Chen Jiawen, Chen Kexin, Li Qinglin, Dong Guofa, Ai Jie, Liu Haiqing, Chen Qinhui
College of Chemistry and Materials Science, Fujian Normal University, Fuzhou 350007, People's Republic of China.
Fujian Key Laboratory of Functional Marine Sensing Materials, Minjiang University, Fuzhou 350108, People's Republic of China.
ACS Appl Bio Mater. 2020 Dec 21;3(12):9054-9064. doi: 10.1021/acsabm.0c01267. Epub 2020 Dec 7.
Janus particles with obvious chemical compartition can perform their functions independently, so they have attracted much attention in biomedical materials. Herein, a mesoporous silica/silver Janus nanoparticle modified with cardanol (C-MSN@Ag) was designed and synthesized redox and click chemical reactions and was further evaluated as a highly efficient hemostatic dressing. This Janus structure endowed C-MSN@Ag with both prominent hemostatic and antibacterial performance. The hemostatic time of C-MSN@Ag on rat liver laceration was up to 40% shorter than that of MSN and MSN@Ag because of adhesion of phenolic compounds on the tissue and the blocking effect of the hydrophobic alkyl chains from cardanol. Besides, C-MSN@Ag could promote coagulation by forming a three-dimensional network with fibrin more quickly than MSN and MSN@Ag. Additionally, due to the released silver ions and phenolic hydroxyl groups of cardanol, C-MSN@Ag exhibited a broad-spectrum antibacterial rate (∼99%) against both and . C-MSN@Ag also possessed non-cytotoxicity. This work not only provides a way for the fabrication of silica-based Janus hemostatic agents by the atom-economical click reaction but also gives a direction for the application of the sustainable naturally occurring cardanol.
具有明显化学分区的Janus粒子能够独立发挥其功能,因此在生物医学材料领域备受关注。在此,通过氧化还原反应和点击化学反应设计并合成了一种用腰果酚修饰的介孔二氧化硅/银Janus纳米粒子(C-MSN@Ag),并进一步将其评估为一种高效的止血敷料。这种Janus结构赋予了C-MSN@Ag显著的止血和抗菌性能。由于酚类化合物在组织上的粘附以及腰果酚疏水烷基链的阻断作用,C-MSN@Ag在大鼠肝脏撕裂伤上的止血时间比MSN和MSN@Ag缩短了40%。此外,C-MSN@Ag能够比MSN和MSN@Ag更快地与纤维蛋白形成三维网络,从而促进凝血。此外,由于释放的银离子和腰果酚的酚羟基,C-MSN@Ag对革兰氏阳性菌和革兰氏阴性菌均表现出广谱抗菌率(约99%)。C-MSN@Ag还具有无细胞毒性。这项工作不仅为通过原子经济的点击反应制备基于二氧化硅的Janus止血剂提供了一种方法,也为可持续的天然腰果酚的应用指明了方向。