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首页> 外文期刊>Current Pharmaceutical Biotechnology >Regulatory Influence of Scaffolds on Cell Behavior: How Cells Decode Biomaterials
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Regulatory Influence of Scaffolds on Cell Behavior: How Cells Decode Biomaterials

机译:支架对细胞行为的调控影响:细胞如何解码生物材料

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摘要

A stem cell is defined as a cell able to self-renew and at the same time to generate one or more specialized progenies. In the adult organism, stem cells need a specific microenvironment where to reside. This tissue-specific in-structive microenvironment, hosting stem cells and governing their fate, is composed of extracellular matrix and soluble molecules. Cell-matrix and cell-cell interactions also contribute to the specifications of this milieu, regarded as a whole unitary system and referred to as "niche". For many stem cell systems a niche has been identified, but only partially de-fined. In regenerative medicine and tissue engineering, biomaterials are used to deliver stem cells in specific anatomical sites where a regenerative process is needed. In this context, biomaterials have to provide informative microenvironments mimicking a physiological niche. Stem cells may read and decode any biomaterial and modify their behavior and fate ac-cordingly. Any material is therefore informative in the sense that its intrinsic nature and structure will anyway transmit a signal that will have to be decoded by colonizing cells. We still know very little of how to create local microenvironments, or artificial niches, that will govern stem cells behavior and their terminal fate. Here we will review some characteristics identifying specific niches and some of the requirements allowing stem cells differentiation processes. We will discuss on those biomaterials that are being projected/engineered/manufactured to gain the informative status necessary to drive proper molecular cross-talk and cell differentiation; specific examples will be proposed for bone and cartilage substitutes.
机译:干细胞被定义为能够自我更新并同时产生一个或多个特定后代的细胞。在成年生物中,干细胞需要一个特定的微环境来居住。这种具有组织特异性的,具有建设性的微环境,由干细胞和可溶性分子组成,可容纳干细胞并控制其命运。细胞基质和细胞间的相互作用也有助于该环境的规范,它被视为一个整体系统,被称为“利基”。对于许多干细胞系统,已经确定了适当位置,但是仅部分定义了该位置。在再生医学和组织工程中,生物材料用于在需要再生过程的特定解剖部位递送干细胞。在这种情况下,生物材料必须提供模仿生理生态位的信息丰富的微环境。干细胞可以读取和解码任何生物材料,并相应地改变其行为和命运。因此,从某种意义上讲,任何材料都是有益的,因为其固有的性质和结构将始终传输必须由定殖细胞解码的信号。我们仍然很少知道如何创建局部的微环境或人造壁,来控制干细胞的行为及其最终命运。在这里,我们将回顾识别特定壁ni的一些特征以及允许干细胞分化过程的一些要求。我们将讨论那些正在计划/工程/制造的生物材料,以获取驱动适当的分子串扰和细胞分化所必需的信息状态。将提出骨和软骨替代物的具体例子。

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  • 来源
    《Current Pharmaceutical Biotechnology 》 |2011年第2期| p.151-159| 共9页
  • 作者单位

    MultiMedica IRCCS, Via Fantoli 16/15, 20138 Milano, Italy;

    Centro Biotecnologie Avanzate (CBA), Largo Rosanna Benzi 10, 16132 Genova, Italy,Dipartimento di Informatica, Sistemistica, Telematica (D1ST), Universita degli Studi di Genova, Viale Causa 13, 16145, Genova, Italy;

    Centro Biotecnologie Avanzate (CBA), Largo Rosanna Benzi 10, 16132 Genova, Italy;

    Dipartimento di Medicina Sperimentale (DIMES), Universita degli Studi di Genova, Largo Rosanna Benzi 10, 16132, Genova, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stem cells; stem cell niche; bio-scaffold; bone; cartilage;

    机译:干细胞;干细胞生态位生物支架骨;软骨;

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