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钙离子偶联的不同聚合度多聚磷酸盐用于控制出血。

Calcium Ion-Coupled Polyphosphates with Different Degrees of Polymerization for Bleeding Control.

机构信息

Engineering Research Center for Biomedical Materials of Ministry of Education, East China University of Science and Technology, Shanghai 200237, P. R. China.

Key Laboratory for Ultrafine Materials of Ministry of Education, School of Materials Science and Engineering, East China University of Science and Technology, Shanghai 200237, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 21;16(33):43244-43256. doi: 10.1021/acsami.4c06698. Epub 2024 Aug 13.

Abstract

The development of efficient hemostatic materials is crucial for achieving rapid hemorrhage control and effective wound healing. Inorganic polyphosphate (polyP) is recognized as an effective modulator of the blood coagulation process. However, the specific effect of polyP chain length on coagulation is not yet fully understood. Furthermore, calcium ions (Ca) are essential for the coagulation process, promoting multiple enzyme-catalyzed reactions within the coagulation cascade. Hence, calcium ion-coupled polyphosphate powders with three different degrees of polymerization (CaPP-, = 20, 50, and 1500) are synthesized by an ion-exchange reaction. CaPP exhibits a crystalline phase at a low polymerization degree and transitions to an amorphous phase as the polymerization degree increases. Notably, the addition of Ca enhances the wettability of polyP, and CaPP promotes hemostasis, with varying degrees of effectiveness related to chain length. CaPP-50 exhibits the most promising hemostatic performance, with the lowest blood clotting index (BCI, 12.1 ± 0.7%) and the shortest clotting time (302.0 ± 10.5 s). By combining Ca with polyP of medium-chain length, CaPP-50 demonstrates an enhanced ability to accelerate the adhesion and activation of blood cells, initiate the intrinsic coagulation cascade, and form a stable blood clot, outperforming both CaPP-20 and CaPP-1500. The hemostatic efficacy of CaPP-50 is further validated using rat liver bleeding and femoral artery puncture models. CaPP-50 is proven to possess hemostatic properties comparable to those of commercial calcium-based zeolite hemostatic powder and superior to kaolin. In addition, CaPP-50 exhibits excellent biocompatibility and long-term storage stability. These results suggest that CaPP-50 has significant clinical and commercial potential as an active inorganic hemostatic agent for rapid control of bleeding.

摘要

高效止血材料的开发对于实现快速止血和有效伤口愈合至关重要。无机多聚磷酸盐(polyP)被认为是血液凝固过程的有效调节剂。然而,polyP 链长对凝血的具体影响尚不完全清楚。此外,钙离子(Ca)是凝血过程所必需的,它促进凝血级联中多种酶促反应。因此,通过离子交换反应合成了三种不同聚合度(polyP 的聚合度 = 20、50 和 1500)的钙离子耦联多聚磷酸盐粉末(CaPP-)。低聚合度的 CaPP 呈现结晶相,随着聚合度的增加转变为无定形相。值得注意的是,Ca 的添加提高了 polyP 的润湿性,并且 CaPP 促进止血,其有效性与链长有关。CaPP-50 表现出最有前途的止血性能,其凝血指数(BCI,12.1 ± 0.7%)最低,凝血时间最短(302.0 ± 10.5 s)。通过将 Ca 与中链长的 polyP 结合,CaPP-50 表现出增强的加速血细胞黏附和激活、启动内在凝血级联以及形成稳定血凝块的能力,优于 CaPP-20 和 CaPP-1500。使用大鼠肝出血和股动脉穿刺模型进一步验证了 CaPP-50 的止血效果。证明 CaPP-50 具有与商业钙基沸石止血粉相当的止血性能,优于高岭土。此外,CaPP-50 具有优异的生物相容性和长期储存稳定性。这些结果表明,CaPP-50 作为一种用于快速控制出血的主动无机止血剂具有重要的临床和商业潜力。

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