Alteration in rectification of potassium channels in perinatal hypoxia ischemia brain damage

Author:

Chen Penghui1,Wang Liyan2,Deng Qiyue1,Ruan Huaizhen1,Cai Wenqin1

Affiliation:

1. Department of Neurobiology, The Third Military Medical University, Chongqing, China; and

2. Department of Pediatrics, Xinqiao Hospital, The Third Military Medical University, Chongqing, China

Abstract

Oligodendrocyte progenitor cells (OPCs) are susceptible to perinatal hypoxia ischemia brain damage (HIBD), which results in infant cerebral palsy due to the effects on myelination. The origin of OPC vulnerability in HIBD, however, remains controversial. In this study, we defined the HIBD punctate lesions by MRI diffuse excessive high signal intensity (DEHSI) in postnatal 7-day-old rats. The electrophysiological functional properties of OPCs in HIBD were recorded by patch-clamp in acute cerebral cortex slices. The slices were intracellularly injected with Lucifer yellow and immunohistochemically labeled with NG2 antibody to identify local OPCs. Passive membrane properties and K+ channel functions in OPCs were analyzed to estimate the onset of vulnerability in HIBD. The resting membrane potential, membrane resistance, and membrane capacitance of OPCs were increased in both the gray and white matter of the cerebral cortex. OPCs in both the gray and white matter exhibited voltage-dependent K+ currents, which consisted of the initiated rectified potassium currents ( IA) and the sustained rectified currents ( IK). The significant alternation in membrane resistance was influenced by the diversity of potassium channel kinetics. These findings suggest that the rectification of IA and IK channels may play a significant role in OPC vulnerability in HIBD.

Funder

National Natural Science Foundation of China

Natural Science Foundation Project of CQ

Publisher

American Physiological Society

Subject

Physiology,General Neuroscience

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