丝素
生物相容性
化学
流式细胞术
组织工程
丝绸
层粘连蛋白
蛋白质吸附
生物医学工程
细胞生物学
材料科学
细胞外基质
吸附
分子生物学
生物化学
生物
复合材料
医学
有机化学
作者
Zahra Bashiri,Ali Moghaddaszadeh,Reza Falak,Farnaz Khadivi,Azita Afzali,Mehdi Abbasi,Ali Mohammad Sharifi,Hamid Reza Asgari,Farid Ghanbari,Morteza Koruji
标识
DOI:10.1002/mabi.202200574
摘要
Abstract In vitro production of sperm is a desirable idea for fertility preservation in azoospermic men and prepubertal boys suffering from cancer. In this study, a biocompatible porous scaffold based on a triad mixture of silk fibroin (SF), alginate (Alg), and laminin (LM) is developed to facilitate the differentiation of mouse spermatogonia stem cells (SSCs). Following SF extraction, the content is analyzed by SDS‐PAGE and stable porous 3D scaffolds are successfully prepared by merely Alg, SF, and a combination of Alg‐SF, or Alg‐SF‐LM through freeze‐drying. Then, the biomimetic scaffolds are characterized regarding the structural and biological properties, water absorption capacity, biocompatibility, biodegradability, and mechanical behavior. Neonatal mice testicular cells are seeded on three‐dimensional scaffolds and their differentiation efficiency is evaluated using real‐time PCR, flow cytometry, immunohistochemistry. Blend matrices showed uniform porous microstructures with interconnected networks, which maintained long‐term stability and mechanical properties better than homogenous structures. Molecular analysis of the cells after 21 days of culture showed that the expression of differentiation‐related proteins in cells that are developed in composite scaffolds is significantly higher than in other groups. The application of a composite system can lead to the differentiation of SSCs, paving the way for a novel infertility treatment landscape in the future.
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