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A thermoreversible photocrosslinkable collagen bio-ink for free-form fabrication of scaffolds for regenerative medicine

机译:一种热可逆可光交联的胶原蛋白生物墨水用于自由形式制造再生医学支架

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摘要

As a biomaterial, collagen has been used throughout tissue engineering and regenerative medicine. Collagen is native to the body, is highly biocompatible, and naturally promotes cell adhesion and regeneration. However, collagen fibers and the inherent weak mechanical properties of collagen hydrogels interfere with further development of collagen as a bio-ink. Herein, we demonstrate the use of a modified type-I collagen, collagen methacrylamide (CMA), as a fibril-forming bio-ink for free-form fabrication of scaffolds. Like collagen, CMA can self-assemble into a fibrillar hydrogel at physiological conditions. In contrast, CMA is photocrosslinkable and thermoreversible, and photocrosslinking eliminates thermoreversibility. Free-form fabrication of CMA was performed through self-assembly of the CMA hydrogel, photocrosslinking the structure of interest using a photomask, and cooling the entire hydrogel, which results in cold-melting of unphotocrosslinked regions. Printed hydrogels had a resolution on the order of ~350 μm, and can be fabricated with or without cells and maintain viability or be further processed into freeze-dried sponges, all while retaining pattern fidelity. A subcutaneous implant study confirmed the biocompatibility of CMA in comparison to collagen. Free-form fabrication of CMA allows for printing of macroscale, customized scaffolds with good pattern fidelity and can be implemented with relative ease for continued research and development of collagen-based scaffolds in tissue engineering.
机译:作为生物材料,胶原蛋白已被用于整个组织工程和再生医学。胶原蛋白是人体固有的,具有高度生物相容性,并自然促进细胞粘附和再生。然而,胶原纤维和胶原水凝胶固有的弱机械性能干扰了胶原作为生物墨水的进一步发展。在本文中,我们证明了使用修饰的I型胶原蛋白,甲基丙烯酸胶原蛋白(CMA)作为形成支架的自由形式的原纤维形成生物墨水。像胶原蛋白一样,CMA可以在生理条件下自组装成纤维状水凝胶。相反,CMA是可光交联和热可逆的,而光交联可消除热可逆性。通过自组装CMA水凝胶,使用光掩模对目标结构进行光交联并冷却整个水凝胶来进行CMA的自由形式制造,从而导致未光交联区域的冷熔。印刷的水凝胶的分辨率约为〜350μm,并且可以在有或没有细胞的情况下进行制造,并保持活力,或者可以进一步加工成冷冻干燥的海绵,同时保持图案的逼真度。皮下植入物研究证实了CMA与胶原蛋白相比具有生物相容性。 CMA的自由形式制造允许印刷具有良好图案保真度的大型定制支架,并且可以相对容易地实施,以用于组织工程中基于胶原的支架的持续研究和开发。

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