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Ca2+ influx and ATP release mediated by mechanical stretch in human lung fibroblasts

机译:Ca2 +流入和ATP释放在人肺成纤维细胞中的机械拉伸介导

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One cause of progressive pulmonary fibrosis is dysregulated wound healing after lung inflammation or damage in patients with idiopathic pulmonary fibrosis and severe acute respiratory distress syndrome. The mechanical forces are considered to regulate pulmonary fibrosis via activation of lung fibroblasts. In this study, the effects of mechanical stretch on the intracellular Ca2+ concentration ([Ca2+](i)) and ATP release were investigated in primary human lung fibroblasts. Uniaxial stretch (10-30% in strain) was applied to fibroblasts cultured in a silicone chamber coated with type I collagen using a stretching apparatus. Following stretching and subsequent unloading, [Ca2+](i) transiently increased in a strain-dependent manner. Hypotonic stress, which causes plasma membrane stretching, also transiently increased the [Ca2+](i) The stretch-induced [Ca2+](i) elevation was attenuated in Ca2+-free solution. In contrast, the increase of [Ca2+](i) by a 20% stretch was not inhibited by the inhibitor of stretch-activated channels GsMTx-4, Gd3+, ruthenium red, or cytochalasin D. Cyclic stretching induced significant ATP releases from fibroblasts. However, the stretch-induced [Ca2+](i) elevation was not inhibited by ATP diphosphohydrolase apyrase or a purinergic receptor antagonist suramin. Taken together, mechanical stretch induces Ca2+ influx independently of conventional stretch-sensitive ion channels, the actin cytoskeleton, and released ATP. (C) 2014 Elsevier Inc. All rights reserved.
机译:一种渐进性肺纤维化的原因是肺炎肿瘤患者伤口愈合的失调伤口愈合,对特发性肺纤维化和严重急性呼吸窘迫综合征患者的损伤。通过激活肺成纤维细胞,考虑机械力来调节肺纤维化。在该研究中,在原发性人肺成纤维细胞中研究了机械拉伸对细胞内Ca2 +浓度([Ca2 +](I))和ATP释放的影响。使用拉伸装置将单轴拉伸(菌株中的10-30%的菌株中的菌株中的菌株中的菌株中的10-30%)施加到涂有I型胶原蛋白的硅氧烷室中的成纤维细胞。在拉伸和随后的卸载之后,以应变依赖性方式瞬时增加[CA2 +](i)。使血浆膜拉伸的低压应力也瞬时增加[Ca2 +](i)诱导的[Ca2 +](i)升高在Ca2 + -Free溶液中衰减。相反,拉伸激活通道GSMTX-4,GD3 +,钌红色或细胞蛋白D的抑制剂不抑制20%伸展的[Ca2 +](I)的增加。循环拉伸诱导成纤维细胞的显着ATP释放。然而,通过ATP二磷酸酶α亚磷酶或嘌呤能受体拮抗剂苏拉司不抑制拉伸诱导的[Ca2 +](i)升高。连合在一起,机械拉伸诱导Ca2 +流入,独立于传统的拉伸敏感离子通道,肌动蛋白细胞骨架和释放的ATP。 (c)2014年elsevier Inc.保留所有权利。

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