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Enhanced targeted delivery of adenine to hepatocellular carcinoma using glycyrrhetinic acid-functionalized nanoparticles in vivo and in vitro

Authors :
Fei Wu
Hantao Xue
Xiaocheng Li
Wenbin Diao
Bin Jiang
Weiyu Wang
Wenjing Yu
Jingkun Bai
Yi Wang
Bo Lian
Weiguo Feng
Tongyi Sun
Meihua Qu
Chunling Zhao
Yubing Wang
Jingliang Wu
Zhiqin Gao
Source :
Biomedicine & Pharmacotherapy, Vol 131, Iss , Pp 110682- (2020)
Publication Year :
2020
Publisher :
Elsevier, 2020.

Abstract

Hepatocellular carcinoma (HCC), a common malignancy in China and globally, is primarily treated through surgical resection and liver transplantation, with chemotherapy as a significant synergistic option. Adenine (Ade), a nucleobase, exhibits antitumor effects by blocking human hepatic carcinoma cells in S phase and inhibiting tumor cell proliferation. However, its use is limited owing to its low solubility, poor targeting ability, and nephrotoxicity. Therefore, liver-targeting drug delivery systems have attracted considerable attention for the treatment of HCC. In this study, we explored the liver-targeting efficacy and antitumor effect of adenine-loaded glycyrrhetinic acid-modified hyaluronic acid (Ade/GA-HA) nanoparticles in vitro and in vivo. The GA-HA nanoparticles possessed obvious targeting specificity toward liver cancer cells, which was mainly achieved by the specific binding of the GA ligand to the GA receptor that was highly expressed on the liver cell membrane. In vitro and in vivo results showed that Ade/GA-HA nanoparticles could inhibit liver cancer cell proliferation and migration, promote apoptosis, and significantly inhibit the growth of tumor tissues. Altogether, this study is the first to successfully demonstrate that the targeting activity and antitumor effect of Ade against HCC are enhanced by using GA-HA nanoparticles in vitro and in vivo.

Details

Language :
English
ISSN :
07533322
Volume :
131
Issue :
110682-
Database :
Directory of Open Access Journals
Journal :
Biomedicine & Pharmacotherapy
Publication Type :
Academic Journal
Accession number :
edsdoj.5f3496d3c334d17908294b38ef9dcd0
Document Type :
article
Full Text :
https://doi.org/10.1016/j.biopha.2020.110682