生物相容性
复合数
矿化(土壤科学)
纤维素
富血小板血浆
脚手架
组织工程
化学
细菌纤维素
生物医学工程
骨愈合
血小板
材料科学
复合材料
生物化学
解剖
生物
免疫学
医学
有机化学
氮气
作者
Xiangmei Wang,Xiaoli Yang,Xin Xiao,Xue–Qian Li,Chuntao Chen,Dongping Sun
标识
DOI:10.1016/j.ijbiomac.2024.132124
摘要
Bacterial cellulose (BC) hydrogel is renowned in the field of tissue engineering for its high biocompatibility, excellent mechanical strength, and eco-friendliness. Herein, we present a biomimetic mineralization method for preparing BC/hydroxyapatite (HAP) composite hydrogel scaffolds with different mineralization time and ion concentration of the mineralized solution. Spherical HAP reinforcement enhanced bone mineralization, thereby imparting increased bioactivity to BC matrix materials. Subsequently, platelet-rich plasma (PRP) was introduced into the scaffold. The PRP-loaded hydrogel enhanced the release of growth factors, which promoted cell adhesion, growth, and bone healing. After 3 weeks of MC3T3-E1 cell-induced osteogenesis, PRP positively affected cell differentiation in BC/HAP@PRP scaffolds. Overall, these scaffolds exhibited excellent biocompatibility, mineralized nodule formation, and controlled release in vitro, demonstrating great potential for application in bone tissue repair.
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