School of Traditional Medicine Materials Resource, Guangdong Pharmaceutical University, Yunfu 527325, China.
School of Pharmaceutical Sciences (Shenzhen), Sun Yat-sen University, Shenzhen 518107, China.
J Biomed Nanotechnol. 2022 Mar 1;18(3):898-908. doi: 10.1166/jbn.2022.3300.
Scars are common and intractable consequences after scalded wound healing, while monotherapy of epidermal growth factors does not solve this problem. Maintaining the stability of epidermal growth factors and promoting scarless healing of wounds is paramount. In this study, engineering cellular nanovesicles overexpressing PD-L1 proteins, biomimetic nanocarriers with immunosuppressive efficacy, were successfully prepared to encapsulate epidermal growth factors for maintaining its bioactivity. Remarkably, PD-L1 cellular nanovesicles encapsulating epidermal growth factors (EGF@PDL1 NVs) exerted desired therapeutic effect by attenuating the overactivation of T cell immune response and promoting skin cells migration and proliferation. Hence, EGF@PD-L1 NVs promoted wound healing and prevented scarring in deep second-degree scald treatment, demonstrating a better effect than using individual PD-L1 NVs or EGF. This research proved that EGF@PD-L1 NVs is considered an innovative and thorough therapy of deep second-degree scald.
瘢痕是烫伤创面愈合后的常见且棘手的后遗症,而表皮生长因子的单一治疗并不能解决这个问题。保持表皮生长因子的稳定性并促进创面无瘢痕愈合至关重要。在这项研究中,成功制备了过表达 PD-L1 蛋白的工程细胞纳米囊泡,这是一种具有免疫抑制功效的仿生纳米载体,用于封装表皮生长因子以维持其生物活性。值得注意的是,封装表皮生长因子的 PD-L1 细胞纳米囊泡(EGF@PDL1 NVs)通过减轻 T 细胞免疫反应的过度激活以及促进皮肤细胞迁移和增殖,发挥了理想的治疗效果。因此,EGF@PD-L1 NVs 促进了深度二度烫伤的伤口愈合并防止了瘢痕形成,其效果优于单独使用 PD-L1 NVs 或 EGF。这项研究证明,EGF@PD-L1 NVs 被认为是深度二度烫伤的一种创新且全面的治疗方法。