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Acid-responsive nanoparticles as a novel oxidative stress-inducing anticancer therapeutic agent for colon cancer
Zhao, Chengwei1; Cao, Weilan2; Zheng, Hailun1,3; Xiao, Zhongxiang1; Hhu, Jie1,4; Yang, Lehe1; Chen, Min1; Liang, Guang1; Zheng, Suqing1; Zhao, chengguang1
2019
Source PublicationInternational Journal of Nanomedicine
ISSN1176-9114
Volume14Pages:1597-1618
Abstract

Objective: Nanoparticles can efficiently carry and deliver anticancer agents to tumor sites. Mounting evidence indicates that many types of cancer cells, including colon cancer, have a weakly acidic microenvironment and increased levels of reactive oxygen species. The construction of nano drug delivery vehicles “activatable” in response to the tumor microenvironment is a new antitumor therapeutic strategy. Methods: Cinnamaldehyde (CA) was designed to link directly with dextran to form a polymer through an acid cleavable acetal bond. Herein, a novel pH-sensitive drug delivery system was constructed with co-encapsulated 10-hydroxy camptothecin (HCPT). Dynamic light scattering (DLS) analysis, transmission electron microscopy (TEM) analysis, and release kinetics analysis of HCPT-CA-loaded nanoparticles (PCH) were conducted to investigate the physical and chemical properties. The cellular uptake signatures of the nanoparticles were observed by confocal microscopy and flow cytometry. Cell viability, cell scratch assay, apoptosis assay, and colony formation assay were performed to examine the potent antiproliferative and apoptotic effects of the PCH. The antitumor mechanism of the treatment with PCH was evaluated by Western blotting, flow cytometry, and TEM analysis. The pharmacokinetics of PCH were examined in healthy Sprague Dawley rats within 6 hours after sublingual vein injection. We lastly examined the biodistribution and the in vivo anticancer activity of PCH using the xenograft mouse models of HCT116 cells. Results: Both HCPT and CA were quickly released by PCH in an acidic microenvironment. PCH not only induced cancer cell death through the generation of intracellular reactive oxygen species in vitro but also facilitated the drug uptake, effectively prolonged drug circulation, and increased accumulation of drug in tumor sites. More attractively, PCH exhibited excellent therapeutic performance and better in vivo systemic safety. Conclusion: Overall, PCH not only utilized the tumor microenvironment to control drug release, improve drug pharmacokinetics, and passively target the drug to the tumor tissue, but also exerted a synergistic anticancer effect. The acid-responsive PCH has enormous potential as a novel anticancer therapeutic strategy.

KeywordCinnamaldehyde Colon Cancer Hydroxy Camptothecin Ph-responsive Nanoparticles Ros
DOI10.2147/IJN.S189923
URLView the original
Language英語English
WOS IDWOS:000460051300001
Scopus ID2-s2.0-85063266915
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Document TypeJournal article
CollectionUniversity of Macau
Affiliation1.Chemical Biology Research Center, School of Pharmaceutical Sciences, Wenzhou Medical University, Wenzhou, 325035, China
2.Department of Coloproctology, The Second Affiliated Hospital andYuying Children’s Hospital, Wenzhou Medical Universitym, Wenzhou, 325035, China
3.Department of Pharmacy, The Second Affiliated Hospital and Yuying Children’s Hospital, Wenzhou Medical University, Wenzhou, 325035, China
4.State Key Laboratory of Quality Research in Chinese Medicine, Institute of Chinese Medical Sciences, University of Macau, Taipa, 999078, China
Recommended Citation
GB/T 7714
Zhao, Chengwei,Cao, Weilan,Zheng, Hailun,et al. Acid-responsive nanoparticles as a novel oxidative stress-inducing anticancer therapeutic agent for colon cancer[J]. International Journal of Nanomedicine, 2019, 14, 1597-1618.
APA Zhao, Chengwei., Cao, Weilan., Zheng, Hailun., Xiao, Zhongxiang., Hhu, Jie., Yang, Lehe., Chen, Min., Liang, Guang., Zheng, Suqing., & Zhao, chengguang (2019). Acid-responsive nanoparticles as a novel oxidative stress-inducing anticancer therapeutic agent for colon cancer. International Journal of Nanomedicine, 14, 1597-1618.
MLA Zhao, Chengwei,et al."Acid-responsive nanoparticles as a novel oxidative stress-inducing anticancer therapeutic agent for colon cancer".International Journal of Nanomedicine 14(2019):1597-1618.
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