Department of Neurological Surgery and the Eli and Edythe Broad Center of Regenerative Medicine and Stem Cell Research, University of California, San Francisco, 513 Parnassus Avenue, San Francisco, CA 94143, USA.
Science. 2010 Feb 26;327(5969):1145-8. doi: 10.1126/science.1183962.
Critical periods are times of pronounced brain plasticity. During a critical period in the postnatal development of the visual cortex, the occlusion of one eye triggers a rapid reorganization of neuronal responses, a process known as ocular dominance plasticity. We have shown that the transplantation of inhibitory neurons induces ocular dominance plasticity after the critical period. Transplanted inhibitory neurons receive excitatory synapses, make inhibitory synapses onto host cortical neurons, and promote plasticity when they reach a cellular age equivalent to that of endogenous inhibitory neurons during the normal critical period. These findings suggest that ocular dominance plasticity is regulated by the execution of a maturational program intrinsic to inhibitory neurons. By inducing plasticity, inhibitory neuron transplantation may facilitate brain repair.
关键期是大脑可塑性明显的时期。在视觉皮层出生后发育的关键期期间,一只眼睛的遮挡会触发神经元反应的快速重组,这个过程被称为眼优势可塑性。我们已经表明,抑制性神经元的移植会在关键期后诱导眼优势可塑性。移植的抑制性神经元接收兴奋性突触,在宿主皮层神经元上形成抑制性突触,并在达到与正常关键期内内源性抑制性神经元相当的细胞年龄时促进可塑性。这些发现表明,眼优势可塑性受内在抑制性神经元成熟程序的执行调控。通过诱导可塑性,抑制性神经元移植可能促进大脑修复。