Injectable Hydrogels Including Magnetic Nanosheets for Multidisciplinary Treatment of Hepatocellular Carcinoma via Magnetic Hyperthermia

Author:

Gong Jinyu1,Hu Jinlong2,Yan Xu1,Xiang Luyao1,Chen Sheng1,Yang Huai1,Chen Zichao1,Hou Qingbing2,Song Yonghong1,Xu Yunjun3,Liu Dongquan2,Ji Chaofei2,Qin Qin2,Sun Haiyi4,Peng Junbin2,Cao Baoqiang2,Lu Yang1ORCID

Affiliation:

1. Anhui Province Key Laboratory of Advanced Catalytic Materials and Reaction Engineering School of Chemistry and Chemical Engineering School of Food and Biological Engineering Hefei University of Technology Hefei Anhui 230009 P. R. China

2. Department of General Surgery Anhui No. 2 Provincial People's Hospital Hefei 230041 P. R. China

3. Department of Radiology The First Affiliated Hospital of USTC Division of Life Sciences and Medicine University of Science and Technology of China Hefei Anhui 230036 P. R. China

4. The First Clinical College Anhui Medical University Hefei 230022 P. R. China

Abstract

AbstractRelapse and unresectability have become the main obstacle for further improving hepatocellular carcinoma (HCC) treatment effect. Currently, single therapy for HCC in clinical practice is limited by postoperative recurrence, intraoperative blood loss and poor patient outcomes. Multidisciplinary therapy has been recognized as the key to improving the long‐term survival rate for HCC. However, the clinical application of HCC synthetic therapy is restricted by single functional biomaterials. In this study, a magnetic nanocomposite hydrogel (CG‐IM) with iron oxide nanoparticle‐loaded mica nanosheets (Iron oxide nanoparticles@Mica, IM) is reported. This biocompatible magnetic hydrogel integrated high injectability, magnetocaloric property, mechanical robustness, wet adhesion, and hemostasis, leading to efficient HCC multidisciplinary therapies including postoperative tumor margin treatment and percutaneous locoregional ablation. After minimally invasive hepatectomy of HCC, the CG‐IM hydrogel can facilely seal the bleeding hepatic margin, followed by magnetic hyperthermia ablation to effectively prevent recurrence. In addition, CG‐IM hydrogel can inhibit unresectable HCC by magnetic hyperthermia through the percutaneous intervention under ultrasound guidance.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Natural Science Foundation of Anhui Province

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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