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首页> 外文期刊>Endocrine Research >Leptin does not induce hypertrophy, cell cycle alterations, or production of MCP-1 in cultured rat and mouse cardiomyocytes.
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Leptin does not induce hypertrophy, cell cycle alterations, or production of MCP-1 in cultured rat and mouse cardiomyocytes.

机译:瘦素不会在培养的大鼠和小鼠心肌细胞中诱导肥大,细胞周期改变或MCP-1产生。

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摘要

BACKGROUND: Leptin has been proposed as an important mediator in cardiovascular pathophysiology. Patients with congestive heart failure (CHF) present high plasma leptin levels. CHF is generally preceded by myocardial remodeling involving hypertrophy, necrosis, and apoptosis. AIM: To investigate whether leptin causes hypertrophy or cell cycle alterations, or induces MCP-1 synthesis in cardiomyocytes. MEHODS: Primary cultures of neonatal rat cardiomyocytes (PC) and murine cell line HL-1 were used. RT-PCR was used to identify Ob-Rb gene expression. Metabolic activity and proliferation of cardiomyocytes was studied using MTT and BrdU uptake, while apoptosis was assayed with Hoechst dye vital staining and flow cytometry. Measurement of the cell surface area was used to determine hypertrophy. MCP-1 levels were measured by ELISA. RESULTS: RT-PCR showed Ob-Rb mRNA expression in HL-1 cells. Exposure to leptin induced no changes in metabolic activity, proliferation, and apoptotic rates, and did not alter cell cycle in cardiomyocytes. Leptin did not increase cell size of cardiomyocytes, and MCP-1 synthesis was not detected in PC and HL-1 cells treated with leptin. CONCLUSION: This work shows that leptin does not induce changes in viability, proliferation, size or apoptosis of rat neonatal and HL-1 cardiomyocytes, and it does not induce MCP-1 secretion in these cells.
机译:背景:瘦素已被提议作为心血管病理生理学的重要介体。充血性心力衰竭(CHF)患者的血浆瘦素水平较高。 CHF通常发生在涉及肥大,坏死和凋亡的心肌重塑之前。目的:研究瘦素是否导致心肌细胞肥大或细胞周期改变,或诱导MCP-1合成。方法:使用新生大鼠心肌细胞(PC)和鼠细胞系HL-1的原代培养。 RT-PCR用于鉴定Ob-Rb基因表达。 MTT和BrdU摄取研究了心肌细胞的代谢活性和增殖,而Hoechst染料活体染色和流式细胞术则检测了细胞凋亡。细胞表面积的测量用于确定肥大。通过ELISA测量MCP-1水平。结果:RT-PCR显示HL-1细胞Ob-Rb mRNA表达。暴露于瘦素不会引起代谢活性,增殖和凋亡率的变化,也不会改变心肌细胞的细胞周期。瘦素不会增加心肌细胞的大小,并且在用瘦素处理的PC和HL-1细胞中未检测到MCP-1合成。结论:这项工作表明瘦素不会诱导大鼠新生儿和HL-1心肌细胞活力,增殖,大小或凋亡的变化,并且不会诱导这些细胞中MCP-1的分泌。

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