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Mechanically robust cryogels with injectability and bioprinting supportability for adipose tissue engineering

机译:机械稳健的冷冻凝块,具有可注射性和生物监测性的脂肪组织工程的可支持性

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Bioengineered adipose tissues have gained increased interest as a promising alternative to autologous tissue flaps and synthetic adipose fillers for soft tissue augmentation and defect reconstruction in clinic. Although many scaffolding materials and biofabrication methods have been investigated for adipose tissue engineering in the last decades, there are still challenges to recapitulate the appropriate adipose tissue microenvironment, maintain volume stability, and induce vascularization to achieve long-term function and integration. In the present research, we fabricated cryogels consisting of methacrylated gelatin, methacrylated hyaluronic acid, and 4arm poly(ethylene glycol) acrylate (PEG-4A) by using cryopolymerization. The cryogels were repeatedly injectable and stretchable, and the addition of PEG-4A improved the robustness and mechanical properties. The cryogels supported human adipose progenitor cell (HWA) and adipose derived mesenchymal stromal cell adhesion, proliferation, and adipogenic differentiation and maturation, regardless of the addition of PEG-4A. The HWA laden cryogels facilitated the co-culture of human umbilical vein endothelial cells (HUVEC) and capillary-like network formation, which in return also promoted adipogenesis. We further combined cryogels with 3D bioprinting to generate handleable adipose constructs with clinically relevant size. 3D bioprinting enabled the deposition of multiple bioinks onto the cryogels. The bioprinted flap-like constructs had an integrated structure without delamination and supported vascularization.
机译:生物工程化脂肪组织对自体组织襟翼和合成脂肪填料的有前途的替代品增加了兴趣,用于诊所的软组织增强和缺陷重建。虽然在过去几年中已经研究了许多脚手架材料和生物制作方法,但仍存在仍然挑战适当的脂肪组织微环境,保持体积稳定性,并诱导血管化以实现长期功能和整合的挑战。在本研究中,我们通过使用冷冻聚合制备由甲基丙烯酸酯化明胶,甲基丙烯酸透明石酸和4次聚(乙二醇)丙烯酸酯(PEG-4A)组成的冷冻蛋白。多次冷冻胶质重复可注射且可伸展,并且添加PEG-4a改善了鲁棒性和机械性能。无论加入PEG-4A,冷冻胶质都支持人类脂肪祖细胞(HWA)和脂肪衍生的间充质基质细胞粘附,增殖和脂肪分化和成熟。 HWA Laden Cryogels促进了人脐静脉内皮细胞(HUVEC)和毛细管样网络形成的共同培养,其返回也促进了脂肪发生。我们将CryoGels与3D BioPlint一起组合,以产生具有临床相关尺寸的可用脂肪结构。 3D BioPlinting使多个生物链沉积在冷冻机上。生物印刷的襟翼状构建体具有没有分层和支持血管化的综合结构。

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