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[连续近红外激光照射下培养的猪视网膜神经节细胞上电压门控钾通道的电生理特性]

[The electrophysiological properties of voltage-gated potassium channels on cultivated porcine retinal ganglion cells irradiated with continuous near-infrared laser].

作者信息

Xu Ke, Shao Yan, Sun Chang-sen, Liang Shan-shan, Hao Shuang, Li Xin-yu

机构信息

Department of Ophthalmology, Dalian Medical University, Dalian, China.

出版信息

Zhonghua Yan Ke Za Zhi. 2012 Feb;48(2):153-8.

Abstract

OBJECTIVE

To investigate the influence of continuous near-infrared (CNI) laser to potassium ion channels on retinal ganglion cell (RGC).

METHODS

Experiment study. Porcine RGC was cultured with enzymatic digestion method in vitro by taking off the retina from the piglets. Whole-cell patch clamp mode recordings were obtained from primary cultured porcine RGC. Whole-cell currents of porcine RGC irradiated with a single-mode CNI laser of 845 nm wavelength and 30 mW power were also recorded. The primary cultured porcine RGC were divided into laser irradiation group and control group according to whether they accepted CNI laser of 845 nm wavelength. t test was used to analyze the average peak amplitude between the two groups.

RESULTS

The cells had the morphological characteristics of typical neurons after one week cultured observed by inverted phase contrast microscope. The body and bumps with yellow-green fluorescence was positive cell which observed by immune cell fluorescence chemical testing. CNI laser had a regulation on outward potassium current of porcine RGC in a voltage-dependent manner. There was significant difference on the average peak amplitude of potassium current between the laser irradiation group [(634.4 ± 86.8) Pa] and the control group [(580.5 ± 116.4) Pa], respectively (n = 30, t = 7.923, P = 0.000).

CONCLUSIONS

CNI laser can change the properties of outward K(+) channel. Therefore, formation and releasing of action potential is affected. Further, physiological functions of RGC are regulated, which might contribute to the protection and restoration of injured RGC. It can be provided a new scholar direction for the protection of the RGC, which are injured by glaucoma.

摘要

目的

探讨连续近红外(CNI)激光对视网膜神经节细胞(RGC)钾离子通道的影响。

方法

实验研究。通过酶消化法从仔猪获取视网膜,体外培养猪RGC。采用全细胞膜片钳模式记录原代培养的猪RGC。记录用波长845nm、功率30mW的单模CNI激光照射的猪RGC的全细胞电流。根据是否接受845nm波长的CNI激光,将原代培养的猪RGC分为激光照射组和对照组。采用t检验分析两组之间的平均峰值幅度。

结果

倒置相差显微镜观察显示,培养1周后细胞具有典型神经元的形态特征。免疫细胞荧光化学检测观察到,胞体和突起呈黄绿色荧光的为阳性细胞。CNI激光以电压依赖性方式对猪RGC的外向钾电流有调节作用。激光照射组[(634.4±86.8)Pa]和对照组[(580.5±116.4)Pa]钾电流的平均峰值幅度分别有显著差异(n = 30,t = 7.923,P = 0.000)。

结论

CNI激光可改变外向K(+)通道的特性。因此,动作电位的形成和释放受到影响。进而,RGC的生理功能受到调节,这可能有助于受损RGC的保护和恢复。可为青光眼所致RGC损伤的保护提供新的学术方向。

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