微流控
材料科学
类有机物
制作
纳米技术
微球
生物相容性
药物输送
聚合物
基质凝胶
生物医学工程
自愈水凝胶
明胶
循环肿瘤细胞
微珠(研究)
刚度
聚二甲基硅氧烷
微流控芯片
组织工程
基质(水族馆)
缓冲器(光纤)
毒品携带者
复合数
三维细胞培养
按需
球体
玻璃微球
生物界面
微粒
作者
Enmin Wang,Guomeng Feng,Haonan Hu,Jiarong Zou,Guoshuang Zheng,Ruyun Lou,Shanshan Liang,Weiting Yu,Lingyun Jia,Ruoyu Wang
标识
DOI:10.1088/1758-5090/ae7209
摘要
Matrigel-based hydrogel microspheres fabricated using microfluidic technology have emerged as promising carriers for tumor organoid modeling. However, their intrinsic low stiffness limits their ability to mimic the mechanical properties of the native tumor microenvironment. To overcome this limitation, we developed an interpenetrating polymer network by incorporating alginate into Matrigel, yielding alginate-Matrigel (AM) composite hydrogel microspheres with tunable stiffness via droplet microfluidics technique. Additionally, to eliminate the cytotoxic effects associated with acidic conditions in alginate-based droplet microfluidics process by acid-driven gelation methods, a novel external gelation strategy was designed. A Ca2+ preloaded gelatin substrate (contact angle > 80°) was employed to receive AM droplets, enabling rapid in situ crosslinking and solidification. Notably, cells encapsulated within AM microspheres exhibited high viability throughout the gelation process, and the resulting microspheres displayed excellent sphericity and structural uniformity. The entire workflow-spanning droplet formation, allocation, gelation, culture, and drug testing-was integrated into a streamlined single-step process optimized for high-throughput screening. The stiffness significantly increased over 7-fold, elevating from 0.6 kPa in Matrigel microsphere to 5.0 kPa in AM microsphere. Compared to Matrigel-only microspheres, both patient-derived tumor organoids and cell line spheroids in AM microspheres demonstrate enhanced chemoresistance, as indicated by elevated IC50 values. Taken together, this simple, biocompatible, and reproducible fabrication strategy offers a powerful platform for organoid modeling, drug screening, and patient-relevant drug testing.
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