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In situ prevascularization designed by laser-assisted bioprinting: effect on bone regeneration

机译:通过激光辅助生物监测设计设计的原位血血管形成:对骨再生的影响

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摘要

Vascularization plays a crucial role in bone formation and regeneration process. Development of a functional vasculature to improve survival and integration of tissue-engineered bone substitutes remains a major challenge. Biofabrication technologies, such as bioprinting, have been introduced as promising alternatives to overcome issues related to lack of prevascularization and poor organization of vascular networks within the bone substitutes. In this context, this study aimed at organizing endothelial cells in situ, in a mouse calvaria bone defect, to generate a prevascularization with a defined architecture, and promote in vivo bone regeneration. Laser-assisted bioprinting (LAB) was used to pattern Red Fluorescent Protein-labeled endothelial cells into a mouse calvaria bone defect of critical size, filled with collagen containing mesenchymal stem cells and vascular endothelial growth factor. LAB technology allowed safe and controlled in vivo printing of different cell patterns. In situ printing of endothelial cells gave rise to organized microvascular networks into bone defects. At two months, vascularization rate (vr) and bone regeneration rate (br) showed statistically significant differences between the 'random seeding' condition and both 'disc' pattern (vr = +203.6%; br = +294.1%) and 'crossed circle' pattern (vr = +355%; br = +602.1%). These results indicate that in vivo LAB is a valuable tool to introduce in situ prevascularization with a defined configuration and promote bone regeneration.
机译:血管化在骨形成和再生过程中起着至关重要的作用。开发功能性脉管系统,以改善组织工程骨替代品的存活率和整合仍然是一个重大挑战。已经引入了生物制造技术,如生物制版,作为有前途的替代方案,以克服与骨替代品内缺乏血管内容缺乏和血管网络贫困组织有关的问题。在这种情况下,本研究旨在组织原位的内皮细胞,在小鼠Calvaria骨缺损中,以产生具有规定的架构的血血管形成,并促进体内骨再生。激光辅助生物印刷(实验室)用于将红荧光蛋白标记的内皮细胞进行塑造成临界大小的小鼠Calvaria骨缺损,填充含有间充质干细胞和血管内皮生长因子的胶原蛋白。实验室技术允许安全和控制不同细胞模式的体内印刷。原位印刷内皮细胞产生了组织的微血管网络进入骨缺陷。在两个月后,血管化率(VR)和骨再生率(BR)在“随机播种”条件和“圆盘”模式(VR = + 203.6%之间有统计学显着差异(VR = + 203.6%; BR = + 294.1%)和'交叉圈'图案(VR = + 355%; BR = + 602.1%)。这些结果表明,在体内实验室中是一种有价值的工具,可以用定义的配置引入原位血管紧化,促进骨再生。

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