Moghtader Farzaneh, Tabata Yasuhiko, Karaöz Erdal
Nanobiyomedtek Biyomedikal ve Biyoteknoloji Sanayi ve Ticaret Limited Sirketi, Koycegiz 48800, Mugla, Turkey.
Laboratory of Biomaterials, Institute for Life and Medical Sciences, Department of Regeneration Science and Engineering, Kyoto University, Kyoto 606-850, Japan.
Gels. 2024 Jul 25;10(8):493. doi: 10.3390/gels10080493.
There is great interest in developing effective therapies for the treatment of skin wounds accompanied by deep tissue losses and severe infections. We have attempted to prepare biohybrids formed of agglomerates of mesenchymal stem cells (MSCs) with gelatin hydrogel beads (GEL beads) delivering bacteriophages (phages) as antibacterial agents and/or basic fibroblast growth factor (bFGF) for faster and better healing, providing combined therapies for these types of skin wounds. The gelatin beads were produced through a two-step process using basic and/or acidic gelatins with different isoelectric points. () and its specific T4 phages were propagated. Phages and/or bFGF were loaded within the GELs and their release rates and modes were obtained. The phage release from the basic GEL beads was quite fast; in contrast, the bFGF release from the acidic GEL beads was sustained, as anticipated. MSCs were isolated from mouse adipose tissues and 2D-cultured. Agglomerates of these MSCs with GEL beads were formed and maturated in 3D cultures, and their time-dependent changes were followed. In these 3D culture experiments, it was observed that the agglomerates with GEL beads were very healthy and the MSCs formed tissue-like structures in 7 days, while the MSC agglomerates were not healthy and shrunk considerably as a result of cell death.
开发有效的疗法来治疗伴有深部组织损伤和严重感染的皮肤伤口引起了人们极大的兴趣。我们试图制备由间充质干细胞(MSC)聚集体与明胶水凝胶珠(GEL珠)形成的生物杂交体,GEL珠可递送作为抗菌剂的噬菌体(phage)和/或碱性成纤维细胞生长因子(bFGF),以实现更快更好的愈合,为这类皮肤伤口提供联合治疗。明胶珠是通过两步法使用具有不同等电点的碱性和/或酸性明胶制备的。()及其特定的T4噬菌体得以繁殖。噬菌体和/或bFGF被加载到GEL中,并获得了它们的释放速率和模式。从碱性GEL珠中释放噬菌体相当快;相比之下,正如预期的那样,酸性GEL珠中bFGF的释放是持续的。从小鼠脂肪组织中分离出MSC并进行二维培养。这些MSC与GEL珠的聚集体在三维培养中形成并成熟,并跟踪其随时间的变化。在这些三维培养实验中,观察到带有GEL珠的聚集体非常健康,MSC在7天内形成了组织样结构,而MSC聚集体不健康,由于细胞死亡而大幅收缩。