Affiliation:
1. Department of Geriatric Cardiology General Hospital of the Southern Theatre Command People's Liberation Army (PLA) Guangzhou 510010 P. R. China
2. School of Chemistry and Chemical Engineering Guangdong Pharmaceutical University Guangzhou 510006 P. R. China
3. Guangdong Provincial Key Laboratory of Molecular Target & Clinical Pharmacology the NMPA and State Key Laboratory of Respiratory Disease School of Pharmaceutical Sciences and the Fifth Affiliated Hospital Guangzhou Medical University Guangzhou 511436 P. R. China
4. Biomaterials Research Center School of Biomedical Engineering Southern Medical University Guangzhou 510515 P. R. China
Abstract
AbstractTumor cells resist oxidative damage and apoptosis by activating defense mechanisms. Herein, a self‐delivery biomedicine (designated as BSC) is developed by the self‐assembly of Bortezomib (BTZ), Sabutoclax (Sab) and Chlorin e6 (Ce6). Interestingly, BTZ can be coordinated with Sab to promote the assembly of uniform ternary biomedicine through non‐covalent intermolecular interactions. Moreover, BTZ as a proteasome inhibitor can prevent tumor cells from scavenging damaged proteins to reduce their oxidative resistance. Sab can downregulate B‐cell lymphoma 2 (Bcl‐2) to decrease the antiapoptotic protein. Both the proteasome and Bcl‐2 inhibitions contribute to increasing cell apoptosis and amplifying photodynamic therapy (PDT) efficacy of Ce6. Encouragingly, carrier‐free BSC receives all biological activities of these assembly elements, including photodynamic performance as well as inhibitory capabilities of proteasome and Bcl‐2. Besides, BSC has a preferable cellular uptake ability and tumor retention property, which increase the drug delivery efficiency and bioavailability. In vitro and in vivo research demonstrate the superior PDT efficiency of BSC by proteasome and Bcl‐2 inhibitions. Of special note, the coordination‐driven self‐assembly of BSC is pH‐responsive, which can be disassembled for controlled drug release upon tumor acidic microenvironment. This study will expand the applicability of self‐delivery nanomedicine with sophisticated mechanisms for tumor treatment.
Subject
Pharmaceutical Science,Biomedical Engineering,Biomaterials
Cited by
3 articles.
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