用共聚焦显微镜观察完整肾小球钙处理的实时成像。

Muhammad Nabeel Ghayur, Luke Jeffrey Janssen
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引用次数: 0

摘要

肾小球是肾脏的滤过单位。作为多细胞和复杂结构的肾小球,其功能的许多方面还有待阐明。大多数研究使用培养的肾小球细胞,与天然细胞相比,肾小球细胞可能表现出生理上的改变。共聚焦显微镜为原位肾小球功能和生理的研究开辟了新的途径。在本报告中,我们建议在肾皮质切片和分离的完整肾小球中对肾小球细胞进行Ca(2+)处理研究。取100 μm厚的小鼠皮质片,筛分法取大鼠完整肾小球。这些被装载了fluo-4,然后放置在共聚焦显微镜下。采用488 nm光电二极管激光器激发Fluo-4,以1帧/秒的速度采集图像。平均荧光强度(AFI)的变化被解释为[Ca(2+)](i)的变化。Angⅱ组(分别为0.01 μM和0.1 μM) AFI分别为37.1±6.7%和84.3±20.9%。去甲肾上腺素(10 μM)、精氨酸加压素(0.1 μM)和K(+) (30 mM)也使肾小球细胞AFI分别升高26.5±6.8%、22.3±1.0%和39.8±10.3%。同样,在离体肾小球中,Ang II (0.1-10 μM)、K(+) (30-90 mM)和内皮素-1 (0.01-1 μM)均显示[Ca(2+)]升高(i)。这些结果为未来的研究提供了动力,利用肾皮质切片和分离的完整肾小球,通过共聚焦显微镜检查肾小球细胞中的Ca(2+)处理。结果支持该系统在肾小球生理学和药理学研究中的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Real-time Imaging of Ca-handling in Intact Renal Glomeruli Using Confocal Microscopy.

Glomeruli are filtering units in the kidneys. Being multicellular and complex in structure, many aspects of glomerular function are yet to be elucidated. Most studies use glomerular cells in culture, which may exhibit altered physiology compared to native cells. Confocal microscopy has opened new avenues in exploring in situ glomerular function and physiology. In this report, we propose experimenting with glomerular cells in renal cortical slices and isolated intact glomeruli for Ca(2+)-handling studies. Cortical slices (100 μm thick) were obtained from mice while intact glomeruli were isolated from rats using the sieving method. These were loaded with fluo-4 and then placed in a confocal microscope. Fluo-4 was excited using a 488 nm photodiode laser and images were collected at 1 frame/sec. Changes in average fluorescence intensity (AFI) were interpreted as changes in [Ca(2+)](i). AFI increased to 37.1 ± 6.7% and 84.3 ± 20.9% with Ang II (0.01 and 0.1 μM respectively). Norepinephrine (10 μM), arginine vasopressin (0.1 μM) and K(+) (30 mM) also elevated AFI by 26.5 ± 6.8%, 22.3 ± 1.0% and 39.8 ± 10.3% respectively in the glomerular cells. Likewise in isolated glomeruli, Ang II (0.1-10 μM), K(+) (30-90 mM) and endothelin-1 (0.01-1 μM), all showed elevation in [Ca(2+)](i). These results give an impetus for future studies examining Ca(2+)-handling by confocal microscopy in glomerular cells using renal cortical slices and isolated intact glomeruli. The results support the utility of this system for study of glomerular physiology and pharmacology.

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