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Programmable "triple attack" cancer therapy through in situ activation of disulfiram toxification combined with phototherapeutics.
He, Qiu-Ling; Jia, Ben-Xu; Luo, Zhi-Rong; Wang, Yu-Kun; Zhang, Bo; Liao, Tao; Guang, Xuan-Yi; Feng, Yan-Fang; Zhang, Zhen; Zhou, Bo.
Afiliação
  • He QL; School of Pharmacy, Guilin Medical University Guilin Guangxi 541199 People's Republic of China 1328468450@qq.com zb090900021@163.com.
  • Jia BX; School of Pharmacy, Guilin Medical University Guilin Guangxi 541199 People's Republic of China 1328468450@qq.com zb090900021@163.com.
  • Luo ZR; Scientific Research Center, Guilin Medical University Guilin Guangxi 541199 People's Republic of China.
  • Wang YK; College of Chemistry and Environmental Engineering, Baise University Baise Guangxi 533000 People's Republic of China.
  • Zhang B; Scientific Research Center, Guilin Medical University Guilin Guangxi 541199 People's Republic of China.
  • Liao T; Scientific Research Center, Guilin Medical University Guilin Guangxi 541199 People's Republic of China.
  • Guang XY; School of Pharmacy, Guilin Medical University Guilin Guangxi 541199 People's Republic of China 1328468450@qq.com zb090900021@163.com.
  • Feng YF; Scientific Research Center, Guilin Medical University Guilin Guangxi 541199 People's Republic of China.
  • Zhang Z; School of Pharmacy, Guilin Medical University Guilin Guangxi 541199 People's Republic of China 1328468450@qq.com zb090900021@163.com.
  • Zhou B; College of Intelligent Medicine and Biotechnology, Guilin Medical University Guilin Guangxi 541199 People's Republic of China zhenzhang@glmc.edu.cn.
Chem Sci ; 15(29): 11633-11642, 2024 Jul 24.
Article em En | MEDLINE | ID: mdl-39055020
ABSTRACT
Effectively and completely eliminating residual tumor cells is the key to reducing the risk of tumor metastasis and recurrence. Designing an "ideal" nanoplatform for programmable cancer therapy has great prospects for completely eliminating residual tumor cells. Herein, an intelligent nanoplatform of disulfiram (DSF)-loaded CuS-tannic acid nanohexahedrons (denoted as "DSF-CuS@TA") with thermal- and pH-sensitive degradation, as well as near-infrared (NIR-II) phototherapeutics properties, was constructed. And then, it was employed for in situ DSF toxification activation programmable "triple attack" cancer therapy. After accumulating in the tumor, DSF-CuS@TA first releases the loaded Cu(DTC)2, and simultaneously degrades and releases Cu2+ and DSF under mildly acidic stimulation to trigger instant intratumoral Cu(DTC)2 chelation, thereby achieving the "first strike." Next, under irradiation by a NIR-II laser, light energy is converted into heat to generate NIR-II photothermal therapy, thereby achieving the second strike. Subsequently, under thermal stimulation, DSF-CuS@TA degrades further, triggering the chelation of Cu(DTC)2 for a second time to reach the third strike. As expected, in vitro and in vivo studies showed that the synergistic integration of DSF-based programmed chemotherapy and NIR-II phototherapeutics could achieve effective tumor removal. Therefore, we propose a novel type of programmed therapy against cancer by designing a nanoplatform via "nontoxicity-to-toxicity" chemical chelation transformation.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article