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Palm readings: Manicaria saccifera palm fibers are biocompatible textiles with low immunogenicity

机译:棕榈读数:蔓越莓(Manicaria saccifera)棕榈纤维是生物相容性纺织品,免疫原性低

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Plant-based fibers are a potential alternative to synthetic polymer fibers that can yield enhanced biocompatibility and mechanical properties matching those properties of tissue. Given the unique morphology of the bract of the Manicaria saccifera palm, being an interwoven meshwork of fibers, we believe that these fibers with this built-in structure could prove useful as a tissue engineering scaffold material. Thus, we first investigated the fiber's in vitro biocompatibility and immunogenicity. We cultured NIH/3T3 mouse fibroblasts, human aortic smooth muscle cells, and human adipose-derived mesenchymal stem cells on the fiber mats, which all readily attached and over 21 days grew to engulf the fibers. Importantly, this was achieved without treating the plant tissue with extracellular matrix proteins or any adhesion ligands. In addition, we measured the gene expression and protein secretion of three target inflammatory cytokines (IL-1 beta, IL-8, and TNF alpha) from THP-1 human leukemia monocytes cultured in the presence of the biotextile as an in vitro immunological model. After 24 h of culture, gene expression and protein secretion were largely the same as the control, demonstrating the low immunogenicity of Manicaria saccifera fibers. We also measured the tensile mechanical properties of the fibers. Individual fibers after processing had a Young's modulus of 9.51 +/- 4.38 GPa and a tensile strength of 68.62 +/- 27.93 MPa. We investigated the tensile mechanical properties of the fiber mats perpendicular to the fiber axis (transverse loading), which displayed upwards of 100% strain, but with a concession in strength compared to longitudinal loading. Collectively, our in vitro assessments point toward Manicaria saccifera as a highly biocompatible biotextile, with a range of potential clinical and engineering applications.
机译:植物纤维是合成聚合物纤维的潜在替代物,可以产生增强的生物相容性和与组织的那些性质相匹配的机械性质。考虑到Manicaria saccifera棕榈palm片的独特形态,它是纤维的交织网状结构,我们相信具有这种内置结构的这些纤维可用作组织工程支架材料。因此,我们首先研究了纤维的体外生物相容性和免疫原性。我们在纤维垫上培养了NIH / 3T3小鼠成纤维细胞,人主动脉平滑肌细胞和人脂肪来源的间充质干细胞,它们都很容易附着,并在21天以上长大以吞噬纤维。重要的是,这无需使用细胞外基质蛋白或任何粘附配体处理植物组织即可实现。此外,我们测量了在生物纺织品存在下培养的THP-1人白血病单核细胞中三种靶炎症细胞因子(IL-1 beta,IL-8和TNFα)的基因表达和蛋白质分泌,以此作为体外免疫模型。培养24小时后,基因表达和蛋白质分泌与对照基本相同,证明了蔓越莓纤维的免疫原性低。我们还测量了纤维的拉伸机械性能。加工后的单根纤维的杨氏模量为9.51 +/- 4.38 GPa,拉伸强度为68.62 +/- 27.93 MPa。我们研究了垂直于纤维轴(横向载荷)的纤维垫的拉伸机械性能,该拉伸性能显示出100%以上的应变,但与纵向载荷相比强度有所降低。总的来说,我们的体外评估将蔓越莓(Manicaria saccifera)视为具有高度生物相容性的生物纺织品,具有一系列潜在的临床和工程应用。

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