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Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity

Although there is ample evidence that the chemotherapeutic drugs trigger an immune response, the efficient tumor rejection or regression is not guaranteed probably due to the massive immunosuppression within the tumor microenvironment. Thus, a rational delivery platform that overcomes immunosuppress...

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Autores principales: Liu, Lisha, Chen, Qinjun, Ruan, Chunhui, Chen, Xinli, Zhang, Yu, He, Xi, Zhang, Yujie, Lu, Yifei, Guo, Qin, Sun, Tao, Wang, Hao, Jiang, Chen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5996371/
https://www.ncbi.nlm.nih.gov/pubmed/29896297
http://dx.doi.org/10.7150/thno.24110
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author Liu, Lisha
Chen, Qinjun
Ruan, Chunhui
Chen, Xinli
Zhang, Yu
He, Xi
Zhang, Yujie
Lu, Yifei
Guo, Qin
Sun, Tao
Wang, Hao
Jiang, Chen
author_facet Liu, Lisha
Chen, Qinjun
Ruan, Chunhui
Chen, Xinli
Zhang, Yu
He, Xi
Zhang, Yujie
Lu, Yifei
Guo, Qin
Sun, Tao
Wang, Hao
Jiang, Chen
author_sort Liu, Lisha
collection PubMed
description Although there is ample evidence that the chemotherapeutic drugs trigger an immune response, the efficient tumor rejection or regression is not guaranteed probably due to the massive immunosuppression within the tumor microenvironment. Thus, a rational delivery platform that overcomes immunosuppression is needed to maximally achieve both cytotoxic and immune-modulatory functions of chemotherapeutics. Accumulating evidence suggests that platinum-based drugs might be suitable for this application. Methods: The dendrigraft polylysine (DGL) with its uniform size and multifunctional groups was employed as the polymeric core and conjugated with platinum-based compounds as therapeutics and WKYMVm peptide (Wpep) as a targeting ligand to construct the novel delivery platform Wpep-DGL/Pt. A series of in vitro and in vivo analyses, including physical and chemical characterizations, targeting property, biosafety, and antitumor efficacy of Wpep-DGL/Pt were systematically carried out. Results: Wpep-DGL/Pt showed potent antitumor efficacy in MDA-MB-231 cells tumor-bearing nude mice with a deficient immune system, demonstrating targeted delivery of chemotherapeutics and the resultant cytotoxicity. Furthermore, in immunocompetent mice bearing 4T1 cells tumors, Wpep-DGL/Pt activated immune cells and induced cell death proving their dual function of chemotherapeutic and immunomodulatory efficacy. Conclusion: This work represents a novel approach for cancer immunotherapy by integrating nanotechnology and platinum-based therapeutics which not only efficiently exerts the chemotherapeutic cytotoxic effect on tumor cell but also restores immune response of immunological cells within the tumor microenvironment.
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spelling pubmed-59963712018-06-12 Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity Liu, Lisha Chen, Qinjun Ruan, Chunhui Chen, Xinli Zhang, Yu He, Xi Zhang, Yujie Lu, Yifei Guo, Qin Sun, Tao Wang, Hao Jiang, Chen Theranostics Research Paper Although there is ample evidence that the chemotherapeutic drugs trigger an immune response, the efficient tumor rejection or regression is not guaranteed probably due to the massive immunosuppression within the tumor microenvironment. Thus, a rational delivery platform that overcomes immunosuppression is needed to maximally achieve both cytotoxic and immune-modulatory functions of chemotherapeutics. Accumulating evidence suggests that platinum-based drugs might be suitable for this application. Methods: The dendrigraft polylysine (DGL) with its uniform size and multifunctional groups was employed as the polymeric core and conjugated with platinum-based compounds as therapeutics and WKYMVm peptide (Wpep) as a targeting ligand to construct the novel delivery platform Wpep-DGL/Pt. A series of in vitro and in vivo analyses, including physical and chemical characterizations, targeting property, biosafety, and antitumor efficacy of Wpep-DGL/Pt were systematically carried out. Results: Wpep-DGL/Pt showed potent antitumor efficacy in MDA-MB-231 cells tumor-bearing nude mice with a deficient immune system, demonstrating targeted delivery of chemotherapeutics and the resultant cytotoxicity. Furthermore, in immunocompetent mice bearing 4T1 cells tumors, Wpep-DGL/Pt activated immune cells and induced cell death proving their dual function of chemotherapeutic and immunomodulatory efficacy. Conclusion: This work represents a novel approach for cancer immunotherapy by integrating nanotechnology and platinum-based therapeutics which not only efficiently exerts the chemotherapeutic cytotoxic effect on tumor cell but also restores immune response of immunological cells within the tumor microenvironment. Ivyspring International Publisher 2018-04-18 /pmc/articles/PMC5996371/ /pubmed/29896297 http://dx.doi.org/10.7150/thno.24110 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Liu, Lisha
Chen, Qinjun
Ruan, Chunhui
Chen, Xinli
Zhang, Yu
He, Xi
Zhang, Yujie
Lu, Yifei
Guo, Qin
Sun, Tao
Wang, Hao
Jiang, Chen
Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title_full Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title_fullStr Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title_full_unstemmed Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title_short Platinum-Based Nanovectors Engineered with Immuno-Modulating Adjuvant for Inhibiting Tumor growth and Promoting Immunity
title_sort platinum-based nanovectors engineered with immuno-modulating adjuvant for inhibiting tumor growth and promoting immunity
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5996371/
https://www.ncbi.nlm.nih.gov/pubmed/29896297
http://dx.doi.org/10.7150/thno.24110
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