Liu Chengkun, Shi Zhuang, Sun Haiyan, Zhao Lili, Wang Xiaoqiang, Huang Fang
State Key Laboratory of Heavy Oil Processing, College of Chemical Engineering, China University of Petroleum (East China), Qingdao, China.
State Key Laboratory of Bioactive Seaweed Substances, Qingdao Brightmoon Seaweed Group Co Ltd, Qingdao, China.
J Biomed Mater Res B Appl Biomater. 2021 Aug;109(8):1116-1123. doi: 10.1002/jbm.b.34774. Epub 2020 Dec 23.
Uncontrolled hemorrhage accounts for a significant proportion of annual mortality worldwide. The development of bioinspired hemostatic composites can effectively reduce hemorrhage and related deaths. This work aims to develop an efficient hemostatic agent by incorporating tissue factor (TF) integrated liposomes and collagen, which are capable of augmenting different inherent hemostatic mechanisms, into hemostasis-stimulating alginate matrix. The composite of TF, collagen and alginate (TCA) was made into hydrogel beads with a diameter range of 2.5-3.5 mm, followed by electron microscopy, infrared spectroscopy, rheological, and swelling characterization to confirm its composition and hydrogel nature. When the TCA beads were introduced into simulated body fluid, a controlled release of the loaded TF-liposomes was observed, which also accelerated with the increase of temperature, obtaining intact free proteoliposomes as demonstrated by fluorescence measurement. It is further seen that TCA beads induced the coagulation of whole rabbit blood in about 4.5 min, as compared to ~14.4 min for the control with only recalcified blood. The lipidated TF, collagen and alginate in TCA beads showed a positive synergistic effect on coagulation, while among them a decreasing procoagulant effect was observed. Finally, we demonstrated by a live/dead cell assay that TCA particles had undetectable cytotoxicity. Thus, the TCA hydrogel macrobeads may offer a potential platform for the development of potent hemostatic agents.
全球范围内,失控性出血在每年的死亡率中占很大比例。受生物启发的止血复合材料的开发可以有效减少出血及相关死亡。这项工作旨在通过将能够增强不同固有止血机制的组织因子(TF)整合脂质体和胶原蛋白纳入刺激止血的藻酸盐基质中,来开发一种高效的止血剂。将TF、胶原蛋白和藻酸盐(TCA)的复合材料制成直径范围为2.5 - 3.5毫米的水凝胶珠,随后进行电子显微镜、红外光谱、流变学和溶胀表征,以确认其组成和水凝胶性质。当将TCA珠引入模拟体液中时,观察到负载的TF脂质体的控释,其也随着温度的升高而加速,通过荧光测量证明获得了完整的游离蛋白脂质体。进一步观察到,TCA珠在约4.5分钟内诱导全兔血凝固,而仅重新钙化血液的对照则需要约14.4分钟。TCA珠中的脂质化TF、胶原蛋白和藻酸盐对凝血显示出正协同作用,而其中观察到促凝作用降低。最后,我们通过活/死细胞测定法证明TCA颗粒具有不可检测的细胞毒性。因此,TCA水凝胶大珠可能为开发有效的止血剂提供一个潜在的平台。