基础医学与临床 ›› 2018, Vol. 38 ›› Issue (4): 492-496.

• 研究论文 • 上一篇    下一篇

巴豆醛抑制小鼠心肌收缩功能

刘衍冬1,金伟2,邓琴琴1,裴兆辉1   

  1. 1. 南昌市第三医院
    2.
  • 收稿日期:2017-03-30 修回日期:2017-06-29 出版日期:2018-04-05 发布日期:2018-03-27
  • 通讯作者: 裴兆辉 E-mail:Leak123@126.com
  • 基金资助:
    低声压级水平次声治疗大鼠心肌纤维化中microRNA-29a调控TGF/Smad传导通路研究

Crotonaldehyde inhibits myocardial contractile function in mice

  • Received:2017-03-30 Revised:2017-06-29 Online:2018-04-05 Published:2018-03-27

摘要: 目的 研究香烟烟雾中α,β-不饱和醛-巴豆醛对小鼠心肌细胞收缩功能和心肌细胞内Ca2+功能的影响。方法 经Langendorff装置灌注消化分离出C57BL/6小鼠心肌细胞,与不同浓度(1、10、25和50 μmol/L)巴豆醛孵育6 h,对照组不经巴豆醛处理,然后分别检测心肌细胞收缩峰值(PS)、最大收缩和舒张速率(±dL/dt)、心肌细胞收缩峰值时间(TPS)、心肌细胞舒张90%时间(TR90)、fura-2荧光强度(FFI)、细胞内Ca2+衰退和SERCA 45Ca2+摄取,Western blot分析Na+-Ca2+交换体的表达。结果 与对照组相比,较高浓度(25和50 μmol/L)的巴豆醛组能明显降低心肌细胞PS、±dL/dt、ΔFFI、SERCA活性及Ca2+衰退速度(P<0.05),并能延长TR90(P<0.05);而不同浓度巴豆醛对小鼠心肌细胞Na+-Ca2+交换体的表达无明显影响。结论 巴豆醛可能是通过抑制小鼠心肌细胞内SERCA活性来影响心肌细胞内Ca2+功能,从而抑制心肌细胞的收缩功能。

关键词: 关键词:巴豆醛, 心肌细胞, 心肌收缩功能, SERCA

Abstract: Objective To study the effect of an essential α,β-unsaturated aldehyde from cigarette smoke crotonaldehyde on myocardial contractile function and intracellular Ca2+ function in mouse. Methods Hearts were removed from male C57BL/6 mice were digested by Langendorff to islate the cardiomyocytes. The cardiomyocytes of mice were then incubated with crotonaldehyde (1, 10, 25 and 50 μmol/L) for 6 h, and the control group was treated without crotonaldehyde, then they were evaluated including peak shortening (PS), maximal velocity of shortening/relengthening (±dL/dt), time-to-PS (TPS), time-to-90% relengthening (TR90), fura-2 fluorescence intensity (FFI), intracellular Ca2+decay and SERCA 45Ca2+ uptake and the expression of Na+-Ca2+ exchanger were evaluated using Western blot analysis. Results Compared with the control group, the higher concentrations of the crotonaldehyde(25 and 50 μmol/L) groups significantly diminished the PS, ±dL/dt, ΔFFI, SERCA activity and Ca2+ decay (P<0.05), as well as prolonged the TR90 (P<0.05); however the crotonaldehyde with different concentrations had no effect on the expression of Na+-Ca2+ exchanger in cardiomyocytes. Conclusions Crotonaldehyde may inhibit cardiomyocyte contraction by suppressing SERCA activity and compromising intracellular Ca2+ handling.

Key words: Keywords: Crotonaldehyde, Cardiomyocytes, Contractile function, SERCA

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