One‐Minute Preparation of Iron Foam‐Drug Implant for Ultralow‐Power Magnetic Hyperthermia‐Based Combination Therapy of Tumors in Vivo

Author:

Xie Guangchao12,Li Bingjie3,Zhang Xuejun2,Yu Jiaojiao2,Sun Shao‐Kai2ORCID

Affiliation:

1. Department of Diagnostic and Therapeutic Ultrasonography Tianjin Medical University Cancer Institute and Hospital National Clinical Research Center of Cancer Key Laboratory of Cancer Prevention and Therapy Tianjin 300060 China

2. School of Medical Imaging Tianjin Medical University Tianjin 300203 China

3. Department of Radiology and Tianjin Key Laboratory of Functional Imaging Tianjin Medical University General Hospital Tianjin 300052 China

Abstract

AbstractThe magnetic hyperthermia‐based combination therapy (MHCT) is a powerful tumor treatment approach due to its unlimited tissue penetration depth and synergistic therapeutic effect. However, strong magnetic hyperthermia and facile drug loading are incompatible with current MHCT platforms. Herein, an iron foam (IF)‐drug implant is established in an ultra‐facile and universal way for ultralow‐power MHCT of tumors in vivo for the first time. The IF‐drug implant is fabricated by simply immersing IF in a drug solution at an adjustable concentration for 1 min. Continuous metal structure of IF enables ultra‐high efficient magnetic hyperthermia based on eddy current thermal effect, and its porous feature provides great space for loading various hydrophilic and hydrophobic drugs via “capillary action”. In addition, the IF has the merits of low cost, customizable size and shape, and good biocompatibility and biodegradability, benefiting reproducible and large‐scale preparation of IF‐drug implants for biological application. As a proof of concept, IF‐doxorubicin (IF‐DOX) is used for combined tumor treatment in vivo and achieves excellent therapeutic efficacy at a magnetic field intensity an order of magnitude lower than the threshold for biosafety application. The proposed IF‐drug implant provides a handy and universal method for the fabrication of MHCT platforms for ultralow‐power combination therapy.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Tianjin Municipality

Publisher

Wiley

Subject

General Physics and Astronomy,General Engineering,Biochemistry, Genetics and Molecular Biology (miscellaneous),General Materials Science,General Chemical Engineering,Medicine (miscellaneous)

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