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Microneedles for painless transdermal immunotherapeutic applications

机译:用于无痛透皮免疫治疗应用的微针

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摘要

Immunotherapy has recently garnered plenty of attention to improve the clinical outcomes in the treatment of various diseases. However, owing to the dynamic nature of the immune system, this approach has often been challenged by concerns regarding the lack of adequate long-term responses in patients. The development of microneedles (MNs) has resulted in the improvement and expansion of immuno-reprogramming strategies due to the housing of high accumulation of dendritic cells, macrophages, lymphocytes, and mast cells in the dermis layer of the skin. In addition, MNs possess many outstanding properties, such as the ability for the painless traverse of the stratum corneum, minimal invasiveness, facile fabrication, excellent biocompatibility, convenient administration, and bypassing the first pass metabolism that allows direct translocation of therapeutics into the systematic circulation. These advantages make MNs excellent candidates for the delivery of immunological biomolecules to the dermal antigen-presenting cells in the skin with the aim of vaccinating or treating different diseases, such as cancer and autoimmune disorders, with minimal invasiveness and side effects. This review discusses the recent advances in engineered MNs and tackles limitations relevant to traditional immunotherapy of various hard-to-treat diseases.
机译:近年来,为了改善各种疾病的临床疗效,免疫疗法受到了广泛关注。然而,由于免疫系统的动态特性,这种方法经常受到患者缺乏足够长期反应的担忧的挑战。微针(MNs)的发展导致了免疫重编程策略的改进和扩展,这是因为在皮肤真皮层中大量积聚了树突状细胞、巨噬细胞、淋巴细胞和肥大细胞。此外,MNs还具有许多突出的特性,例如无痛穿过角质层的能力、最小的侵入性、易于制造、良好的生物相容性、方便的给药以及绕过首过代谢,从而允许治疗药物直接转移到系统循环中。这些优点使MNs成为将免疫生物分子输送到皮肤中的真皮抗原递呈细胞的绝佳候选,目的是以最小的侵袭性和副作用接种或治疗不同的疾病,如癌症和自身免疫性疾病。本文综述了工程化MNs的最新进展,并讨论了传统免疫疗法对各种难治性疾病的局限性。

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