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Integration of microbubbles with biomaterials in tissue engineering for pharmaceutical purposes

机译:微泡与生物材料的整合在组织工程中的制药目的

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摘要

Tissue engineering with the aid of biomaterials is a novel and promising knowledge aiming at improving human life expectancy. Besides, microbubbles are increasingly employed in biomedical applications due to their capability as a reservoir of therapeutic agents and oxygen molecules. In the present study, Microbubbles as the backbone of the research are produced as one of the potent devices in tissue engineering approaches, including drug delivery, wound healing, 3D printing, and scaffolding. It was shown that microbubbles are capable of promoting oxygen penetration and boosting the wound healing process by supplying adequate oxygen. Microbubbles also demonstrated their strength and potency in advancing drug delivery systems by reinforcing mass transfer phenomena. Furthermore, microbubbles developed the mechanical and biological characteristics of engineered scaffolds by manipulating the pores. Increasing cell survival, the biological activity of cells, angiogenesis, cell migration, and also nutrient diffusion into the inner layers of the scaffold were other achievements by microbubbles. In conclusion, the interest of biomedical communities in simultaneous usage of microbubbles and biomaterials under tissue engineering approaches experiences remarkable growth in Pharmaceutical studies.
机译:借助生物材料的组织工程是一种新颖而有希望的知识,旨在改善人类预期寿命。此外,由于其作为治疗剂和氧分子的储存能力,微泡越来越多地采用生物医学应用。在本研究中,作为研究骨干的微泡被制造为组织工程方法中的一个有效装置,包括药物递送,伤口愈合,3D印刷和脚手架。结果表明,微泡能够通过提供足够的氧气来促进氧气渗透并提高伤口愈合过程。微泡也证明了通过加强传质现象来推进药物递送系统的强度和效力。此外,微泡通过操纵孔而开发了工程支架的机械和生物学特性。增加细胞存活,细胞的生物活性,血管生成,细胞迁移,以及养分扩散到支架内层的核酸中是微泡的其他成果。总之,生物医学社区在组织工程方法下同时使用微泡和生物材料的利益在药学研究中经历了显着的增长。

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