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首页> 外文期刊>Pfluegers Archiv: European Journal of Physiology >Paucity of CFTR current but modest CFTR immunoreactivity in non-diseased human ventricle.
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Paucity of CFTR current but modest CFTR immunoreactivity in non-diseased human ventricle.

机译:在未患病的人心室中,CFTR电流不足,但CFTR免疫反应性中等。

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摘要

We looked for evidence of expression of the cystic fibrosis transmembrane conductance regulator (CFTR) in non-diseased human ventricle. In rabbit and guinea pig the CFTR current is present in the highest density in subepicardial ventricular myocytes. In the present study, whole-cell patch-clamp was used to determine if a CFTR-like chloride current (I(CFTR,card)) can also be activated in human subepicardial ventricular myocytes. No evidence for I(CFTR,card) was detected in these electrophysiological studies when 10 microM forskolin was applied to 23 different cells from 4 donor hearts. Consistent with our previous results, a swelling-induced chloride current (I(Cl,swell)) could be observed after cell inflation. The enzymatic digestion of human ventricle to release single myocytes may have affected our ability to detect I(CFTR,card). Therefore, we looked for anti-CFTR immunoreactivity in slices of left ventricular free wall. A strong immunoreactivity signal was observed in guinea pig ventricle, a positive control. Background staining levels were seen in dog ventricle, a negative control tissue. Human anti-CFTR immunoreactivity was slightly above background. This low level of anti-CFTR immunoreactivity is consistent both with reports that CFTR mRNA is detectable in human ventricle and our inability to detect a significant I(CFTR,card) current density.
机译:我们寻找在未患病的人心室中表达囊性纤维化跨膜电导调节剂(CFTR)的证据。在兔子和豚鼠中,CFTR电流以最高密度存在于心外膜下心室肌细胞中。在本研究中,全细胞膜片钳用于确定CFTR样氯电流(I(CFTR,card))是否也可以在人心外膜下心室肌细胞中激活。当将10 microM毛喉素应用于4个供体心脏的23个不同细胞时,在这些电生理研究中未检测到I(CFTR,card)的证据。与我们之前的结果一致,在细胞膨胀后可以观察到肿胀诱导的氯化物电流(I(Cl,swell))。人脑室的酶消化释放单个肌细胞可能影响了我们检测I(CFTR,card)的能力。因此,我们在左心室游离壁切片中寻找抗CFTR免疫反应性。在豚鼠心室(阳性对照)中观察到了强烈的免疫反应信号。在犬脑室(阴性对照组织)中观察到背景染色水平。人的抗CFTR免疫反应性略高于背景。这种低水平的抗CFTR免疫反应性既与关于在人体心室中检测到CFTR mRNA的报道,也与我们无法检测出显着的I(CFTR,card)电流密度的报道相一致。

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