State Key Laboratory of Applied Organic Chemistry, Key Laboratory of Nonferrous, Metal Chemistry and Resources Utilization of Gansu Province, Department of Chemistry, Lanzhou University, Lanzhou, 730000, People's Republic of China.
J Biomed Mater Res A. 2018 Feb;106(2):440-449. doi: 10.1002/jbm.a.36232. Epub 2017 Oct 20.
Thrombotic disease has become one of the leading causes of mortality among humans globally. Nattokinase (NK), a novel thrombolytic agent, has attracted the attention of researchers. However, NK is a serine protease that is vulnerable to environmental effects resulting in its inactivation. In this study, polylysine dendrimer (PLLD) was synthesized through divergence-convergence method, and a series of NK/PLLD nanocomposites with different molar ratio was prepared. In addition, NK was successfully incorporated into the cores of PLLD G4 through hydrogen bonds and van der Waals forces. In NK/PLLD nanocomposites, when the molar ratio of NK to PLLD is 1:30, a high relative enzyme activity level (up to 117%) was achieved and was more stable at different temperatures and pH than free NK. In in vitro thrombolysis experiment, compared with free NK, NK/PLLD nanocomposites could control the release of NK. The thrombolysis rate of NK/PLLD nanocomposites reached 50% at 12 h, which can effectively avoid other complications such as hemorrhage. Interestingly, NK/PLLD nanocomposites with positive charge can penetrate into the negatively charged thrombus through electrostatic interaction, thus providing a good thrombolytic effect. Hemolysis and MTT experiments show that PLLD nanomaterials can serve as ideal carriers of protein drugs. © 2017 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 106A: 440-449, 2018.
血栓性疾病已成为全球人类死亡的主要原因之一。纳豆激酶(NK)作为一种新型溶栓剂,引起了研究人员的关注。然而,NK 是一种丝氨酸蛋白酶,易受环境影响而失活。本研究采用发散-收敛法合成了聚赖氨酸树状大分子(PLLD),并制备了一系列不同摩尔比的 NK/PLLD 纳米复合材料。此外,NK 成功地通过氢键和范德华力结合到 PLLD G4 的核中。在 NK/PLLD 纳米复合材料中,当 NK 与 PLLD 的摩尔比为 1:30 时,相对酶活力水平较高(高达 117%),且在不同温度和 pH 值下比游离 NK 更稳定。在体外溶栓实验中,与游离 NK 相比,NK/PLLD 纳米复合材料能够控制 NK 的释放。NK/PLLD 纳米复合材料的溶栓率在 12 h 时达到 50%,可以有效避免出血等其他并发症。有趣的是,带正电荷的 NK/PLLD 纳米复合材料可以通过静电相互作用穿透带负电荷的血栓,从而提供良好的溶栓效果。溶血和 MTT 实验表明,PLLD 纳米材料可以作为蛋白质类药物的理想载体。 © 2017 Wiley Periodicals, Inc. J 生物材料 A 部分:106A:440-449,2018.