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视觉皮层可塑性:啮齿动物诱导范式揭示的分子机制。

Visual Cortical Plasticity: Molecular Mechanisms as Revealed by Induction Paradigms in Rodents.

机构信息

Coimbra Institute for Biomedical Imaging and Translational Research (CIBIT), University of Coimbra, 3000-548 Coimbra, Portugal.

Institute for Nuclear Sciences Applied to Health (ICNAS), University of Coimbra, 3000-548 Coimbra, Portugal.

出版信息

Int J Mol Sci. 2023 Feb 28;24(5):4701. doi: 10.3390/ijms24054701.

Abstract

Assessing the molecular mechanism of synaptic plasticity in the cortex is vital for identifying potential targets in conditions marked by defective plasticity. In plasticity research, the visual cortex represents a target model for intense investigation, partly due to the availability of different in vivo plasticity-induction protocols. Here, we review two major protocols: ocular-dominance (OD) and cross-modal (CM) plasticity in rodents, highlighting the molecular signaling pathways involved. Each plasticity paradigm has also revealed the contribution of different populations of inhibitory and excitatory neurons at different time points. Since defective synaptic plasticity is common to various neurodevelopmental disorders, the potentially disrupted molecular and circuit alterations are discussed. Finally, new plasticity paradigms are presented, based on recent evidence. Stimulus-selective response potentiation (SRP) is one of the paradigms addressed. These options may provide answers to unsolved neurodevelopmental questions and offer tools to repair plasticity defects.

摘要

评估皮层中突触可塑性的分子机制对于鉴定可塑性缺陷相关疾病的潜在靶点至关重要。在可塑性研究中,视觉皮层是一个备受关注的模型,部分原因是存在不同的活体可塑性诱导方案。在这里,我们回顾了两种主要的方案:啮齿动物的眼优势(OD)和跨模态(CM)可塑性,重点介绍了涉及的分子信号通路。每个可塑性范例还揭示了不同时间点不同群体的抑制性和兴奋性神经元的贡献。由于突触可塑性缺陷是各种神经发育障碍的共同特征,因此讨论了潜在的分子和回路改变。最后,根据最近的证据提出了新的可塑性范例。本文讨论了其中一种范例,即刺激选择性反应增强(SRP)。这些选择可能为未解决的神经发育问题提供答案,并提供修复可塑性缺陷的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/128e/10003432/2606a5e31ac8/ijms-24-04701-g001.jpg

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