首页> 外文会议>Conference on Optical Interactions with Tissue and Cells; 20080121-23; San Jose,CA(US) >Prosthetic systems for therapeutic optical activation and silencing of genetically-targeted neurons
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Prosthetic systems for therapeutic optical activation and silencing of genetically-targeted neurons

机译:用于光学靶向激活和沉默基因靶向神经元的修复系统

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Many neural disorders are associated with aberrant activity in specific cell types or neural projection pathways embedded within the densely-wired, heterogeneous matter of the brain. An ideal therapy would permit correction of activity just in specific target neurons, while leaving other neurons unaltered. Recently our lab revealed that the naturally-occurring light-activated proteins channelrhodopsin-2 (ChR2) and halorhodopsin (Halo/NpHR) can, when genetically expressed in neurons, enable them to be safely, precisely, and reversibly activated and silenced by pulses of blue and yellow light, respectively. We here describe the ability to make specific neurons in the brain light-sensitive, using a viral approach. We also reveal the design and construction of a scalable, fully-implantable optical prosthetic capable of delivering light of appropriate intensity and wavelength to targeted neurons at arbitrary 3-D locations within the brain, enabling activation and silencing of specific neuron types at multiple locations. Finally, we demonstrate control of neural activity in the cortex of the non-human primate, a key step in the translation of such technology for human clinical use. Systems for optical targeting of specific neural circuit elements may enable a new generation of high-precision therapies for brain disorders.
机译:许多神经疾病与特定细胞类型的异常活动或嵌入在大脑的密布,异质物质中的神经投射途径有关。理想的疗法将允许仅在特定目标神经元中校正活动,而保持其他神经元不变。最近,我们的实验室发现,天然存在的光激活蛋白Channelrhodopsin-2(ChR2)和halorhodopsin(Halo / NpHR)在神经元中进行基因表达时,可以安全,准确,可逆地被脉冲状的脉冲激活和沉默。蓝色和黄色的光分别。我们在这里描述了使用病毒方法使大脑中的特定神经元对光敏感的能力。我们还揭示了可扩展的,完全可植入的光学假体的设计和构造,该假体能够将适当强度和波长的光传递到大脑内任意3-D位置的目标神经元,从而能够在多个位置激活和沉默特定类型的神经元。最后,我们展示了非人类灵长类动物皮层中神经活动的控制,这是人类临床使用的此类技术翻译的关键步骤。用于特定神经回路元件的光学靶向的系统可以实现新一代用于脑部疾病的高精度疗法。

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