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评估用于线虫配体门控离子通道研究的手术提取非洲爪蟾卵母细胞的寿命。

Evaluating the longevity of surgically extracted Xenopus laevis oocytes for the study of nematode ligand-gated ion channels.

作者信息

Abdelmassih Sarah A, Cochrane Everett, Forrester Sean G

机构信息

Applied Bioscience Graduate Program, Faculty of Science, University of Ontario Institute of Technology, 2000 Simcoe Street North, Oshawa, ON, L1H 7K4, Canada.

出版信息

Invert Neurosci. 2017 Nov 28;18(1):1. doi: 10.1007/s10158-017-0205-z.

Abstract

Xenopus laevis oocytes have been extensively used as a heterologous expression system for the study of ion channels. While used successfully worldwide as tool for expressing and characterizing ion channels from a wide range of species, the limited longevity of oocytes once removed from the animal can pose significant challenges. In this study, we evaluate a simple and useful method that extends the longevity of Xenopus oocytes after removal from the animal and quantitatively assessed the reliability of the electrophysiological date obtained. The receptor used for this study was the UNC-49 receptor originally isolated from the sheep parasite, Haemonchus contortus. Overall, we found that immediate storage of the ovary in supplemented ND96 storage buffer at 4 °C could extend their use for up to 17 days with almost 80% providing reliable electrophysiological data. This means that a single extraction can provide at least 3 weeks of experiments. In addition, we examined 24-day-old oocytes (week 4) extracted from a single frog and also obtained reliable data using the same approach. However, 50% of these oocytes were usable for full dose-response experiments. Overall, we did find that this method has the potential to significantly extend the use of single oocyte extractions for two-electrode voltage clamp electrophysiology.

摘要

非洲爪蟾卵母细胞已被广泛用作研究离子通道的异源表达系统。虽然在全球范围内成功用作表达和表征来自多种物种的离子通道的工具,但一旦从动物体内取出,卵母细胞有限的寿命可能会带来重大挑战。在本研究中,我们评估了一种简单且有用的方法,该方法可延长非洲爪蟾卵母细胞从动物体内取出后的寿命,并定量评估所获得的电生理数据的可靠性。本研究使用的受体是最初从绵羊寄生虫捻转血矛线虫中分离出的UNC-49受体。总体而言,我们发现将卵巢立即储存在补充了ND96的储存缓冲液中,于4°C下可将其使用期限延长至17天,近80%的卵母细胞能提供可靠的电生理数据。这意味着单次提取可提供至少3周的实验材料。此外,我们检测了从一只青蛙中提取的24日龄卵母细胞(第4周),并使用相同方法也获得了可靠数据。然而,这些卵母细胞中有50%可用于完整的剂量反应实验。总体而言,我们确实发现该方法有潜力显著延长单卵母细胞提取用于双电极电压钳电生理研究的使用期限。

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