atrial and ventricular heart tissue of several species (chicken, rat, sheep, and cow) are strongly mitogenic for chicken skeletal myoblasts, with the highest apparent concentration of biological activity in the atrial extracts. Using several approaches (biological activity assay and biochemical and immunological analyses), we have established that (a) all cardiac extracts contain an 18,000-D peptide which is identified as basic fibroblast growth factor (bFGF) since it elutes from heparin-Sepharose columns at salt concentrations greater than 1.4 M and is recognized by bFGF-specific affinity-purified antibodies; (b) bFGF is more abundant in the atrial extracts in all species so examined; (c) avian cardiac tissue extracts contain the highest concentration of immunoreactive bFGF; and (d) avian ventricles contain a higher relative molecular mass (23,000-D) bFGF-like peptide which is absent from atrial extracts. Examination of frozen bovine cardiac tissue sections by indirect immunofluorescence using anti-bFGF antibodies shows bFGF-like reactivity associated with nuclei and intercalated discs of muscle fibers. There is substantial accumulation of bFGF around atrial but not ventricular myofibers, resulting most likely from more extensive endomysium in the atria. Blood vessels and single, nonmuscle, connective tissue cells react strongly with the anti-bFGF antibodies. Higher bFGF content and pericellular distribution in atrial muscles suggest a correlation with increased regenerative potential in this tissue. Distribution within the myofibers is intriguing, raising the possibility for an intimate and continuous involvement of bFGF-like components with normal myocardial function.

摘要

从几种物种(鸡、大鼠、绵羊和牛)的心房和心室心脏组织中提取的物质对鸡骨骼肌成肌细胞具有很强的促有丝分裂作用,心房提取物中生物活性的表观浓度最高。通过几种方法(生物活性测定以及生化和免疫分析),我们已经确定:(a) 所有心脏提取物都含有一种18,000道尔顿的肽,该肽被鉴定为碱性成纤维细胞生长因子(bFGF),因为它在盐浓度大于1.4 M时从肝素 - 琼脂糖柱上洗脱,并且能被bFGF特异性亲和纯化抗体识别;(b) 在所有所检测的物种中,bFGF在心房提取物中含量更高;(c) 禽类心脏组织提取物中免疫反应性bFGF的浓度最高;(d) 禽类心室含有一种相对分子质量更高(23,000道尔顿)的bFGF样肽,而心房提取物中不存在这种肽。使用抗bFGF抗体通过间接免疫荧光检查冷冻的牛心脏组织切片,结果显示bFGF样反应性与肌纤维的细胞核和闰盘相关。bFGF在心房肌纤维周围大量积聚,而在心室肌纤维周围则没有,这很可能是由于心房中更广泛的肌内膜所致。血管和单个非肌肉结缔组织细胞与抗bFGF抗体反应强烈。心房肌中较高的bFGF含量和细胞周围分布表明其与该组织中再生潜力的增加相关。bFGF在肌纤维内的分布很有趣,这增加了bFGF样成分与正常心肌功能密切且持续相关的可能性。

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