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Creating tissues from textiles: scalable nonwoven manufacturing techniques for fabrication of tissue engineering scaffolds

机译:用纺织品制造薄纸:可扩展的无纺布制造技术,用于制造薄纸工程支架

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Electrospun nonwovens have been used extensively for tissue engineering applications due to their inherent similarities with respect to fibre size and morphology to that of native extracellular matrix (ECM). However, fabrication of large scaffold constructs is time consuming, may require harsh organic solvents, and often results in mechanical properties inferior to the tissue being treated. In order to translate nonwoven based tissue engineering scaffold strategies to clinical use, a high throughput, repeatable, scalable, and economic manufacturing process is needed. We suggest that nonwoven industry standard high throughput manufacturing techniques (meltblowing, spunbond, and carding) can meet this need. In this study, meltblown, spunbond and carded poly(lactic acid) (PLA) nonwovens were evaluated as tissue engineering scaffolds using human adipose derived stem cells (hASC) and compared to electrospun nonwovens. Scaffolds were seeded with hASC and viability, proliferation, and differentiation were evaluated over the course of 3 weeks. We found that nonwovens manufactured via these industry standard, commercially relevant manufacturing techniques were capable of supporting hASC attachment, proliferation, and both adipogenic and osteogenic differentiation of hASC, making them promising candidates for commercialization and translation of nonwoven scaffold based tissue engineering strategies.
机译:电纺非织造布由于其在纤维尺寸和形态上与天然细胞外基质(ECM)的内在相似性而被广泛用于组织工程应用。然而,大型支架构建体的制造是耗时的,可能需要苛刻的有机溶剂,并且通常导致机械性能不如被治疗的组织。为了将基于非织造材料的组织工程支架策略转化为临床使用,需要高通量,可重复,可扩展且经济的制造过程。我们建议非织造布行业标准的高通量制造技术(熔喷,纺粘和梳理)可以满足此需求。在这项研究中,使用人类脂肪衍生干细胞(hASC)将熔喷,纺粘和梳理聚乳酸(PLA)无纺布评估为组织工程支架,并将其与电纺无纺布进行比较。用hASC接种支架,并在3周的过程中评估其活力,增殖和分化。我们发现,通过这些行业标准,与商业相关的制造技术制造的非织造布能够支持hASC的附着,增殖以及hASC的成脂和成骨分化,这使其成为基于非织造支架的组织工程策略的商业化和翻译的有希望的候选者。

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