State Key Laboratory of Polymer Physics and Chemistry, Changchun Institute of Applied Chemistry , Chinese Academy of Sciences , Changchun 130022 , PR China.
University of Science and Technology of China , Hefei , Anhui 230026 , PR China.
ACS Appl Mater Interfaces. 2019 Jul 17;11(28):25556-25568. doi: 10.1021/acsami.9b06281. Epub 2019 Jul 2.
Hemocompatibility and antibacterial property are essential for blood contact devices and medical intervention materials. In this study, positively charged quaternary ammonium (QAC) and hydrophobic benzyl group (OBzl) were introduced onto hydrophilic lysine methacrylamide (LysAAm) to obtain two monomers LysAAm-QAC and LysAAm-OBzl, respectively. The structure characterizations of LysAAm-QAC and LysAAm-OBzl were determined by proton nuclear magnetic resonance, Fourier transform infrared spectroscopy, and time-of-flight secondary ion mass spectrometry. LysAAm-QAC and LysAAm-OBzl were cografted onto a silicon wafer with different feeding ratios to construct antifouling and antibacterial properties. The results of fibrinogen adsorption and platelet adhesion proved that the modified sample with the feeding ratio of 3:7 had superior antifouling property. Furthermore, an antimicrobial test with both 2 and 24 h indicated that the modified sample with the feeding ratio of 3:7 had antibacterial ability. The antifouling property was provided by the high surface coverage of LysAAm-QAC and LysAAm-OBzl (91.49%) and the hydrophilic main structure LysAAm on LysAAm-QAC and LysAAm-OBzl (water contact angle was 43.6°). The antibacterial property was improved with the proportion of LysAAm-OBzl (43.6-58.5%) because the increasing hydrophobic OBzl enhanced the ability to insert into the membrane of bacteria and raise the bactericidal efficiency. In application, LysAAm-QAC and LysAAm-OBzl with the feeding ratio of 3:7 were grafted onto the surface of poly(styrene--(ethylene--butylene)--styrene), and a bifunctional surface with antifouling and antibacterial properties was fabricated, which had promising applications in blood contact devices and medical intervention materials.
血液相容性和抗菌性是与血液接触的设备和医疗介入材料所必需的。在这项研究中,将带正电荷的季铵盐(QAC)和疏水性苄基(OBzl)引入亲水性赖氨酸甲基丙烯酰胺(LysAAm),分别得到两种单体 LysAAm-QAC 和 LysAAm-OBzl。通过质子核磁共振、傅里叶变换红外光谱和飞行时间二次离子质谱对 LysAAm-QAC 和 LysAAm-OBzl 的结构进行了表征。LysAAm-QAC 和 LysAAm-OBzl 以不同的进料比共聚到硅片上,以构建抗污和抗菌性能。纤维蛋白原吸附和血小板黏附的结果表明,进料比为 3:7 的改性样品具有优异的抗污性能。此外,进行了 2 小时和 24 小时的抗菌试验,结果表明进料比为 3:7 的改性样品具有抗菌能力。抗污性能是由 LysAAm-QAC 和 LysAAm-OBzl 的高表面覆盖率(91.49%)和 LysAAm-QAC 和 LysAAm-OBzl 上的亲水主链 LysAAm(水接触角为 43.6°)提供的。抗菌性能通过 LysAAm-OBzl(43.6-58.5%)的比例提高,因为疏水性 OBzl 的增加增强了插入细菌膜的能力,并提高了杀菌效率。在应用中,将 LysAAm-QAC 和 LysAAm-OBzl 以 3:7 的进料比接枝到聚苯乙烯-(乙烯-丁烯)-聚苯乙烯的表面上,制备了具有抗污和抗菌性能的双功能表面,在与血液接触的设备和医疗介入材料中有很好的应用前景。