子宫内膜
生物相容性
血管生成
药物输送
生物医学工程
血管内皮生长因子
体内
材料科学
医学
透明质酸
血管内皮生长因子受体
内科学
纳米技术
生物
解剖
冶金
生物技术
作者
Lanjie Lei,Qizhuang Lv,Yan Jin,An Hong,Zhe Shi,Ge Hu,Yuze Yang,Xiangguo Wang,Lei Yang
出处
期刊:ACS Biomaterials Science & Engineering
[American Chemical Society]
日期:2021-08-20
卷期号:7 (10): 4914-4920
被引量:47
标识
DOI:10.1021/acsbiomaterials.1c00615
摘要
The poor vascular development of an endometrium is the key cause of a thin endometrium due to the vascular endothelial growth factor (VEGF) decreasing in the glandular epithelium. Hence, inducing angiogenesis is an effective strategy for thin endometrium treatment in clinic. Herein, we developed a novel angiogenic hydrogel microsphere based on methacrylated hyaluronic acid (HAMA) loaded with VEGF for the treatment of a thin endometrium by a microfluidic electrospray technique. The generated HAMA microspheres with uniform size, porous structure, and satisfactory biocompatibility increased the drug-loading ability and controlled the drug-release rate by adjusting the hydrogel concentration. Besides, the HAMA microspheres loaded with VEGF showed satisfactory biocompatibility and promoted blood vessel formation in vitro. More importantly, the combination of HA and VEGF promoted new blood vessels and endometrial regeneration of a thin endometrium in vivo. Therefore, the combination of HA and VEGF would be conducive to the development of a drug-delivery microsphere with excellent biocompatibility and therapeutic effect for thin endometrium treatment and other biomedical applications.
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