Medical School, Faculty of Medicine, Tianjin University; Hangzhou Institute of Medicine, Chinese Academy of Sciences.
Hangzhou Institute of Medicine, Chinese Academy of Sciences;
J Vis Exp. 2024 Jul 12(209). doi: 10.3791/67109.
Exosomes, as emerging "next-generation" biotherapeutics and drug delivery vectors, hold immense potential in diverse biomedical fields, ranging from drug delivery and regenerative medicine to disease diagnosis and tumor immunotherapy. However, the rapid clearance by traditional bolus injection and poor stability of exosomes restrict their clinical application. Microneedles serve as a solution that prolongs the residence time of exosomes at the administration site, thereby maintaining the drug concentration and facilitating sustained therapeutic effects. In addition, microneedles also possess the ability to maintain the stability of bioactive substances. Therefore, we introduce a microneedle patch for loading and delivering exosomes and share the methods, including isolation of exosomes, fabrication, and characterization of exosome-loaded microneedle patches. The microneedle patches were fabricated using trehalose and hyaluronic acid as the tip materials and polyvinylpyrrolidone as the backing material through a two-step casting method. The microneedles demonstrated robust mechanical strength, with tips able to withstand 2 N. Pig skin was used to simulate human skin, and the tips of microneedles completely melted within 60 s after skin puncture. The exosomes released from the microneedles exhibited morphology, particle size, marker proteins, and biological functions comparable to those of fresh exosomes, enabling dendritic cells uptake and promoting their maturation.
外泌体作为新兴的“下一代”生物治疗药物和药物递送载体,在药物递送、再生医学、疾病诊断和肿瘤免疫治疗等多个生物医学领域具有巨大的潜力。然而,传统的大剂量注射会导致外泌体快速清除,并且外泌体的稳定性较差,限制了它们的临床应用。微针作为一种解决方案,可以延长外泌体在给药部位的停留时间,从而维持药物浓度并促进持续的治疗效果。此外,微针还具有维持生物活性物质稳定性的能力。因此,我们引入了一种用于加载和递送外泌体的微针贴片,并分享了包括外泌体分离、微针贴片的制备和表征在内的方法。微针贴片采用海藻糖和透明质酸作为针尖材料,聚乙烯吡咯烷酮作为背衬材料,通过两步浇注法制备。微针具有很强的机械强度,针尖能够承受 2 N 的力。猪皮被用来模拟人体皮肤,微针的针尖在皮肤穿刺后 60 s 内完全融化。从微针中释放的外泌体表现出与新鲜外泌体相似的形态、粒径、标记蛋白和生物学功能,能够被树突状细胞摄取并促进其成熟。