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Acute Functional Adaptations in Isolated Presynaptic Terminals Unveil Synaptosomal Learning and Memory

机译:在孤立的突触前终端的急性功能适应性揭示突触体学习和记忆。

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摘要

Synaptosomes are used to decipher the mechanisms involved in chemical transmission, since they permit highlighting the mechanisms of transmitter release and confirming whether the activation of presynaptic receptors/enzymes can modulate this event. In the last two decades, important progress in the field came from the observations that synaptosomes retain changes elicited by both “in vivo” and “in vitro” acute chemical stimulation. The novelty of these studies is the finding that these adaptations persist beyond the washout of the triggering drug, emerging subsequently as functional modifications of synaptosomal performances, including release efficiency. These findings support the conclusion that synaptosomes are plastic entities that respond dynamically to ambient stimulation, but also that they “learn and memorize” the functional adaptation triggered by acute exposure to chemical agents. This work aims at reviewing the results so far available concerning this form of synaptosomal learning, also highlighting the role of these acute chemical adaptations in pathological conditions.
机译:突触小体用于解释化学传递所涉及的机制,因为它们可以突出显示递质释放的机制,并确认突触前受体/酶的激活是否可以调节此事件。在过去的二十年中,该领域的重要进展来自观察到的突触小体保留了由“体内”和“体外”急性化学刺激引起的变化。这些研究的新颖之处在于发现,这些适应作用一直持续到触发药物被冲刷以外,随后以突触体功能的功能改变(包括释放效率)出现。这些发现支持这样的结论:突触小体是可对周围刺激动态响应的可塑性实体,而且它们“学习并记忆”急性暴露于化学试剂会触发的功能适应性。这项工作旨在审查迄今为止可获得的有关这种形式的突触体学习的结果,还强调了这些急性化学适应在病理状况中的作用。

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