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Bioinspired Ultratough Hydrogel with Fast Recovery, Self-Healing, Injectability and Cytocompatibility

机译:具有快速恢复,自我修复,可注射性和细胞相容性的生物启发性超韧水凝胶

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摘要

Inspired by the mussel byssus adhesiveness, a highly hydrated polymeric structure is designed to combine, for the first time, a set of interesting features for load-bearing purposes. These characteristics include: i) a compressive strength and stiffness in the MPa range, ii) toughness and the ability to recover it upon successive cyclic loading, iii) the ability to quickly self-heal upon rupture, iv) the possibility of administration through minimally invasive techniques, such as by injection, v) the swelling ratio being adjusted to space-filling applications, and vi) cytocompatibility. Owing to these characteristics and the mild conditions employed, the encapsulation of very unstable and sensitive cargoes is possible, highlighting their potential to researchers in the biomedical field for the repair of load-bearing soft tissues, or to be used as an encapsulation platform for a variety of biological applications such as disease models for drug screening and therapies in a more realistic mechanical environment. Moreover, given the simplicity of this methodology and the enhanced mechanical performance, this strategy can be expanded to applications in other fields, such as agriculture and electronics. As such, it is anticipated that the proposed strategy will constitute a new, versatile, and cost-effective tool to produce engineered polymeric structures for both science and technology.
机译:受贻贝贻贝粘附性的启发,高度水合的聚合物结构被设计为首次将一组有趣的功能组合在一起以实现承重目的。这些特性包括:i)抗压强度和刚度在MPa范围内; ii)韧性和在连续循环载荷下恢复的能力; iii)破裂后能快速自愈的能力; iv)通过最小限度给药的可能性侵入性技术,例如通过注射,v)将溶胀率调整为适合空间填充的应用,以及vi)细胞相容性。由于这些特性和所采用的温和条件,可能封装非常不稳定和敏感的货物,这对生物医学领域的研究人员来说具有潜在的潜力,可以修复承重的软组织,或用作医疗器械的封装平台。多种生物学应用,例如在更现实的机械环境中进行药物筛选和治疗的疾病模型。而且,由于这种方法的简单性和增强的机械性能,该策略可以扩展到其他领域的应用,例如农业和电子领域。因此,预计拟议的策略将构成一种新型,通用且具有成本效益的工具,以生产用于科学和技术的工程聚合物结构。

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  • 来源
    《Advanced Materials》 |2017年第28期|1700759.1-1700759.6|共6页
  • 作者单位

    Univ Minho, Res Grp Biomat Biodegradables & Biomimet 3Bs, Headquarters European Inst Excellence Tissue Engn, Avepk,Parque Ciencia & Tecnol, P-4805017 Barco, Guimaraes, Portugal|Univ Minho, ICVS PT Govt Associate Lab 3Bs, Braga, Portugal|Univ Aveiro, CICECO, Dept Chem, Campus Univ Santiago, P-3810193 Aveiro, Portugal;

    Univ Minho, Res Grp Biomat Biodegradables & Biomimet 3Bs, Headquarters European Inst Excellence Tissue Engn, Avepk,Parque Ciencia & Tecnol, P-4805017 Barco, Guimaraes, Portugal|Univ Minho, ICVS PT Govt Associate Lab 3Bs, Braga, Portugal|Univ Aveiro, CICECO, Dept Chem, Campus Univ Santiago, P-3810193 Aveiro, Portugal;

    Univ Aarhus, INANO Interdisciplinary Nanosci Ctr, DK-8000 Aarhus C, Denmark;

    Korea Adv Inst Sci & Technol, Dept Chem, Ctr Cell Encapsulat Res, Daejeon 34141, South Korea;

    Univ Aarhus, INANO Interdisciplinary Nanosci Ctr, DK-8000 Aarhus C, Denmark;

    Univ Minho, Res Grp Biomat Biodegradables & Biomimet 3Bs, Headquarters European Inst Excellence Tissue Engn, Avepk,Parque Ciencia & Tecnol, P-4805017 Barco, Guimaraes, Portugal|Univ Minho, ICVS PT Govt Associate Lab 3Bs, Braga, Portugal|Univ Aveiro, CICECO, Dept Chem, Campus Univ Santiago, P-3810193 Aveiro, Portugal;

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

    catechol; chitosan; double networks; hydrogels; mussel-inspired materials;

    机译:儿茶酚;壳聚糖;双网络;水凝胶;贻贝启发性材料;

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