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用于细胞培养和骨组织工程的微载体。

Microcarriers designed for cell culture and tissue engineering of bone.

机构信息

Biomaterials and Tissue Engineering Lab, Department of Nanobiomedical Science & WCU Research Center, Dankook University, Cheonan, South Korea.

出版信息

Tissue Eng Part B Rev. 2013 Apr;19(2):172-90. doi: 10.1089/ten.TEB.2012.0432. Epub 2013 Jan 17.

Abstract

Microspherical particulates have been an attractive form of biomaterials that find usefulness in cell delivery and tissue engineering. A variety of compositions, including bioactive ceramics, degradable polymers, and their composites, have been developed into a microsphere form and have demonstrated the potential to fill defective bone and to populate tissue cells on curved matrices. To enhance the capacity of cell delivery, the conventional solid form of spheres is engineered to have either a porous structure to hold cells or a thin shell to in-situ encapsulate cells within the structure. Microcarriers can also be a potential reservoir system of bioactive molecules that have therapeutic effects in regulating cell behaviors. Due to their specific form, advanced technologies to culture cell-loaded microcarriers are required, such as simple agitation or shaking, spinner flask, and rotating chamber system. Here, we review systematically, from material design to culture technology, the microspherical carriers used for the delivery of cells and tissue engineering, particularly of bone.

摘要

微球颗粒一直是一种有吸引力的生物材料形式,在细胞输送和组织工程中具有广泛的用途。各种组成部分,包括生物活性陶瓷、可降解聚合物及其复合材料,已经被开发成微球形式,并显示出填充缺陷骨骼和在弯曲基质上填充组织细胞的潜力。为了提高细胞输送能力,传统的球体固体形式被设计成具有多孔结构以容纳细胞,或具有薄壳以在结构内原位封装细胞。微载体也可以是生物活性分子的潜在储存系统,这些分子在调节细胞行为方面具有治疗作用。由于其特殊的形式,需要先进的技术来培养负载细胞的微载体,例如简单的搅拌或摇动、旋转瓶和旋转室系统。在这里,我们从材料设计到培养技术,系统地综述了用于细胞输送和组织工程的微球载体,特别是骨组织工程。

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