生物正交化学
四嗪
化学
体内
一氧化氮
斑马鱼
生物物理学
脂质体
生物化学
点击化学
组合化学
有机化学
生物
基因
生物技术
作者
Jianbing Wu,Tao Sun,Chenxi Yang,Tian Lv,Yu‐Yang Bi,Yue Xu,Yong Ling,Jun Zhao,Rigang Cong,Yihua Zhang,Jianhua Wang,Hao Wen,Hu‐Lin Jiang,Fei Li,Zhangjian Huang
摘要
Bond cleavage bioorthogonal chemistry has been widely employed to restore or activate proteins or prodrugs. Nitric oxide (NO), as a free radical molecule, has joined the clinical arena of cancer therapy, since high levels of NO could produce a cancer cell growth inhibitory effect. However, the spatiotemporal controlled release of NO remains a great challenge, and bioorthogonal chemistry may open a new window. Herein, we described a class of O2-3-isocyanopropyl diazeniumdiolates 3a-f as new bioorthogonal NO precursors, which can be effectively uncaged via tetrazine-mediated bond cleavage reactions to liberate NO and acrolein in living cancer cells, exhibiting potent antiproliferative activity. Furthermore, 3a and tetrazine BTZ were respectively encapsulated into two liposomes. It was found that simultaneous administrations of the two liposomes could specifically release large amounts of NO in the implanted cancer cells in zebrafish, thus generating potent tumor suppression activity in vivo. Our findings indicate that the TZ-labile NO precursors could serve to expand the NO-based smart therapeutics and the scope of bioorthogonal chemistry utility in vivo in the near future.
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