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Distinct roles of L- and T-type voltage-dependent Ca2+ channels in regulation of lymphatic vessel contractile activity

机译:L和T型电压依赖性Ca2 +通道在调节淋巴管收缩活动中的不同作用

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Lymph drainage maintains tissue fluid homeostasis and facilitates immune response. It is promoted by phasic contractions of collecting lymphatic vessels through which lymph is propelled back into the blood circulation. This rhythmic contractile activity (i.e. lymphatic pumping) increases in rate with increase in luminal pressure and relies on activation of nifedipine-sensitive voltage-dependent Ca2+ channels (VDCCs). Despite their importance, these channels have not been characterized in lymphatic vessels. We used pressure- and wire-myography as well as intracellular microelectrode electrophysiology to characterize the pharmacological and electrophysiological properties of L-type and T-type VDCCs in rat mesenteric lymphatic vessels and evaluated their particular role in the regulation of lymphatic pumping by stretch. We complemented our study with PCR and confocal immunofluorescence imaging to investigate the expression and localization of these channels in lymphatic vessels. Our data suggest a delineating role of VDCCs in stretch-induced lymphatic vessel contractions, as the stretch-induced increase in force of lymphatic vessel contractions was significantly attenuated in the presence of L-type VDCC blockers nifedipine and diltiazem, while the stretch-induced increase in contraction frequency was significantly decreased by the T-type VDCC blockers mibefradil and nickel. The latter effect was correlated with a hyperpolarization. We propose that activation of T-type VDCCs depolarizes membrane potential, regulating the frequency of lymphatic contractions via opening of L-type VDCCs, which drive the strength of contractions.
机译:淋巴引流可维持组织液稳态,并促进免疫反应。它是由收集淋巴管的阶段性收缩促进的,通过淋巴管的收缩将淋巴推回血液循环。这种节律性收缩活动(即淋巴泵送)随着腔压力的增加而增加,并且依赖于硝苯地平敏感的电压依赖性Ca2 +通道(VDCC)的激活。尽管它们很重要,但这些通道尚未在淋巴管中表征。我们使用压力和钢丝肌电图以及细胞内微电极电生理学来表征大鼠肠系膜淋巴管中L型和T型VDCC的药理和电生理特性,并评估它们在通过拉伸调节淋巴泵的特殊作用。我们通过PCR和共聚焦免疫荧光成像对研究进行了补充,以研究这些通道在淋巴管中的表达和定位。我们的数据表明VDCC在牵张引起的淋巴管收缩中具有重要作用,因为在L型VDCC阻滞剂硝苯地平和地尔硫卓的存在下,牵张诱导的淋巴管收缩力的增加明显减弱,而牵张诱导的增加T型VDCC阻滞剂米贝拉地尔和镍显着降低了收缩频率。后者的作用与超极化有关。我们建议激活T型VDCCs去极化膜电位,通过打开L型VDCCs来调节淋巴收缩的频率,从而驱动收缩强度。

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