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Bio-ink development for three-dimensional bioprinting of hetero-cellular cartilage constructs

机译:杂细胞软骨构建体三维生物印刷的生物墨水开发

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摘要

Bioprinting is a promising tool to fabricate organized cartilage. This study aimed to investigate the printability of gelatin-methacryloyl/gellan gum (gelMA/gellan) hydrogels with and without methacrylated hyaluronic acid (HAMA), and to explore (zone-specific) chondrogenesis of chondrocytes, articular cartilage progenitor cells (ACPCs), and multipotent mesenchymal stromal cells (MSCs) embedded in these bio-inks. The incorporating of HAMA in gelMA/gellan bio-ink increased filament stability, as measured using a filament collapse assay, but did not influence (zone-specific) chondrogenesis of any of the cell types. Highest chondrogenic potential was observed for MSCs, followed by ACPCs, which displayed relatively high proteoglycan IV mRNA levels. Therefore, two-zone constructs were printed with gelMA/gellan/HAMA containing ACPCs in the superficial region and MSCs in the middle/deep region. Chondrogenic differentiation was confirmed, however, printing influence cellular differentiation. ACPC- and MSC-laden gelMA/gellan/HAMA hydrogels are of interest for the fabrication of cartilage constructs. Nevertheless, this study underscores the need for careful evaluation of the effects of printing on cellular differentiation.
机译:Bioplinting是制造有组织软骨的有希望的工具。本研究旨在探讨明胶 - 甲基丙烯酰基/甘油胶(GELMA / GELLAN)水凝胶与甲基丙烯酸透明质酸(HAMA)的可印刷性,并探讨软骨细胞的软骨细胞软骨细胞(ACPC),和嵌入在这些生物油墨中的多能的间充质基质细胞(MSCs)。使用丝塌陷测定的测量,但使用丝坍塌测定的测量,但使用丝塌陷测定的测量,但不影响任何细胞类型的细胞生成的牙龈/ Gellan生物墨水中的血丝稳定性增加。观察到MSCs的最高软骨潜力,其次是ACPC,其显示出相对高的蛋白质增生素IV mRNA水平。因此,在浅层区域和中/深区域的MSC中,用含有GELMA / GELLAN / HAMA印刷的双区构建体印刷。然而,确认了脑膜化分化,但印刷影响细胞分化。 ACPC-和MSC-Laden Gelma / Gellan / Hama水凝胶对于制造软骨构建体非常感兴趣。然而,这项研究强调了需要仔细评估印刷对细胞分化的影响的需求。

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