Wu Yadong, Wang Fang, Huang Yudong
1 MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, China.
Clin Appl Thromb Hemost. 2018 May;24(4):566-574. doi: 10.1177/1076029617751177. Epub 2018 Jan 24.
Hemorrhage remains a leading cause of death after trauma, and developing a hemostat with excellent performance and good biosecurity is an extremely active area of research and commercial product development. Although oxidized regenerated cellulose (ORC) has been developed to address these problems, it is not always efficient and its biosecurity is not perfect. We aimed to refine ORC via a simple and mild neutralization method. The prepared neutralized oxidized regenerated cellulose (NORC) showed a superior gel property due to its chemical structure. The biological performance of both ORC and NORC was systematically evaluated; the results showed that ORC would induce erythema and edema in the irritation test, whereas NORC did not cause any adverse inflammation, indicating NORC had desirable biocompatibility. We further demonstrated that NORC confirmed to the toxicity requirements of International Organization for Standardization (ISO) standards; however, ORC showed an unacceptable cytotoxicity. The rabbit hepatic defect model stated that NORC exhibited better ability of hemostasis, which was attributed to its significant gel performance in physiological environment.
出血仍然是创伤后主要的死亡原因,开发一种性能优异且生物安全性良好的止血剂是一个极为活跃的研究和商业产品开发领域。尽管氧化再生纤维素(ORC)已被开发用于解决这些问题,但它并不总是有效,其生物安全性也不完美。我们旨在通过一种简单温和的中和方法对ORC进行优化。制备的中和氧化再生纤维素(NORC)由于其化学结构而表现出优异的凝胶性能。对ORC和NORC的生物学性能进行了系统评估;结果表明,在刺激性试验中ORC会引起红斑和水肿,而NORC未引起任何不良炎症反应,表明NORC具有良好的生物相容性。我们进一步证明,NORC符合国际标准化组织(ISO)标准的毒性要求;然而,ORC表现出不可接受的细胞毒性。兔肝缺损模型表明,NORC表现出更好的止血能力,这归因于其在生理环境中显著的凝胶性能。