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实时评估加压分离的淋巴血管中的绝对胞浆游离钙离子浓度和相应收缩性。

Real-Time Evaluation of Absolute, Cytosolic, Free Ca2+ and Corresponding Contractility in Isolated, Pressurized Lymph Vessels.

机构信息

Department of Pharmaceutical Sciences, College of Pharmacy, University of Arkansas for Medical Sciences.

Department of Pharmaceutical Sciences, College of Pharmacy, University of Arkansas for Medical Sciences;

出版信息

J Vis Exp. 2024 Mar 22(205). doi: 10.3791/66535.

Abstract

The lymphatic vasculature, now often referred to as "the third circulation," is located in many vital organ systems. A principal mechanical function of the lymphatic vasculature is to return fluid from extracellular spaces back to the central venous ducts. Lymph transport is mediated by spontaneous rhythmic contractions of lymph vessels (LVs). LV contractions are largely regulated by the cyclic rise and fall of cytosolic, free calcium ([Ca]i). This paper presents a method to concurrently calculate changes in absolute concentrations of [Ca]i and vessel contractility/rhythmicity in real time in isolated, pressurized LVs. Using isolated rat mesenteric LVs, we studied changes in [Ca]i and contractility/rhythmicity in response to drug addition. Isolated LVs were loaded with the ratiometric Ca-sensing indicator Fura-2AM, and video microscopy coupled with edge-detection software was used to capture [Ca]i and diameter measurements continuously in real time. The Fura-2AM signal from each LV was calibrated to the minimum and maximum signal for each vessel and used to calculate absolute [Ca]i. Diameter measurements were used to calculate contractile parameters (amplitude, end diastolic diameter, end systolic diameter, calculated flow) and rhythmicity (frequency, contraction time, relaxation time) and correlated with absolute [Ca]i measurements.

摘要

淋巴管系统,现在常被称为“第三循环”,位于许多重要的器官系统中。淋巴管系统的一个主要机械功能是将液体从细胞外空间回流到中心静脉导管。淋巴液的运输是通过淋巴管(LV)的自发有节奏的收缩来介导的。LV 的收缩主要受细胞质游离钙 ([Ca]i) 的周期性上升和下降调节。本文提出了一种在分离的加压 LV 中实时计算 [Ca]i 和血管收缩/节律性的绝对浓度变化的方法。使用分离的大鼠肠系膜 LV,我们研究了药物添加后 [Ca]i 和收缩/节律性的变化。分离的 LV 用比率型 Ca 敏感指示剂 Fura-2AM 加载,并使用视频显微镜结合边缘检测软件连续实时捕获 [Ca]i 和直径测量值。每个 LV 的 Fura-2AM 信号根据每个血管的最小和最大信号进行校准,并用于计算绝对 [Ca]i。直径测量用于计算收缩参数(幅度、舒张末期直径、收缩末期直径、计算流量)和节律性(频率、收缩时间、松弛时间),并与绝对 [Ca]i 测量值相关联。

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