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Transient Synaptic Silencing of Developing Striate Cortex Has Persistent Effects on Visual Function and Plasticity

机译:发育中的纹状皮质的瞬时突触沉默对视觉功能和可塑性具有持久性影响

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摘要

Neural circuits in the cerebral cortex are shaped by experience during “critical periods” early in life. For example, visual cortex is immature at the time of eye opening and gradually develops its functional properties during a sensitive period. Very few reports have addressed the role of intrinsic neural activity in cortical maturation. Here we have exploited the bacterial enzyme botulinum neurotoxin E (BoNT/E) to produce a unilateral, reversible blockade of neural activity in rat visual cortex during the sensitive period. BoNT/E is a highly selective protease that interferes with transmitter release via cleavage of the synaptic protein SNAP-25 (synaptosomal-associated protein of 25 kDa). Unilateral, intracortical injections of BoNT/E were made at the time of eye opening and resulted in the silencing of the treated, but not contralateral, hemisphere for a period of 2 weeks. We found that visual acuity was permanently reduced in the blocked hemisphere, and the critical period for ocular dominance plasticity persisted into adulthood. Unexpectedly, these effects extended equally to the contralateral, uninjected side, demonstrating a fundamental role for interhemispheric connections in cortical maturation.
机译:大脑皮层中的神经回路受生命早期“关键时期”的经验影响。例如,视觉皮层在睁眼时不成熟,并在敏感时期逐渐发展其功能特性。很少有报道谈到内在神经活动在皮质成熟中的作用。在这里,我们已经利用细菌酶肉毒杆菌神经毒素E(BoNT / E)在敏感时期在大鼠视皮层中产生了单方面的可逆性神经活动阻滞。 BoNT / E是一种高度选择性的蛋白酶,可通过切割突触蛋白SNAP-25(25kDa的突触体相关蛋白)来干扰递质的释放。睁眼时进行了BoNT / E的单侧皮质内注射,导致治疗的但对侧半球沉默了2周。我们发现,视力在受阻的半球中永久性降低,并且眼部可塑性的关键时期一直持续到成年。出乎意料的是,这些作用均等地扩展到了对侧的,未注射的一侧,这证明了半球间连接在皮质成熟中的基本作用。

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