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Biofunctionalized and self-supported polypyrrole frameworks as nanostructured ECM-like biointerfaces

机译:生物功能化和自支撑的聚吡咯框架作为纳米结构ECM样生物界面

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摘要

Hybrid nanobiointerfaces were designed as an original contribution to the challenge of synthesizing nanostructured biomaterials integrating a set of cell fate-determining cues, originally provided to cells by the extracellular matrix (ECM). The produced biointerfaces consist of a stiff framework of intersected polypyrrole (PPy) nanotubes supporting a soft multilayer composed of ECM-derived biomacromolecules: collagen (Col) and hyaluronic acid (HA). PPy frameworks with highly tunable characteristics were synthesized through chemical oxidative polymerization of pyrrole monomers, templated within track-etched polycarbonate (PC) membranes featuring a network of intersected nanopores. PPy interfaces with a porosity of 80%, composed of nanotubes with an average diameter ranging from 40 to 300 nm, intersecting at an angle of 90 degrees, were shown to be self-supported. These rigid PPy nanostructured interfaces were functionalized with a self-assembling (HA/Col) multilayer deposited via a layer-by-layer process. Biofunctionalized and unmodified PPy frameworks were both shown to promote sustained cell adhesion, therefore demonstrating the cytocompatibility of the engineered matrices. Such nanobiointerfaces, combining a mechanically-stable framework of tunable dimensions with a soft biopolymeric multilayer of highly versatile nature, pave the way towards cell-instructive biomaterials able to gather a wide range of cues guiding cell behavior. The developed self-supported structures could be used as a coating or as membranes bridging different tissues.
机译:将杂交纳米偶联物设计为对合成纳米结构生物材料的挑战的原始贡献,所述纳米结构的生物材料集成一组细胞命运测定提示,最初通过细胞外基质(ECM)提供给细胞。所生产的生物融合包括支撑由ECM衍生的生物摩洛族(Col)和透明质酸(HA)组成的软多层组成的软多层的相交聚吡咯(PPY)纳米管的硬框架组成。通过吡咯单体的化学氧化聚合来合成具有高度可调谐特性的PPY框架,采用轨道蚀刻的聚碳酸酯(PC)膜,其具有相交纳米孔网络的膜。具有80%孔隙率的PPY接口,由平均直径范围为40至300nm的纳米管组成,以90度的角度交叉,被示出为自支撑。这些刚性PPY纳米结构接口用通过层逐层沉积的自组装(HA / COL)多层的多层粘合。均显示生物官能化和未改性的PPY框架以促进持续的细胞粘附,因此证明了工程化基质的细胞织组织。这种纳米偶联件,将可调谐尺寸的机械稳定框架与高度通用性质的软生物聚合物多层组合,朝着能够收集各种提示的细胞 - 指导生物材料的方式铺平道指导细胞行为。开发的自支撑结构可用作涂层或桥接不同组织的膜。

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  • 来源
    《RSC Advances》 |2018年第41期|共12页
  • 作者单位

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

    Inst Condensed Matter &

    Nanosci Bio &

    Soft Matter Croix Sud 1 B-1348 Louvain Belgium;

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

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