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Mind-controlled transgene expression by a wireless-powered optogenetic designer cell implant

机译:无线供电的光遗传设计细胞植入物可实现思维控制的转基因表达

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摘要

Synthetic devices for traceless remote control of gene expression may provide new treatment opportunities in future gene- and cell-based therapies. Here we report the design of a synthetic mind-controlled gene switch that enables human brain activities and mental states to wirelessly programme the transgene expression in human cells. An electroencephalography (EEG)-based brain–computer interface (BCI) processing mental state-specific brain waves programs an inductively linked wireless-powered optogenetic implant containing designer cells engineered for near-infrared (NIR) light-adjustable expression of the human glycoprotein SEAP (secreted alkaline phosphatase). The synthetic optogenetic signalling pathway interfacing the BCI with target gene expression consists of an engineered NIR light-activated bacterial diguanylate cyclase (DGCL) producing the orthogonal second messenger cyclic diguanosine monophosphate (c-di-GMP), which triggers the stimulator of interferon genes (STING)-dependent induction of synthetic interferon-β promoters. Humans generating different mental states (biofeedback control, concentration, meditation) can differentially control SEAP production of the designer cells in culture and of subcutaneous wireless-powered optogenetic implants in mice.
机译:用于基因表达的无痕远程控制的合成装置可能会在未来基于基因和细胞的疗法中提供新的治疗机会。在这里,我们报告了一种合成的,由心理控制的基因开关的设计,该开关使人的大脑活动和精神状态能够无线编程人细胞中的转基因表达。基于脑电图(EEG)的脑机接口(BCI)处理特定于心理状态的脑波,对感应链接的无线光遗传植入物进行编程,其中包含设计用于人糖蛋白SEAP的近红外(NIR)光可调节表达的设计细胞(分泌的碱性磷酸酶)。连接BCI与靶基因表达的合成光遗传信号通路由工程化的NIR光激活细菌双鸟苷酸环化酶(DGCL)产生,产生正交的第二信使环二鸟苷单磷酸(c-di-GMP),从而触发干扰素基因的刺激物( STING)依赖性诱导合成干扰素-β启动子。产生不同精神状态(生物反馈控制,专注力,冥想)的人类可以差异地控制培养物中的设计细胞和小鼠皮下无线光遗传学植入物的SEAP产生。

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