Schaly Sabrina, Islam Paromita, Abosalha Ahmed, Boyajian Jacqueline L, Shum-Tim Dominique, Prakash Satya
Biomedical Technology and Cell Therapy Research Laboratory, Department of Biomedical Engineering, Faculty of Medicine, McGill University, 3775 University Street, Montreal, QC H3A 2B4, Canada.
Pharmaceutical Technology Department, Faculty of Pharmacy, Tanta University, Tanta 31111, Egypt.
Pharmaceuticals (Basel). 2022 Nov 10;15(11):1382. doi: 10.3390/ph15111382.
Hydrogel wound dressings are effective in their ability to provide a wound-healing environment but are limited by their ability to promote later stages of revascularization. Here, a biosafe recombinant baculovirus expressing VEGFA tagged with EGFP is encapsulated in chitosan-coated alginate hydrogels using ionic cross-linking. The VEGFA, delivered by the baculovirus, significantly improves cell migration and angiogenesis to assist with the wound-healing process and revascularization. Moreover, the hydrogels have an encapsulation efficiency of 99.9%, no cytotoxicity, antimicrobial properties, good blood compatibility, promote hemostasis, and enable sustained delivery of baculoviruses over eight days. These hydrogels sustain baculovirus delivery and may have clinical implications in wound dressings or future gene therapy applications.
水凝胶伤口敷料在提供伤口愈合环境方面很有效,但在促进血管再生后期阶段的能力上受到限制。在此,一种表达带有增强绿色荧光蛋白(EGFP)标签的血管内皮生长因子A(VEGFA)的生物安全重组杆状病毒,通过离子交联被封装在壳聚糖包被的藻酸盐水凝胶中。由杆状病毒递送的VEGFA显著改善细胞迁移和血管生成,以辅助伤口愈合过程和血管再生。此外,这些水凝胶的包封效率为99.9%,无细胞毒性,具有抗菌特性、良好的血液相容性,能促进止血,并能在八天内持续递送杆状病毒。这些水凝胶可持续递送杆状病毒,可能在伤口敷料或未来的基因治疗应用中具有临床意义。