Peng Xiaojuan, Ding Chuanbo, Zhao Yingchun, Hao Mingqian, Liu Wencong, Yang Min, Xiao Fengyan, Zheng Yinan
College of Chinese Medicinal Materials, Jilin Agricultural University, Changchun, China.
Jilin Agricultural Science and Technology University, Jilin, China.
Front Bioeng Biotechnol. 2022 Jul 5;10:831007. doi: 10.3389/fbioe.2022.831007. eCollection 2022.
Ginsenoside Rg3 has shown beneficial effects in various skin diseases. The current interest in designing and developing hydrogels for biomedical applications continues to grow, inspiring the further development of drug-loaded hydrogels for tissue repair and localized drug delivery. The aim of the present study was to develop an effective and safe hydrogel (Rg3-Gel), using ginsenoside Rg3, and we evaluated the wound-healing potential and therapeutic mechanism of Rg3-Gel. The results indicated that the optimized Rg3-Gel underwent discontinuous phase transition at low and high temperatures. Rg3-Gel also exhibited good network structures, swelling water retention capacity, sustainable release performance, and excellent biocompatibility. Subsequently, the good antibacterial and antioxidant properties of Rg3-Gel were confirmed by tests. In full-thickness skin defect wounded models, Rg3-Gel significantly accelerated the wound contraction, promoted epithelial and tissue regeneration, and promoted collagen deposition and angiogenesis. In addition, Rg3-Gel increased the expression of autophagy proteins by inhibiting the MAPK and NF-KB pathways . It simultaneously regulated host immunity by increasing the abundance of beneficial bacteria and the diversity of the wound surface flora. From these preliminary evaluations, it is possible to conclude that Rg3-Gel has excellent application potential in wound-healing drug delivery systems.
人参皂苷Rg3已在多种皮肤疾病中显示出有益作用。目前,设计和开发用于生物医学应用的水凝胶的兴趣持续增长,这激发了用于组织修复和局部药物递送的载药水凝胶的进一步发展。本研究的目的是使用人参皂苷Rg3开发一种有效且安全的水凝胶(Rg3-Gel),并评估Rg3-Gel的伤口愈合潜力和治疗机制。结果表明,优化后的Rg3-Gel在低温和高温下经历了不连续的相变。Rg3-Gel还表现出良好的网络结构、溶胀保水能力、可持续释放性能和优异的生物相容性。随后,通过测试证实了Rg3-Gel具有良好的抗菌和抗氧化性能。在全层皮肤缺损伤口模型中,Rg3-Gel显著加速伤口收缩,促进上皮和组织再生,并促进胶原蛋白沉积和血管生成。此外,Rg3-Gel通过抑制MAPK和NF-KB途径增加自噬蛋白的表达。它同时通过增加有益细菌的丰度和伤口表面菌群的多样性来调节宿主免疫力。从这些初步评估中,可以得出结论,Rg3-Gel在伤口愈合药物递送系统中具有优异的应用潜力。