生物加工
微珠(研究)
微流控
生物医学工程
材料科学
模块化设计
去细胞化
纳米技术
从长凳到床边
生物陶瓷
再生(生物学)
组织工程
微球
再生医学
骨组织
微载波
生物相容性材料
活力测定
互连性
作者
Seh Ri Oh,Nelson Iear Baek,Yunseo Jung,Hodong Seok,Jaewoo Lee,Young‐Hyeon An,Arun Kumar Rajendran,Mihn Jeong Park,Kyoung Ha So,Pham Dac Vuong,Jae Won Lee,Minglin Ma,Nathaniel S. Hwang
标识
DOI:10.1002/adhm.202503505
摘要
ABSTRACT Microbead‐based modular systems offer significant potential for biofabrication strategies in tissue regeneration. In this study, we present a tunable microfluidic cryogel microbead (MCB) platform that enables injectable, modular assembly of cells and tissue‐specific regeneration. The MCBs are designed to incorporate diverse ECM compositions, porosities, and bioceramic components tailored to specific tissue types. They support cell viability and function, and when loaded with endothelial cells, promote vascularization in a hindlimb ischemia model. Incorporation of skin‐derived decellularized ECM enhances regeneration in dorsal skin wound models. Additionally, MCBs embedded with bioceramics facilitate osteogenic differentiation and bone formation both in vitro and in a critical‐sized cranial bone defect model by providing a stable and osteoconductive microenvironment. These results highlight the broad translational potential of the cryogel microbead platform across multiple tissue types, establishing it as a promising tool for regenerative medicine.
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