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Near-Infrared Optogenetic Genome Engineering Based on Photon-Upconversion Hydrogels

机译:基于光子上增强水凝胶的近红外致灭基因组工程

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摘要

Photon upconversion (UC) from near-infrared (NIR) light to visible light has enabled optogenetic manipulations in deep tissues. However, materials for NIR optogenetics have been limited to inorganic UC nanoparticles. Herein, NIR-light-triggered optogenetics using biocompatible, organic TTA-UC hydrogels is reported. To achieve triplet sensitization even in highly viscous hydrogel matrices, a NIR-absorbing complex is covalently linked with energy-pooling acceptor chromophores, which significantly elongates the donor triplet lifetime. The donor and acceptor are solubilized in hydrogels formed from biocompatible Pluronic F127 micelles, and heat treatment endows the excited triplets in the hydrogel with remarkable oxygen tolerance. Combined with photoactivatable Cre recombinase technology, NIR-light stimulation successfully performs genome engineering resulting in the formation of dendritic-spine-like structures of hippocampal neurons.
机译:从近红外(NIR)光到可见光的光子上转换(UC)在深层组织中能够使致致致致致致致致疣的操纵能够。 然而,用于NIR OPTOROCESICS的材料仅限于无机UC纳米颗粒。 这里,报道了使用生物相容性,有机TTA-UC水凝胶的NIR-光触发的邻晶。 为了在高粘度的水凝胶基质中实现三重态敏化,NIR吸收络合物与能量合并受体发色团共价连接,这显着地伸长了供体三联寿命。 供体和受体在由生物相容性Pluronic F127胶束形成的水凝胶中溶解,热处理在水凝胶中具有显着的氧气耐受的激发三体。 结合光活性CRE重组酶技术,NIR光刺激成功进行了基因组工程,导致形成海马神经元的树突状脊柱状结构。

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