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用于模拟体外旁分泌细胞通讯的局部释放系统。

Systems for localized release to mimic paracrine cell communication in vitro.

机构信息

Leipzig University, Institute of Biochemistry, Johannisallee 21/23, 04103 Leipzig, Germany.

Leipzig University, Institute of Biochemistry, Johannisallee 21/23, 04103 Leipzig, Germany.

出版信息

J Control Release. 2018 May 28;278:24-36. doi: 10.1016/j.jconrel.2018.03.028. Epub 2018 Mar 27.

Abstract

Paracrine cell communication plays a pivotal role for signal exchange between proximal cells in vivo. However, this localized, gradient type release of mediators at very low concentrations (pg/ml), relevant during physiological and pathological processes, is rarely reflected within in vitro approaches. This review gives an overview on state-of-the-art approaches, which transfer the paracrine cell-to-cell communication into in vitro cell culture model setups. The traditional methods like trans-well assays and more advanced microfluidic approaches are included. The review focusses on systems for localized release, mostly based on microparticles, which tightly mimic the paracrine interaction between single cells in 3D microenvironments. Approaches based on single microparticles, with the main focus on affinity-controlled storage and release of cytokines, are reviewed and their importance for understanding paracrine communication is highlighted. Various methods to study the cytokine release and their advantages and disadvantages are discussed. Basic principles of the release characteristics, like diffusion mechanisms, are quantitatively described, including the formation of resulting gradients around the local sources. In vitro cell experiments using such localized microparticle release systems in approaches to increase understanding of stem cell behavior within their niches and regulation of wound healing are highlighted as examples of successful localized release systems for mimicking paracrine cell communication.

摘要

旁分泌细胞通讯在体内近端细胞之间的信号交换中起着关键作用。然而,这种局部的、梯度释放的介质浓度非常低(pg/ml),在生理和病理过程中具有重要意义,但在体外方法中很少得到反映。本文综述了将旁分泌细胞间通讯转化为体外细胞培养模型的最新方法。包括传统的方法,如 Trans-well 测定法,以及更先进的微流控方法。本文重点介绍了基于微粒的局部释放系统,这些系统主要基于微粒,能够非常好地模拟 3D 微环境中单细胞之间的旁分泌相互作用。本文综述了基于单微粒的方法,主要侧重于控制亲和力的细胞因子储存和释放,并强调了它们对于理解旁分泌通讯的重要性。讨论了研究细胞因子释放的各种方法及其优缺点。释放特性的基本原理,如扩散机制,被定量描述,包括局部源周围形成的梯度。本文还强调了使用这种局部微粒释放系统进行体外细胞实验的重要性,这些实验方法有助于增加对干细胞在其龛位中的行为以及伤口愈合调控的理解,这些实验方法是模拟旁分泌细胞通讯的成功局部释放系统的范例。

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