Department of Chemistry and Centre for Catalysis Research and Innovation, University of Ottawa, 10 Marie Curie, Ottawa, ON K1N 6N5, Canada.
Biomaterials. 2012 Jun;33(19):4947-56. doi: 10.1016/j.biomaterials.2012.03.033. Epub 2012 Apr 10.
Spherical 3.5 nm diameter silver nanoparticles (AgNP) stabilized in type I collagen (AgNP@collagen) were prepared in minutes (5-15 min) at room temperature by a photochemical method initiated by UVA irradiation of a water-soluble non-toxic benzoin. This biocomposite was examined to evaluate its biocompatibility and its anti-bacterial properties and showed remarkable properties. Thus, while keratinocytes and fibroblasts were not affected by AgNP@collagen, it was bactericidal against Bacillus megaterium and E. coli but only bacteriostatic against S. epidermidis. In particular, the bactericidal properties displayed by AgNP@collagen were proven to be due to AgNP in AgNP@collagen, rather than to released silver ions, since equimolar concentrations of Ag are about four times less active than AgNP@collagen based on total Ag content. This new biocomposite was stable over a remarkable range of NaCl, phosphate, and 2-(N-morpholino)ethanesulfonic acid concentrations and for over one month at 4 °C. Circular dichroism studies show that the conformation of collagen in AgNP@collagen remains intact. Finally, we have compared the properties of AgNP@collagen with a similar biocomposite prepared using α-poly-L-Lysine and also with citrate stabilized AgNP; neither of these materials showed comparable biocompatibility, stability, or anti-bacterial activity.
采用光化学法,通过水溶性无毒安息香的 UVA 辐射引发,在室温下几分钟(5-15 分钟)内制备出直径为 3.5nm 的球形银纳米粒子(AgNP)稳定的 I 型胶原蛋白(AgNP@collagen)。该生物复合材料经过了生物相容性和抗菌性能的评估,表现出了显著的性能。因此,虽然 AgNP@collagen 对角质形成细胞和成纤维细胞没有影响,但它对巨大芽孢杆菌和大肠杆菌具有杀菌作用,而对表皮葡萄球菌仅具有抑菌作用。特别是,AgNP@collagen 所显示的杀菌性能被证明是由于 AgNP@collagen 中的 AgNP 所致,而不是由于释放出的银离子所致,因为基于总 Ag 含量,等摩尔浓度的 Ag 的活性比 AgNP@collagen 低约四倍。这种新的生物复合材料在相当宽的 NaCl、磷酸盐和 2-(N-吗啉)乙磺酸浓度范围内以及在 4°C 下超过一个月的时间内都很稳定。圆二色性研究表明,AgNP@collagen 中胶原蛋白的构象保持完整。最后,我们比较了 AgNP@collagen 与使用α-聚-L-赖氨酸制备的类似生物复合材料以及与柠檬酸稳定的 AgNP 的性能;这些材料都没有表现出相当的生物相容性、稳定性或抗菌活性。