Author:
Yao Yuanzhi,Xiao Huan,Zhu Lirong,Gao Yang,Xu Juan,Tang Yi,Wang Qiao,Yang Chunjiang
Abstract
As a non-invasive therapeutic, radiotherapy (RT) has been extensively used for solid tumor treatment. However, intratumoral hypoxia leads to severe RT resistance or failure. Moreover, damage from RT to normal tissues limits the application of high doses of radiation to eliminate cancer
cells. Therefore, simultaneously improving the curative efficacy while minimizing the side effects of RT is in pressing need. Hence, the purpose of this study is to use oxygen-based microbubbles (O2 @MBs) combined with ultrasound (US) targeting microbubble destruction (UTMD) technology
to overcome hypoxia prior to RT, evaluate the effects of O2 @MBs on contrast-enhanced ultrasound (CEUS) imaging enhancement, investigate the optimum delivery route of O2 @MBs, and evaluate the therapeutic efficacy. In this study, O2 @MBs were injected intravenously
or locally and the distribution of O2 @MBs in tumors or regions surrounding the tumors are compared by US imaging. The hypoxic status of tumors and their sensitivity to RT were investigated. Our findings suggest that O2 @MBs combined with UTMD can significantly enhance
the effects of RT. In addition, the in vivo biosafety assay demonstrates good biocompatibility, indicating great potential for clinical translation.
Publisher
American Scientific Publishers
Subject
Pharmaceutical Science,General Materials Science,Biomedical Engineering,Medicine (miscellaneous),Bioengineering
Cited by
4 articles.
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