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Towards Therapeutic Applications of Arthropod Venom K~+-Channel Blockers in CNS Neurologic Diseases Involving Memory Acquisition and Storage

机译:涉及记忆采集和储存的CNS神经系统疾病中Arthropod Venom K〜+ -Channel障碍物的治疗应用

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摘要

Potassium channels are the most heterogeneous and widely distributed group of ion channels and play important functions in all cells, in both normal and pathological mechanisms, including learning and memory processes. Being fundamental for many diverse physiological processes, K~+-channels are recognized as potential therapeutic targets in the treatment of several Central Nervous System (CNS) diseases, such as multiple sclerosis, Parkinson's and Alzheimer's diseases, schizophrenia, HIV-1-associated dementia, and epilepsy. Blockers of these channels are therefore potential candidates for the symptomatic treatment of these neuropathies, through their neurological effects. Venomous animals have evolved a wide set of toxins for prey capture and defense. These compounds, mainly peptides, act on various pharmacological targets, making them an innumerable source of ligands for answering experimental paradigms, as well as for therapeutic application. This paper provides an overview of CNS K~+-channels involved in memory acquisition and storage and aims at evaluating the use of highly selective K~+-channel blockers derived from arthropod venoms as potential therapeutic agents for CNS diseases involving learning and memory mechanisms.
机译:钾通道是最异质和广泛分布的离子通道组,并在正常和病理机制中在所有细胞中发挥重要功能,包括学习和内存过程。对于许多不同的生理过程来说,K〜+ -Channels被认为是治疗几种中枢神经系统(CNS)疾病的潜在治疗目标,例如多发性硬化症,帕金森和阿尔茨海默病,精神分裂症,HIV-1相关痴呆症和癫痫。因此,这些渠道的阻止者是通过其神经效应来对症治疗这些神经病的潜在候选者。有毒的动物已经进化了一套巨大的毒素,用于猎物捕获和防御。这些化合物主要是肽,对各种药理靶标作用,使其成为用于应答实验范例的无数的配体来源,以及治疗应用。本文概述了内存采集和储存中涉及的CNS K〜+ -Channels,并旨在评估衍生自节肢动物毒液的高选择性K〜+ -Channel阻滞剂作为涉及学习和记忆机制的CNS疾病的潜在治疗剂。

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