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利用动态 DNA 置换实现细胞相互作用的级联控制。

Sequential Control of Cellular Interactions Using Dynamic DNA Displacement.

机构信息

Translational Research Institute of Brain and Brain-Like Intelligence, Shanghai Fourth People's Hospital, Tongji University School of Medicine, Shanghai 200092, China.

Institute of Molecular Medicine, Renji Hospital, School of Medicine, Shanghai Jiao Tong University, Shanghai 200127, China.

出版信息

Nano Lett. 2023 Feb 22;23(4):1167-1174. doi: 10.1021/acs.nanolett.2c03899. Epub 2023 Feb 7.

Abstract

Intercellular interactions play a significant role in various complex biological processes, and their dysregulation promotes disease progression. To reveal the mechanisms of intercellular interactions without destroying basic life processes, it is necessary to mimic multicellular behaviors . However, the precise control of multicellular systems remains technically challenging owing to dynamic interactions. Here, we used DNA as a molecular lock and key to sequentially assemble and disassemble different cell clusters in a programmed way, regulating intercellular interactions. Tagging the surface of live cells with cholesterol-modified DNA enabled dynamical intercellular assemblies. By consecutively adding corresponding metaphorical locks (attaching DNA strands) and keys (detaching DNA strands), clusters of different cells could be sequentially formed. This strategy improved the capability of natural killer NK-92 cells to target tumor cells, improving the antitumor therapy efficacy. Our suggested approach allows dynamic regulation of intercellular interactions in complex cell systems and increases understanding of intercellular communication networks.

摘要

细胞间相互作用在各种复杂的生物学过程中起着重要作用,其失调会促进疾病的发展。为了在不破坏基本生命过程的情况下揭示细胞间相互作用的机制,有必要模拟多细胞行为。然而,由于动态相互作用,精确控制多细胞系统在技术上仍然具有挑战性。在这里,我们使用 DNA 作为分子锁和钥匙,以程序化的方式顺序组装和拆卸不同的细胞簇,从而调节细胞间的相互作用。用胆固醇修饰的 DNA 标记活细胞表面,使细胞间的动态组装成为可能。通过连续添加相应的隐喻锁(附着 DNA 链)和钥匙(分离 DNA 链),可以依次形成不同细胞的簇。这种策略提高了自然杀伤细胞 NK-92 靶向肿瘤细胞的能力,提高了抗肿瘤治疗的疗效。我们提出的方法允许在复杂的细胞系统中动态调节细胞间的相互作用,并增加对细胞间通讯网络的理解。

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