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MINIMALLY-INVASIVE AND ACTIVITY-DEPENDENT CONTROL OF EXCITABLE CELLS

机译:微小细胞侵袭性和活动依赖性控制

摘要

The present invention provides a method of bioluminescence-driven optogenetic control of excitable cells. The excitable cell expresses a light-gated ion channel, and a luminescent protein can be expressed either in the excitable cell or in another cell proximal to the excitable cell. The methods of the invention can be used to desynchronize local activity of excitable cells in a mammalian tissue. The methods of the invention can be used to treat a disease or condition in a mammal, the disease or condition being related to bursting. The disease or condition can be Parkinson's disease, epilepsy, a sleep disorder, or a sensory-related disease or condition (e.g., attention deficit disorder or pain). The invention also provides a conjugate of containing a voltage-gated ion channel and a luminescent protein.
机译:本发明提供了生物发光驱动的可激发细胞的光遗传学控制的方法。可激发细胞表达光门控离子通道,并且发光蛋白可在可激发细胞中或在可激发细胞附近的另一细胞中表达。本发明的方法可用于使哺乳动物组织中可激发细胞的局部活性去同步。本发明的方法可以用于治疗哺乳动物的疾病或病症,该疾病或病症与爆发有关。该疾病或病状可以是帕金森氏病,癫痫,睡眠障碍或与感觉有关的疾病或病状(例如,注意力缺陷症或疼痛)。本发明还提供了包含电压门控离子通道和发光蛋白的缀合物。

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