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首页> 外文期刊>World Journal of Gastroenterology >Expression of subtypes of somatostatin receptors in hepatic stellate cells
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Expression of subtypes of somatostatin receptors in hepatic stellate cells

机译:生长抑素受体亚型在肝星状细胞中的表达

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AIM: To elucidate the mechanism by which somatostatin and its analogue exert the influence on liver fibrosis, and to investigate the mRNA expression of somatostatin receptors subtypes (SSTRs) and the distribution of somatostatin analogue octreotide in rat hepatic stellate cells (HSCs). METHODS: HSCs were isolated from Sprague Dawley (SD) rats by in situ perfusion and density gradient centrifugation. After several passages, the mRNA expression of 5 subtypes of SSTRs were assessed by reverse transcription-polymerase chain reaction (RT-PCR). HSCs were planted on coverslip and co-cultured with octreotide tagged by FITC. Then the distribution of FITC fluorescence was observed under laser scanning confocal microscope (LSCM) in 12-24 h. RESULTS: There were mRNA expression of SSTR2, SSTR3 and SSTR5 but not SSTR1 and SSTR4 in SD rat HSCs. The mRNA expression level of SSTR2 was significantly higher than that of other subtypes (P<0.01). FITC fluorescence of octreotide was clearly observed on the surface and in the cytoplasm, but not in the nuclei of HSCs under LSCM. CONCLUSION: The effect exerted by somatostatin and its analogues on HSCs may mainly depend on the expression of SSTR2, SSTR3 and SSTR5. Octreotide can perfectly combine with HSCs, and thereby exerts its biological activity on regulating the characters of active HSCs. This provides a potential prevention and management against liver fibrosis.
机译:目的:阐明生长抑素及其类似物对肝纤维化的影响机制,并研究生长抑素受体亚型(SSTRs)的mRNA表达和生长抑素类似物奥曲肽在大鼠肝星状细胞(HSCs)中的分布。方法:通过原位灌注和密度梯度离心从SD大鼠中分离HSC。数次传代后,通过逆转录聚合酶链反应(RT-PCR)评估了5种SSTR亚型的mRNA表达。将HSCs种植在盖玻片上,并与FITC标记的奥曲肽共培养。然后在激光共聚焦显微镜(LSCM)下在12-24小时内观察到FITC荧光的分布。结果:SD大鼠HSCs中有SSTR2,SSTR3和SSTR5的mRNA表达,而没有SSTR1和SSTR4的mRNA表达。 SSTR2的mRNA表达水平明显高于其他亚型(P <0.01)。在LSCM下,在表面和细胞质中清晰地观察到了奥曲肽的FITC荧光,但是在HSC的细胞核中却未观察到。结论:生长抑素及其类似物对HSC的作用可能主要取决于SSTR2,SSTR3和SSTR5的表达。奥曲肽可以与HSC完美结合,从而发挥其生物学活性来调节活性HSC的特性。这提供了针对肝纤维化的潜在预防和管理。

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