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Cellular and Molecular Interaction of Human Dermal Fibroblasts with Bacterial Nanocellulose Composite Hydrogel for Tissue Regeneration

机译:用细菌纳米纤维素复合水凝胶进行组织再生的人皮肤成纤维细胞的细胞和分子相互作用

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摘要

The evaluation of the interaction of cells with biomaterials is fundamental to establish the suitability of the biomaterial for a specific application. In this study, the properties of bacterial nanocellulose/acrylic acid (BNC/AA) hydrogels fabricated with varying BNC to AA ratios and electron-beam irradiation doses were determined. The manner these hydrogel properties influence the behavior of human dermal fibroblasts (HDFs) at the cellular and molecular levels was also investigated, relating it to its application both as a cell carrier and wound dressing material. Swelling, hardness, adhesive force (wet), porosity, and hydrophilicity (dry) of the hydrogels were dependent on the degree of cross-linking and the amount of AA incorporated in the hydrogels. However, water vapor transmission rate, pore size, hydrophilicity (semidry), and topography were similar between all formulations, leading to a similar cell attachment and proliferation profile. At the cellular level, the hydrogel demonstrated rapid cell adhesion, maintained HDFs viability and morphology, restricted cellular migration, and facilitated fast transfer of cells. At the molecular level, the hydrogel affected nine wound-healing genes (IL6, IL10, MMP2, CTSK, FGF7, GM-CSF, TGFB1, COX2, and F3). The findings indicate that the BNC/AA hydrogel is a potential biomaterial that can be employed as a wound-dressing material to incorporate HDFs for the acceleration of wound healing.
机译:对具有生物材料的细胞相互作用的评价是建立对特定应用的适用性的基础。在该研究中,测定了用不同的BNC与AA比和电子束照射剂量制造的细菌纳米纤维素/丙烯酸/丙烯酸(BNC / AA)水凝胶的性质。还研究了这些水凝胶特性对细胞和分子水平在细胞和分子水平下的行为影响的方式,将其与其应用兼作细胞载体和伤口敷料材料。水凝胶的肿胀,硬度,粘合力(湿法),孔隙率和亲水性(干燥)依赖于在水凝胶中掺入的交联度和AA的量。然而,所有制剂之间的水蒸气透射率,孔径,亲水性(半)和地形相似,导致类似的细胞附着和增殖谱。在细胞水平,水凝胶证明了快速的细胞粘附,维持了HDFS活力和形态,限制细胞迁移,并促进了细胞的快速转移。在分子水平,水凝胶影响九个伤口愈合基因(IL6,IL10,MMP2,CTSK,FGF7,GM-CSF,TGFB1,COX2和F3)。结果表明,BNC / AA水凝胶是潜在的生物材料,其可用作伤口敷料材料,以掺入HDFS以加速伤口愈合。

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  • 来源
    《ACS applied materials & interfaces》 |2018年第46期|共12页
  • 作者单位

    Univ Kebangsaan Malaysia Fac Pharm Ctr Drug Delivery Res Jalan Raja Muda Abdul Aziz Kuala Lumpur 50300 Malaysia;

    Univ Kebangsaan Malaysia Med Ctr Tissue Engn Ctr Jalan Yaacob Latif Kuala Lumpur 56000 Malaysia;

    Univ Kebangsaan Malaysia Med Ctr Tissue Engn Ctr Jalan Yaacob Latif Kuala Lumpur 56000 Malaysia;

    Univ Kebangsaan Malaysia Fac Pharm Drug &

    Herbal Res Ctr Jalan Raja Muda Abdul Aziz Kuala Lumpur 50300 Malaysia;

    Univ Kebangsaan Malaysia Fac Pharm Ctr Drug Delivery Res Jalan Raja Muda Abdul Aziz Kuala Lumpur 50300 Malaysia;

    Univ Putra Malaysia Fac Biotechnol &

    Biomol Sci Dept Bioproc Technol Upm Serdang 43400 Selangor Malaysia;

    Univ Kebangsaan Malaysia Fac Pharm Ctr Drug Delivery Res Jalan Raja Muda Abdul Aziz Kuala Lumpur 50300 Malaysia;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    cell carrier; scaffold; wound dressing; skin wound healing; cell-material interaction;

    机译:细胞载体;脚手架;伤口敷料;皮肤伤口愈合;细胞材料相互作用;

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