Laboratory of Neuroplasticity and Neuroproteomics, KU Leuven, Naamsestraat 59, Box 2467, 3000, Leuven, Belgium.
Laboratory for Neurobiology and Gene Therapy, KU Leuven, 3000, Leuven, Belgium.
Brain Struct Funct. 2018 Jun;223(5):2073-2095. doi: 10.1007/s00429-018-1611-7. Epub 2018 Jan 25.
Unilateral vision loss through monocular enucleation (ME) results in partial reallocation of visual cortical territory to another sense in adult mice. The functional recovery of the visual cortex occurs through a combination of spared-eye potentiation and cross-modal reactivation driven by whisker-related, somatosensory inputs. Brain region-specific intracortical inhibition was recently recognized as a crucial regulator of the cross-modal component, yet the contribution of specific inhibitory neuron subpopulations remains poorly understood. Somatostatin (SST)-interneurons are ideally located within the cortical circuit to modulate sensory integration. Here we demonstrate that optogenetic stimulation of visual cortex SST-interneurons prior to eye removal decreases ME-induced cross-modal recovery at the stimulation site. Our results suggest that SST-interneurons act as local hubs, which are able to control the influx and extent of cortical cross-modal inputs into the deprived cortex. These insights critically expand our understanding of SST-interneuron-specific regulation of cortical plasticity induced by sensory loss.
单侧眼球摘除(ME)导致的单眼视力丧失会导致成年小鼠的部分视觉皮层重新分配给另一种感觉。视觉皮层的功能恢复是通过受胡须相关体感输入驱动的 spared-eye 增强和跨模态再激活的组合来实现的。最近,人们认识到大脑区域特异性皮质内抑制是跨模态成分的关键调节因子,但特定抑制性神经元亚群的贡献仍知之甚少。生长抑素(SST)-中间神经元在皮质回路中处于理想位置,可调节感觉整合。在这里,我们证明在眼球摘除前对视觉皮层 SST 中间神经元进行光遗传学刺激会降低刺激部位 ME 诱导的跨模态恢复。我们的结果表明,SST 中间神经元作为局部枢纽,能够控制传入剥夺皮层的皮质跨模态输入的流入和程度。这些见解极大地扩展了我们对感觉丧失诱导的皮质可塑性中 SST 中间神经元特异性调节的理解。