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基于透明质酸的传递体/微针复合体系增强阿霉素经皮淋巴递药用于肿瘤转移治疗。

Enhanced transdermal lymphatic delivery of doxorubicin via hyaluronic acid based transfersomes/microneedle complex for tumor metastasis therapy.

机构信息

College of Marine Life Science, Ocean University of China, Yushan Road, Qingdao, Shandong Province 266003, China.

College of Marine Life Science, Ocean University of China, Yushan Road, Qingdao, Shandong Province 266003, China.

出版信息

Int J Biol Macromol. 2019 Mar 15;125:9-16. doi: 10.1016/j.ijbiomac.2018.11.230. Epub 2018 Nov 27.

Abstract

Tumor-draining lymph nodes (TDLN) are major metastatic sites for many solid tumor to support tumor progression and metastasis. Lymphatic delivery is regarded as a desirable route to promote adoptive immune response via vaccination, or to achieve efficient chemotherapy for tumor metastasis. In this study, a novel dissolving microneedle was fabricated using hyaluronic acid, integrated with transfersome (T) to break the limit of transdermal cargo transit. In virtue of the insertion capacity of microneedle and the lymphatic delivering ability of transfersomes, such transfersome/microneedles complex (T/MNs) was expected to enhance lymphatic delivery. The results revealed that the microneedles were able to efficiently insert into rat skin and release the doxorubicin loaded transfersome (DOX-T) in dermis via self-dissolution. DOX-T would maintain their multilayer structure as released from dissolved microneedles. DOX-T/MN could significantly promote accumulation of DOX in lymph nodes compared to epidermal diffusion, and increased its transdermal bioavailability in plasma. The results not only are promising for chemo-therapy of tumor through lymphatic drug delivery, especially for killing the metastasized tumor cells appeared in draining lymph nodes, they also provide an efficient strategy for tumor immune-therapy using transdermal administration.

摘要

肿瘤引流淋巴结 (TDLN) 是许多实体瘤转移的主要部位,有助于肿瘤的进展和转移。淋巴递药被认为是一种理想的途径,可以通过疫苗接种促进适应性免疫反应,或实现肿瘤转移的有效化疗。在这项研究中,使用透明质酸制备了一种新型溶解型微针,与传递体(T)集成,以打破透皮货物转运的限制。由于微针的插入能力和传递体的淋巴递药能力,这种传递体/微针复合物(T/MN)有望增强淋巴递药。结果表明,微针能够有效地插入大鼠皮肤,并通过自溶解在真皮中释放载有阿霉素的传递体(DOX-T)。DOX-T 从溶解的微针中释放时将保持其多层结构。与表皮扩散相比,DOX-T/MN 可显著促进 DOX 在淋巴结中的积累,并增加其在血浆中的透皮生物利用度。这些结果不仅为通过淋巴递药进行肿瘤化疗提供了希望,特别是为杀死引流淋巴结中出现的转移性肿瘤细胞,还为使用透皮给药进行肿瘤免疫治疗提供了一种有效的策略。

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