BACKGROUND: Arterial thrombosis has been associated with a series of pathological conditions, and the discovery of arterial thrombosis inhibitor is of clinical importance. METHODS: By analyzing the pharmacophores of anti-platelet agents, thrombus targeting peptide and anti-thrombotic nano-systems 3S-1,2,3,4-tetrahydroisoquino-line-3-carbonyl-Thr-Ala-Arg-Gly-Asp(Val)-Val (IQCA-TAVV) was designed and prepared as a nano-scaled arterial thrombosis inhibitor. RESULTS: In vitro the nanoparticles of IQCA-TAVV were able to adhere onto the surface of activated platelets, attenuate activated platelets to extend pseudopodia and inhibit activated platelets to form aggregators. In vivo IQCA-TAVV targeted arterial thrombus, dose dependently inhibited arterial thrombosis with a 1 nmol/kg of minimal effective dose, and the activity waÅ1670 folds of that of aspirin. CONCLUSION: IQCA-TAVV represented the design, preparation and application of nanomedicine capable of adhering on the surface of activated platelets, attenuating platelet activation, targeting arterial thrombus and inhibiting arterial thrombosis.
Design and synthesis of nanoscaled IQCA-TAVV as a delivery system capable of antiplatelet activation, targeting arterial thrombus and releasing IQCA.
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作者:Wu Jianhui, Zhu Haimei, Yang Guodong, He Jianhong, Wang Yuji, Zhao Shurui, Zhang Xiaoyi, Gui Lin, Zhao Ming, Peng Shiqi
| 期刊: | International Journal of Nanomedicine | 影响因子: | 6.500 |
| 时间: | 2018 | 起止号: | 2018 Feb 26; 13:1139-1158 |
| doi: | 10.2147/IJN.S150205 | ||
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