稳态人工细胞在原组织球体中实现自我保护

IF 19.6 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chem Pub Date : 2025-06-12 Epub Date: 2025-02-07 DOI:10.1016/j.chempr.2024.102409
Joshua Krehan , Chuen-Ru Li , Marcos Masukawa , Esther Amstad , Andreas Walther
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引用次数: 0

摘要

由人造细胞(ACs)制成的原组织旨在复制活组织的行为,如交流、集体行为和体内平衡。尽管在开发各种交流类型方面取得了进展,但在这些原组织中构建原组织并实现有效的交流和集体行为仍然具有挑战性。我们介绍了具有内在稳态pH控制机制的ACs,该机制可以组织成原始组织,以共同维持稳定的微环境,并保护货物免受环境pH波动的影响。这些ac在ph敏感膜内含有ph调节酶,允许通过化学结构反馈进行自我调节。它们通过输入特定pH范围内的底物来调节pH值,并自我调节以控制底物的流入。这使他们能够调节当地的pH值,管理货物释放,并促进有组织的球体的互动交流。我们的研究结果表明,稳态ac有潜力创造先进的合成组织模拟物,复制活体组织的保护和交流功能,用于生物医学和组织工程应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Homeostatic artificial cells enable self-protection in prototissue spheroids
Prototissues made from artificial cells (ACs) aim to replicate the behaviors of living tissues, such as communication, collective behavior, and homeostasis. Despite progress in developing diverse AC types, building prototissues and achieving effective communication as well as collective behavior in such prototissues remain challenging. We introduce ACs with an intrinsic homeostatic pH control mechanism that can be organized into prototissues to collectively maintain a stable microenvironment and protect cargo from environmental pH fluctuations. These ACs contain pH-modulating enzymes within a pH-sensitive membrane, allowing for self-regulation through chemo-structural feedback. They adjust pH by importing substrates within a specific pH range and self-regulate to control substrate influx. This enables them to modulate local pH, manage cargo release, and facilitate interactive communication in organized spheroids. Our findings demonstrate the potential of homeostatic ACs to create advanced synthetic tissue mimics, replicating protective and communicative functions of living tissues for biomedical and tissue engineering applications.
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来源期刊
Chem
Chem Environmental Science-Environmental Chemistry
CiteScore
32.40
自引率
1.30%
发文量
281
期刊介绍: Chem, affiliated with Cell as its sister journal, serves as a platform for groundbreaking research and illustrates how fundamental inquiries in chemistry and its related fields can contribute to addressing future global challenges. It was established in 2016, and is currently edited by Robert Eagling.
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