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王大权

硕士生导师
职称:副教授
教师姓名:王大权
电子邮箱:
学历:博士研究生毕业
性别:男
学位:博士
在职信息:在职
所属院系:化学学院
学科:化学
论文成果
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One-pot synthesis of acid-degradable polyphosphazene prodrugs for efficient tumor chemotherapy
发布时间:2025-04-30    点击次数:

发布时间:2025-04-30

论文名称:One-pot synthesis of acid-degradable polyphosphazene prodrugs for efficient tumor chemotherapy

发表刊物:Journal of Materials Chemistry B

摘要:In order to improve the therapeutic efficacy and reduce the side effects of anticancer drugs, stimuli-responsive and biodegradable drug-delivery systems have attracted significant attention in the past three decades. Herein, we report acid-responsive and degradable polyphosphazene nano-prodrugs synthesized via a one-pot cross-linking reaction of 4-hydroxybenzhydrazide-modified doxorubicin (BMD) with hexachlorocyclotriphosphazene (HCCP). The phenol groups in the as-synthesized BMD exhibited a high reactivity towards HCCP and in the presence of a basic catalyst the determined drug loading ratio of the nanoparticles, denoted as HCCP-BMD, was up to 85.64%. Interestingly, the hydrazone bonds in BMD and the skeleton of polyphosphazene tended to break down in acidic environments, and the antitumor active drug DOX was found to be released in an acidic tumor microenvironment (pH ∼ 6.8 for extracellular, and pH ∼ 5.0 for endosomes and lysosomes). The resulting HCCP-BMD prodrug exhibited high cytotoxicity to HeLa cells and could effectively suppress tumor growth, with negligible damage to normal tissues. We therefore believe that this acid- degradable polyphosphazene prodrug may offer great potential in various biomedical fields.

合写作者:Na Zhou, Ning Zhang, Zhe Zhi, Xunan Jing, Daomeng Liu, Yongping Shao, Daquan Wang* and Lingjie Meng*

卷号:Advance Article

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发表时间:2020-10-26