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Development of GelMA/PCL and dECM/PCL resins for 3D printing of acellular in vitro tissue scaffolds by stereolithography

机译:通过立体刻录的凝胶/ PCL和DECM / PCL树脂的3D印刷3D打印的树脂

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摘要

Gelatin methacryloyl (GelMA) is a chemically modified extracellular matrix (ECM)-derived biopolymer that is widely used for 3D fabrication of tissue engineering scaffolds. However, its tendency for physical gelation limits its use in aqueous 3D printing resins to low concentrations, yielding a poor printing resolution in stereo-lithography (SLA). To obtain a GelMA-based resin that can be printed into high-resolution tissue scaffolds, we formulated resins of fish and porcine-derived GelMAin formamide using GelMA alone or mixed with star-shaped poly(epsilon-caprolactone) methacrylate (PCL-MA). We identified GelMA resins and GelMA/PCL-MA hybrid resins with a ratio of 70/30 wt-% to yield a suitable viscosity for SLA at 32 degrees C and demonstrated the resolution of the new resins in SLA by 3D printing acellular human small intestine-mimicking tissue scaffolds. The presence of PCL-MA in the hybrid resins improved the 3D printing fidelity compared to the neat GelMA resins, while GelMA provided the hybrid materials with enhanced swelling and proliferation of seeded cells. We further demonstrated the transferability of our resin formulation to native organ-derived materials by successfully replacing GelMA in the hybrid resin with solubilized, methacryloyl-functionalized decellularized liver ECM (dECM-MA) and by 3D printing multi-layer dECM/PCL-MA hydrogels.
机译:明胶甲基丙烯酰基(GELMA)是一种化学改性的细胞外基质(ECM)的生物聚合物,其广泛用于组织工程支架的3D制造。然而,其物理凝胶化的趋势限制其在3D印刷树脂中的用途至低浓度,在立体光刻(SLA)中产生差的印刷分辨率。为了获得可以印刷到高分辨率组织支架中的凝胶基树脂,我们使用凝胶以单独使用Fish和猪衍生的Gelmain甲酰胺树脂或与星形聚(ε-己内酯)甲基丙烯酸酯(PCL-MA)混合。我们鉴定了凝胶树脂和GELMA / PCL-MA杂交树脂,其比例为70/30重量%,以在32℃下产生合适的SLA粘度,并通过3D印刷细胞人小肠在SLA中展示了新树脂的分辨率 - 制作组织支架。与纯凝胶的树脂相比,杂交树脂中PCL-MA的存在改善了3D印刷保真度,而凝胶材料提供了具有增强的溶胀和种子细胞的溶胀和增殖的杂化材料。我们进一步证明了通过在溶解的甲基丙烯酰基官能化脱细胞肝ECM(DECM-MA)中成功替代杂交树脂中的凝胶以和通过3D印刷多层DECM / PCL-MA水凝胶,通过成功替代杂种树脂中的凝胶以通过成功替代凝胶以将树脂制剂与天然器官衍生材料的可转移性转移。

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