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Cardiovascular tissues contain independent circadian clocks.

机译:心血管组织包含独立的生物钟。

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Acute cardiovascular events exhibit a circadian rhythm in the frequency of occurrence. The mechanisms underlying these phenomena are not yet fully understood, but they may be due to rhythmicity inherent in the cardiovascular system. We have begun to characterize rhythmicity of the clock gene mPer1 in the rat cardiovascular system. Luciferase activity driven by the mPer1 gene promoter is rhythmic in vitro in heart tissue explants and a wide variety of veins and arteries cultured from the transgenic Per1-luc rat. The tissues showed between 3 and 12 circadian cycles of gene expression in vitro before damping. Whereas peak per1-driven bioluminescence consistently occurred during the late night in the heart and all arteries sampled, the phases of the rhythms in veins varied significantly by anatomical location. Varying the time of the culture procedure relative to the donor animal's light:dark cycle revealed that, unlike some other rat tissues such as liver, the phases of in vitro rhythms of arteries, veins, and heart explants were affected by culture time. However, phase relationships among tissues were consistent across culture times; this suggests diversity in circadian regulation among components of the cardiovascular system.
机译:急性心血管事件的发生频率具有昼夜节律。这些现象的潜在机制尚未完全了解,但可能是由于心血管系统固有的节律性所致。我们已经开始表征大鼠心血管系统中时钟基因mPer1的节律性。由mPer1基因启动子驱动的萤光素酶活性在体外心脏组织外植体以及从转基因Per1-luc大鼠培养的各种静脉和动脉中具有节律性。在阻尼之前,组织在体外显示3至12个昼夜节律的基因表达周期。 per-1驱动的生物发光峰值持续出现在心脏的深夜,并且所有动脉都采样,而静脉的节律相位则因解剖位置而异。相对于供体动物的明暗循环,改变培养过程的时间表明,与其他大鼠组织(例如肝脏)不同,培养时间会影响动脉,静脉和心脏外植体的体外节律。但是,组织之间的相位关系在整个培养时间内都是一致的。这表明心血管系统各部分之间的昼夜节律调节存在差异。

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