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合成人工凋亡诱导受体,用于按需失活工程细胞。

Synthetic Artificial Apoptosis-Inducing Receptor for On-Demand Deactivation of Engineered Cells.

机构信息

Department of Chemistry and iNano Interdisciplinary Nanoscience Centre Aarhus University Aarhus 8000 Denmark.

出版信息

Adv Sci (Weinh). 2021 May 1;8(13):2004432. doi: 10.1002/advs.202004432. eCollection 2021 Jul.

Abstract

The design of a fully synthetic, chemical "apoptosis-inducing receptor" (AIR) molecule is reported that is anchored into the lipid bilayer of cells, is activated by the incoming biological input, and responds with the release of a secondary messenger-a highly potent toxin for cell killing. The AIR molecule has four elements, namely, an exofacial trigger group, a bilayer anchor, a toxin as a secondary messenger, and a self-immolative scaffold as a mechanism for signal transduction. Receptor installation into cells is established via a robust protocol with minimal cell handling. The synthetic receptor remains dormant in the engineered cells, but is effectively triggered externally by the addition of an activating biomolecule (enzyme) or in a mixed cell population through interaction with the surrounding cells. In 3D cell culture (spheroids), receptor activation is accessible for at least 5 days, which compares favorably with other state of the art receptor designs.

摘要

本文报道了一种完全合成的化学“凋亡诱导受体”(AIR)分子的设计,该分子锚定在细胞的脂双层中,通过输入的生物信号激活,并响应释放二级信使——一种用于细胞杀伤的高效毒素。AIR 分子有四个部分,即外切触发基团、双层锚、作为二级信使的毒素和作为信号转导机制的自毁支架。通过一个具有最小细胞处理的强大方案来建立受体在细胞中的安装。该合成受体在工程细胞中处于休眠状态,但通过添加激活生物分子(酶)或通过与周围细胞相互作用在混合细胞群体中外在有效地被触发。在 3D 细胞培养(球体)中,受体激活至少可持续 5 天,这与其他最先进的受体设计相比具有优势。

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