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Research Article

Co-delivery of TRAIL and paclitaxel by fibronectin-targeting liposomal nanodisk for effective lung melanoma metastasis treatment

Shiqi HuangLang DengHanming ZhangLuyao WangYicong ZhangQing LinTao GongXun SunZhirong Zhang( )Ling Zhang ( )
Key Laboratory of Drug Targeting and Drug Delivery Systems Ministry of Education West China School of Pharmacy College of Polymer Science and Engineering Sichuan UniversityChengdu 610041 China
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Abstract

Melanoma is a highly aggressive cancer which often forms metastatic tumors in the lung, leading to sharply reduced patients' survival rate. Effectively treating these tumors thus could improve late stage melanoma with lung metastasis. In this study, we fabricated a Cys-Arg-Glu-Lys-Ala with N-methylated Glu (CR(NMe)EKA) decorated disk shaped nano vehicle to co-deliver tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) and paclitaxel (PTX) to lung melanoma tumor sites (TRAIL-[ND- PTX]CR(NMe)EKA). These nanodisks displayed better tumor-targeting and penetration capability than spherical nanoparticles, while the fibronectin-targeting CR(NMe)EKA motif also increased the tumor accumulation of loaded drugs. The combined usage of TRAIL and PTX both killed tumor cells and reduced local nutrition supply, leading to stronger overall anti-tumor effect. This TRAIL-[ND-PTX]CR(NMe)EKA system performed remarkably better than free paclitaxel and also significantly elongated survival rate of melanoma lung metastasis bearing mice, without displaying significant toxicity. Hence, this designing strategy and the fabricated nanoplatform possess potential for further development.

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Nano Research
Pages 728-737

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Cite this article:
Huang S, Deng L, Zhang H, et al. Co-delivery of TRAIL and paclitaxel by fibronectin-targeting liposomal nanodisk for effective lung melanoma metastasis treatment. Nano Research, 2022, 15(1): 728-737. https://doi.org/10.1007/s12274-021-3553-2
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Received: 04 March 2021
Revised: 26 April 2021
Accepted: 30 April 2021
Published: 29 June 2021
© Tsinghua University Press and Springer-Verlag GmbH Germany, part of Springer Nature 2021