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Minimally Invasive Hemostatic Materials: Tackling a Dilemma of Fluidity and Adhesion by Photopolymerization in situ

机译:微创止血材料:通过光聚合原位解决流动性和粘附性的难题

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摘要

Hemostasis in vivo is a key to success in minimally invasive surgery (MIS). However, solid hemostatic materials cannot pass through the sheath tube of the MIS apparatus, while liquid ones are restricted by their low adhesion, which leads to them peeling off of tissue. To tackle the dilemma of fluidity and adhesion, a formulation containing a multifunctional sucrose allyl ether (SAE) monomer and an alpha-hydroxyketone liquid photoinitiator (HMPP) was applied as a lead hemostatic material for MIS. Real-time infrared results showed that SAE initiated by HMPP can rapidly polymerize into a transparent crosslinking membrane. Quantum chemistry showed that this occurs via a free radical addition reaction mechanism. Thermodynamic properties, such as reaction driving force and enthalpy change, were similar to those for a corresponding small molecular analogue, allyl methyl ether (AME), but the addition rate was lower than that for AME. The CC50 values of SAE and HMPP were also obtained by cell experiments. A hemostasis experiment in vivo was performed by comparing the formulation with chitosan and a traditional Chinese medicine (Yunnan Baiyao powder). The result showed that the formulation had a competitive advantage for use in MIS.
机译:体内止血是微创手术(MIS)成功的关键。但是,固体止血材料不能通过MIS设备的鞘管,而液体止血材料由于其低粘附力而受到限制,这导致它们从组织上剥离。为了解决流动性和粘附性的难题,将包含多功能蔗糖烯丙基醚(SAE)单体和α-羟基酮液体光引发剂(HMPP)的制剂用作MIS的止血材料。实时红外结果表明,由HMPP引发的SAE可以迅速聚合成透明的交联膜。量子化学表明这是通过自由基加成反应机理发生的。热力学性质,例如反应驱动力和焓变,与相应的小分子类似物烯丙基甲基醚(AME)相似,但是添加速率低于AME。 SAE和HMPP的CC50值也通过细胞实验获得。通过将该制剂与壳聚糖和中药(云南白药粉)进行比较,进行了体内止血实验。结果表明,该配方在MIS中具有竞争优势。

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