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通过 LbL 自组装和贻贝启发的后交联相结合实现的无基质支撑的鲁棒性和肝素模拟水凝胶薄膜涂层。

Substrate-Independent Robust and Heparin-Mimetic Hydrogel Thin Film Coating via Combined LbL Self-Assembly and Mussel-Inspired Post-Cross-linking.

机构信息

College of Polymer Science and Engineering, State Key Laboratory of Polymer Materials Engineering and ‡National Engineering Research Center for Biomaterials, Sichuan University , Chengdu 610065, China.

出版信息

ACS Appl Mater Interfaces. 2015 Dec 2;7(47):26050-62. doi: 10.1021/acsami.5b09634. Epub 2015 Nov 17.

Abstract

In this work, we designed a robust and heparin-mimetic hydrogel thin film coating via combined layer-by-layer (LbL) self-assembly and mussel-inspired post-cross-linking. Dopamine-grafted heparin-like/-mimetic polymers (DA-g-HepLP) with abundant carboxylic and sulfonic groups were synthesized by the conjugation of adhesive molecule, DA, which exhibited substrate-independent adhesive affinity to various solid surfaces because of the formation of irreversible covalent bonds. The hydrogel thin film coated substrates were prepared by a three-step reaction: First, the substrates were coated with DA-g-HepLP to generate negatively charged surfaces. Then, multilayers were obtained via LbL coating of chitosan and the DA-g-HepLP. Finally, the noncovalent multilayers were oxidatively cross-linked by NaIO4. Surface ATR-FTIR and XPS spectra confirmed the successful fabrication of the hydrogel thin film coatings onto membrane substrates; SEM images revealed that the substrate-independent coatings owned 3D porous morphology. The soaking tests in highly alkaline, acid, and concentrated salt solutions indicated that the cross-linked hydrogel thin film coatings owned high chemical resistance. In comparison, the soaking tests in physiological solution indicated that the cross-linked hydrogel coatings owned excellent long-term stability. The live/dead cell staining and morphology observations of the adhered cells revealed that the heparin-mimetic hydrogel thin film coated substrates had low cell toxicity and high promotion ability for cell proliferation. Furthermore, systematic in vitro investigations of protein adsorption, platelet adhesion, blood clotting, and blood-related complement activation confirmed that the hydrogel film coated substrates showed excellent hemocompatibility. Both the results of inhibition zone and bactericidal activity indicated that the gentamycin sulfate loaded hydrogel thin films had significant inhibition capability toward both Escherichia coli and Staphylococcus aureus bacteria. Combined the above advantages, it is believed that the designed heparin-mimetic hydrogel thin films may show high potential for applications in various biological and clinical fields, such as long-term hemocompatible and drug-loading materials for implants.

摘要

在这项工作中,我们通过层层(LbL)自组装和贻贝启发的后交联设计了一种稳健的肝素模拟水凝胶薄膜涂层。通过将粘附分子多巴胺(DA)接枝到肝素类似物/-模拟物聚合物(DA-g-HepLP)上,合成了具有丰富羧酸和磺酸基团的 DA-g-HepLP。由于形成了不可逆的共价键,DA 展示了对各种固体表面的基底独立的粘附亲和力。水凝胶薄膜涂层基底通过三步反应制备:首先,将基底涂覆 DA-g-HepLP 以生成带负电荷的表面。然后,通过壳聚糖和 DA-g-HepLP 的 LbL 涂层获得多层。最后,通过 NaIO4 氧化交联非共价多层。ATR-FTIR 和 XPS 光谱表面证实了水凝胶薄膜涂层成功地制备到膜基底上;SEM 图像表明,基底独立的涂层具有 3D 多孔形态。在高碱性、酸性和高浓度盐溶液中的浸泡测试表明,交联水凝胶薄膜涂层具有高耐化学性。相比之下,在生理溶液中的浸泡测试表明,交联水凝胶涂层具有优异的长期稳定性。粘附细胞的死活细胞染色和形态观察表明,肝素模拟水凝胶薄膜涂层基底具有低细胞毒性和高促进细胞增殖的能力。此外,对蛋白质吸附、血小板粘附、血液凝固和血液相关补体激活的系统体外研究证实,水凝胶薄膜涂层基底具有优异的血液相容性。硫酸庆大霉素载药水凝胶薄膜的抑菌圈和杀菌活性结果均表明,其对大肠杆菌和金黄色葡萄球菌均具有显著的抑制作用。结合上述优点,我们相信设计的肝素模拟水凝胶薄膜在各种生物和临床领域中具有很高的应用潜力,例如用于植入物的长期血液相容性和药物负载材料。

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