Cobalt Ferrite‐Gossypol Coordination Nanoagents with High Photothermal Conversion Efficiency Sensitizing Chemotherapy against Bcl‐2 to Induce Tumor Apoptosis

Author:

Zeng Yun12ORCID,Liu Huifang12,Ma Jingwen3ORCID,Li Ke4,Chang Peng12,Wang Chenying12,Li Lei3,Chen Dan12,Liu Changhu5,Li Na3,Zhan Wenhua5,Zhan Yonghua12ORCID

Affiliation:

1. School of Life Science and Technology Xidian University and Engineering Research Center of Molecular and Neuro Imaging Ministry of Education Xi'an Shaanxi 710126 P. R. China

2. International Joint Research Center for Advanced Medical Imaging and Intelligent Diagnosis and Treatment and Xi'an Key Laboratory of Intelligent Sensing and Regulation of trans‐Scale Life Information School of Life Science and Technology Xidian University Xi'an Shaanxi 710126 P. R. China

3. Radiology Department CT and MRI Room Ninth Hospital of Xi'an Xi'an Shaanxi 710054 P. R. China

4. Xi'an Key Laboratory for Prevention and Treatment of Common Aging Diseases Translational and Research Centre for Prevention and Therapy of Chronic Disease Institute of Basic and Translational Medicine Xi'an Medical University Xi'an Shaanxi 710021 P. R. China

5. Department of Radiation Oncology General Hospital of Ningxia Medical University Yinchuan Ningxia 750004 P. R. China

Abstract

AbstractGossypol is a chemotherapeutic drug that can inhibit the anti‐apoptotic protein Bcl‐2, but the existing gossypol‐related nanocarriers cannot well solve the problem of chemotherapy resistance. Based on the observation that gossypol becomes black upon Fe3+ coordination, it is hypothesized that encasing gossypol in glyceryl monooleate (GMO) and making it coordinate cobalt ferrite will not only improve its photothermal conversion efficiency (PCE) but also help it enter tumor cells. As the drug loading content and drug encapsulation efficiency of gossypol are 10.67% (w/w) and 96.20%, the PCE of cobalt ferrite rises from 14.71% to 36.00%. The synergistic therapeutic effect finally induces tumor apoptosis with a tumor inhibition rate of 96.56%, which is 2.99 and 1.47 times higher than chemotherapy or photothermal therapy (PTT) alone. PTT generated by the GMO nanocarriers under the irradiation of 808 nm laser can weaken tumor hypoxia, thereby assisting gossypol to inhibit Bcl‐2. In addition, the efficacy of nanocarriers is also evaluated through T2‐weighted magnetic resonance imaging. Observations of gossypol‐induced apoptosis in tissue slices provide definitive proof of chemotherapy sensitization, indicating that such coordination nanocarriers can be used as an effective preclinical agent to enhance chemotherapy.

Funder

National Natural Science Foundation of China

Natural Science Basic Research Program of Shaanxi Province

Fundamental Research Funds for the Central Universities

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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