Xu Moxun, Duan Meitao, Chen Ming, Mahal Ahmed, Yang Lin, Meng Chen, Zhang Zhiqiang, Ren Jungang, Obaidullah Ahmad J, Li Shuxian, Wang Chen
College of Pharmacy, Jiamusi University, Jiamusi 154007, PR China.
School of Pharmacy, Xiamen Medical College, Xiamen 361023, PR China.
Biochim Biophys Acta Gen Subj. 2025 Apr;1869(5):130776. doi: 10.1016/j.bbagen.2025.130776. Epub 2025 Feb 17.
Melanoma is the main cause of death from skin cancer. The current treatment methods have prominent toxic side effects. In order to more effectively inhibit melanoma and reduce the toxic side effects during treatment, this paper constructs an engineering system using DSPE-PEG2000-pYEEIE(pYEEIE) molecules to modify exosome-like nanovesicles vesicles of Rhodiola rosea (RELNs) and load Doxorubicin (DOX). As a drug system, the aim is to achieve better targeting activity of the system towards melanoma cell A375. The results showed that the morphology and particle size of the prepared RELNs met the defined criteria for evaluating extracellular vesicles. The pYEEIE-RELNs-DOX drug delivery system has a better inhibitory effect on cell proliferation compared to DOX and RELNs-DOX. At the same time, the pYEEIE-RELN-DOX drug delivery system also showed better targeting towards tumor cells. In summary, this study proposes for the first time RELNs as a new generation of drug delivery carriers and uses them for drug delivery and inhibition of melanoma cell toxicity. This lays the foundation for subsequent animal and clinical experiments, and provides new ideas for the treatment of skin cancer caused by melanoma.
黑色素瘤是皮肤癌致死的主要原因。目前的治疗方法有显著的毒副作用。为了更有效地抑制黑色素瘤并减少治疗过程中的毒副作用,本文构建了一种工程系统,该系统利用DSPE-PEG2000-pYEEIE(pYEEIE)分子修饰红景天外泌体样纳米囊泡(RELNs)并负载阿霉素(DOX)。作为一种药物系统,其目的是使该系统对黑色素瘤细胞A375具有更好的靶向活性。结果表明,所制备的RELNs的形态和粒径符合评估细胞外囊泡的既定标准。与DOX和RELNs-DOX相比,pYEEIE-RELNs-DOX药物递送系统对细胞增殖具有更好的抑制作用。同时,pYEEIE-RELN-DOX药物递送系统对肿瘤细胞也表现出更好的靶向性。综上所述,本研究首次提出将RELNs作为新一代药物递送载体,并将其用于药物递送和抑制黑色素瘤细胞毒性。这为后续的动物和临床试验奠定了基础,并为治疗由黑色素瘤引起的皮肤癌提供了新思路。