Li Jing, Han Jichang, Sun Qingjie, Wang Yanan, Mu Yuzhi, Zhang Kaichao, Dou Xiaoyu, Kong Ming, Chen Xiguang, Feng Chao
College of Marine Life Science, Ocean University of China, 5# Yushan Road, Qingdao 266003, China.
J Mater Chem B. 2018 Dec 21;6(47):7834-7841. doi: 10.1039/c8tb00667a. Epub 2018 Nov 23.
In this study, we reported calcium-doped biosilica (Ca-biosilica) with multiple hemostatic properties derived from Coscinodiscus sp. frustule. The incorporation of calcium into the diatom frustule was achieved by a simple biosynthetic route through feeding the diatoms with calcium chloride, which was confirmed by calcein staining and EDXS. Ca-Biosilica exhibited an efficient water absorption ratio (36.36 ± 1.44 times its own weight of liquid), superior compatibility (hemolysis ratio <5%, no cytotoxicity against MEFs) and excellent hemostatic effect (203.67 ± 15.63 s at 5 mg mL; 145.01 ± 20.41 s at 10 mg mL). The intrinsic blood coagulation pathway was clearly strengthened by the unique interface of Ca-biosilica, which was rich in silanol groups and calcium, leading to fast hemorrhage control in rat-tail amputation model. The clotting time of Ca-biosilica was 88.34 ± 28.54 s, which was similar to that of Quickclot® zeolite, whereas only one-third blood loss by weight (0.21 ± 0.16 g) was found in Ca-biosilica-treated group compared with that of the Quickclot® zeolite group (0.63 ± 0.09 g). The results prove that Ca-biosilica is promising as a quick hemostatic agent due to its effectiveness, excellent biocompatibility and simple and environmentally friendly preparation process.
在本研究中,我们报道了具有源自星杆藻属硅藻外壳的多种止血特性的钙掺杂生物二氧化硅(钙生物二氧化硅)。通过向硅藻投喂氯化钙,经简单的生物合成途径实现了钙掺入硅藻外壳,这通过钙黄绿素染色和能谱仪(EDXS)得到证实。钙生物二氧化硅表现出高效的吸水率(吸收的液体重量是其自身重量的36.36±1.44倍)、优异的相容性(溶血率<5%,对小鼠胚胎成纤维细胞无细胞毒性)和出色的止血效果(5mg/mL时为203.67±15.63秒;10mg/mL时为145.01±20.41秒)。钙生物二氧化硅独特的界面(富含硅醇基团和钙)显著增强了内源性凝血途径,从而在大鼠尾部截肢模型中实现快速止血。钙生物二氧化硅的凝血时间为88.34±28.54秒,与速凝沸石®相似,而与速凝沸石®组(0.63±0.09克)相比,钙生物二氧化硅治疗组按重量计的失血量仅为其三分之一(0.21±0.16克)。结果证明,钙生物二氧化硅因其有效性、优异的生物相容性以及简单且环保的制备工艺,有望成为一种快速止血剂。