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利用红光控制的 OptoAAV 技术实现对原代细胞的空间限定性基因传递。

Spatially Defined Gene Delivery into Native Cells with the Red Light-Controlled OptoAAV Technology.

机构信息

Faculty of Biology, University of Freiburg, Freiburg, Germany.

Signalling Research Centres BIOSS and CIBSS, University of Freiburg, Freiburg, Germany.

出版信息

Curr Protoc. 2022 Jun;2(6):e440. doi: 10.1002/cpz1.440.

Abstract

The OptoAAV technology allows spatially defined delivery of transgenes into native target cells down to single-cell resolution by the illumination with cell-compatible and tissue-penetrating red light. The system is based on an adeno-associated viral (AAV) vector of serotype 2 with an engineered capsid (OptoAAV) and a photoreceptor-containing adapter protein mediating the interaction of the OptoAAV with the surface of the target cell in response to low doses of red and far-red light. In this article, we first provide detailed protocols for the production, purification, and analysis of the OptoAAV and the adapter protein. Afterward, we describe in detail the application of the OptoAAV system for the light-controlled transduction of human cells with global and patterned illumination. © 2022 The Authors. Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: Production, purification, and analysis of PhyB-DARPin adapter protein Basic Protocol 2: Production, purification, and analysis of OptoAAV Basic Protocol 3: Red light-controlled viral transduction with the OptoAAV system Support Protocol: Spatially resolved transduction of two transgenes with the OptoAAV system.

摘要

OptoAAV 技术允许通过细胞兼容和组织穿透性的红光照射,以单细胞分辨率将转基因物递送到天然靶细胞中,实现空间定义的传递。该系统基于工程化衣壳(OptoAAV)的 2 型腺相关病毒(AAV)载体和含有光受体的衔接蛋白,该蛋白介导 OptoAAV 与靶细胞表面的相互作用,以响应低剂量的红光和远红光。在本文中,我们首先提供详细的生产、纯化和分析 OptoAAV 和衔接蛋白的方案。然后,我们详细描述了 OptoAAV 系统在全局和图案化光照下控制人类细胞转导的应用。© 2022 作者。Wiley Periodicals LLC 出版的《当代协议》。基本方案 1:PhyB-DARPin 衔接蛋白的生产、纯化和分析基本方案 2:OptoAAV 的生产、纯化和分析基本方案 3:使用 OptoAAV 系统进行红光控制的病毒转导支持方案:使用 OptoAAV 系统进行两个转基因物的空间分辨转导。

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