神经紧张素与人胚胎肺成纤维细胞的结合。

A Gupta, K A Hruska, K J Martin
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引用次数: 4

摘要

一些神经肽已被证明可以调节参与免疫反应和炎症的细胞功能。神经紧张素是一种由13个氨基酸组成的神经肽,主要分布于神经系统和肠道。神经紧张素还能刺激肥大细胞脱肉芽,增强巨噬细胞的吞噬和细胞溶解能力,表明这种肽调节炎症和免疫反应。成纤维细胞在炎症和组织愈合中发挥重要作用,这些过程可能受到几种已被证明与成纤维细胞结合的神经肽的调节。然而,神经紧张素受体尚未在成纤维细胞中发现。研究了人胚胎肺成纤维细胞(HELF)与神经紧张素的结合及生物学效应。125i -神经紧张素与贴壁和融合的人胚胎肺成纤维细胞(HELF)结合,镀在12mm直径的孔中,是特异性和饱和的。结合数据的计算机辅助分辨率显示了两类结合位点:高亲和力,低容量位点(Kd = 1.6 x 10(-11) M, 19.5 x 10(7)个位点/孔)和低亲和力,高容量位点(Kd = 10(-8) M, 4 x 10(9)个位点/孔)。神经紧张素刺激HELF中胞质钙立即、短暂、剂量依赖性增加(阈值剂量:10(-11)M),表明钙从细胞内储存中释放出来。神经紧张素受体在成纤维细胞上的新发现进一步支持了这种神经肽作为炎症和免疫反应调节剂的作用。
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Neurotensin binding to human embryonic lung fibroblasts.

Several neuropeptides have been shown to regulate the function of cells involved in immune response and inflammation. Neurotensin is a 13 amino acid neuropeptide localized primarily to the nervous system and gut. Neurotensin also stimulates mast cell degranulation and enhances phagocytic and cytolytic capability of macrophages, suggesting that this peptide regulates inflammatory and immune responses. Fibroblasts play an important role in inflammation and tissue healing, and these processes may be regulated by several neuropeptides that have been shown to bind to fibroblasts. However neurotensin receptors have not been identified on fibroblasts. Human embryonic lung fibroblasts (HELF) were examined for binding and biological effects of neurotensin. 125I-neurotensin binding to adherent and confluent human embryonic lung fibroblasts (HELF), plated in 12mm diameter wells was specific and saturable. Computer-assisted resolution of the binding data demonstrated two classes of binding sites: a high affinity, low capacity site (Kd = 1.6 x 10(-11) M, 19.5 x 10(7) sites/well), and a low- affinity, high-capacity site (Kd = 10(-8) M, 4 x 10(9) sites/well). Neurotensin stimulated immediate, transient, dose-dependent increases of cytosolic calcium in HELF (threshold dose: 10(-11) M), suggesting release of calcium from intracellular stores. The novel finding of neurotensin receptors on fibroblasts provides further support for this neuropeptide's role as a regulator of inflammatory and immune responses.

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