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Ultrasound-responsive thrombus treatment with zinc-stabilized gelatin nano-complexes of tissue-type plasminogen activator.

机译:组织型纤溶酶原激活物的锌稳定明胶纳米复合物对超声响应性血栓的治疗。

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摘要

This study is undertaken to design zinc-stabilized gelatin nano-complexes of tissue-type plasminogen activator (t-PA) for thrombolytic therapy where the t-PA activity can be recovered in the blood circulation upon ultrasound irradiation. Various molecular weights of gelatin were complexed with t-PA by their simply mixing in aqueous solution. Then, zinc acetate, calcium acetate or magnesium acetate was added to form nano-sized gelatin-t-PA complexes. The complexes had the apparent molecular size of about 100 nm. When zinc ions were added to the gelatin-t-PA complexes, the t-PA activity was suppressed most strongly to 57% of the original, free t-PA activity. Upon ultrasound exposure in vitro, the t-PA activity was fully recovered. A cell culture experiment with L929 fibroblasts demonstrated no cytotoxicity of complexes at the concentration used for the in vivo experiment. The half-life of t-PA in the blood circulation prolonged by the complexation with gelatin and zinc ions. The zinc-stabilized t-PA-gelatin complex is a promising t-PA delivery system which can manipulate the thrombolytic activity by the local ultrasound irradiation.
机译:进行这项研究以设计组织型纤溶酶原激活物(t-PA)的锌稳定明胶纳米复合物,用于溶栓治疗,在超声照射下可在血液循环中恢复t-PA活性。通过简单地将各种分子量的明胶与t-PA混合,使其在水溶液中混合。然后,添加乙酸锌,乙酸钙或乙酸镁以形成纳米尺寸的明胶-t-PA复合物。该配合物的表观分子大小约为100微米。当将锌离子添加到明胶-t-PA络合物中时,t-PA活性被最大程度地抑制到原始的游离t-PA活性的57%。在体外超声暴露后,t-PA活性被完全恢复。用L929成纤维细胞进行的细胞培养实验表明,在用于体内实验的浓度下,复合物没有细胞毒性。与明胶和锌离子络合可延长t-PA在血液循环中的半衰期。锌稳定的t-PA-明胶复合物是一种很有前途的t-PA输送系统,可以通过局部超声照射控制溶栓活性。

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