Rational Design of Biomaterials to Potentiate Cancer Thermal Therapy

热疗 热烧蚀 癌症治疗 放射治疗 癌症 生物材料 微波消融 射频消融术 癌症研究 生物医学工程 医学 烧蚀 外科 内科学
作者
Yujie Zhu,Quguang Li,Chunjie Wang,Hao Yu,Nailin Yang,Minjiang Chen,Jiansong Ji,Liangzhu Feng,Zhuang Liu
出处
期刊:Chemical Reviews [American Chemical Society]
卷期号:123 (11): 7326-7378 被引量:74
标识
DOI:10.1021/acs.chemrev.2c00822
摘要

Cancer thermal therapy, also known as hyperthermia therapy, has long been exploited to eradicate mass lesions that are now defined as cancer. With the development of corresponding technologies and equipment, local hyperthermia therapies such as radiofrequency ablation, microwave ablation, and high-intensity focused ultrasound, have has been validated to effectively ablate tumors in modern clinical practice. However, they still face many shortcomings, including nonspecific damages to adjacent normal tissues and incomplete ablation particularly for large tumors, restricting their wide clinical usage. Attributed to their versatile physiochemical properties, biomaterials have been specially designed to potentiate local hyperthermia treatments according to their unique working principles. Meanwhile, biomaterial-based delivery systems are able to bridge hyperthermia therapies with other types of treatment strategies such as chemotherapy, radiotherapy and immunotherapy. Therefore, in this review, we discuss recent progress in the development of functional biomaterials to reinforce local hyperthermia by functioning as thermal sensitizers to endow more efficient tumor-localized thermal ablation and/or as delivery vehicles to synergize with other therapeutic modalities for combined cancer treatments. Thereafter, we provide a critical perspective on the further development of biomaterial-assisted local hyperthermia toward clinical applications.
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