Co-delivery of simvastatin and microRNA-21 through liposome could accelerates the wound healing process

脂质体 伤口愈合 辛伐他汀 药物输送 体内 药理学 血管生成 成纤维细胞 生物医学工程 PEG比率 化学 医学 体外 材料科学 癌症研究 免疫学 生物 纳米技术 生物化学 生物技术 财务 经济
作者
Melika Kiani,Fatemeh Moraffah,Fatemeh Khonsari,Bahar Kharazian,Rassoul Dinarvand,Mohammad Ali Shokrgozar,Fatemeh Atyabi
出处
期刊:Biomaterials advances [Elsevier BV]
卷期号:154: 213658-213658 被引量:9
标识
DOI:10.1016/j.bioadv.2023.213658
摘要

The gene delivery approach, mainly microRNAs (miRNA) as key wound healing mediators, has recently received extensive attention. MicroRNA-21 (miR-21) has strongly impacted wound healing by affecting the inflammation and proliferation phases. Previous studies have also demonstrated the beneficial effect of simvastatin on wound healing. Therefore, we designed a dual-drug/gene delivery system using PEGylated liposomes that could simultaneously attain the co-encapsulation and co-delivery of miRNA and simvastatin (SIM) to explore the combined effect of this dual-drug delivery system on wound healing. The PEG-liposomes for simvastatin and miR-21 plasmid (miR-21-P/SIM/Liposomes) were prepared using the thin-film hydration method. The liposomes showed 85 % entrapment efficiency for SIM in the lipid bilayer and high physical entrapment of miR-21-P in the inner cavity. In vitro studies demonstrated no cytotoxicity for the carrier on normal human dermal fibroblast cells (NHDF) and 97 % cellular uptake over 2 h incubation. The scratch test revealed excellent cell proliferation and migration after treatment with miR-21-P/SIM/Liposomes. For the in vivo experiments, a full-thickness cutaneous wound model was used. The wound closure on day 8 was higher for Liposomal formulation containing miR-21-P promoting faster re-epithelialization. On day 12, all treated groups showed complete wound closure. However, following histological analysis, the miR-21-P/SIM/Liposomes revealed the best tissue regeneration, similar to normal functional skin, by reduced inflammation and increased re-epithelialization, collagen deposition and angiogenesis. In conclusion, the designed miR-21-P/SIM/Liposomes could significantly accelerate the process of wound healing, which provides a new strategy for the management of chronic wounds.
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