Medical Institute, Sumy State University, Ukraine.
Laboratory of Pathology CSD Health Care, Ukraine.
Mater Sci Eng C Mater Biol Appl. 2021 Jan;120:111740. doi: 10.1016/j.msec.2020.111740. Epub 2020 Nov 21.
The uncontrolled parenchymatic bleeding is still a cause of serious complications in surgery and require new effective hemostatic materials. In recent years, numerous chitosan-based materials have been intensively studied for parenchymatic bleeding control but still require to increased safety and effectiveness. The current research is devoted to new hemostatic materials made of natural polymer (chitosan) developed using electrospinning and microwave-assisted methods. Hemostatic performance, biocompatibility, degradation, and in-vivo effectiveness were studied to assess functional properties of new materials. Chitosan-based agents demonstrated considerable hemostatic performance, moderate biodegradation pace and high biocompatibility in vitro. Using the electrospinning-made chitosan-copolymer significantly improved in vivo biocompatibility and degradation of Chitosan-based agents that provides opportunities for its implementation for visceral bleeding management. Chitosan aerogel could be effectively applied in hemostatic patch development due to high antibacterial activity but it is not recommended for visceral application due to moderate inflammatory effect and slow degradation.
在外科手术中,不受控制的实质脏器出血仍然是严重并发症的一个原因,这需要新的有效的止血材料。近年来,许多基于壳聚糖的材料已被广泛研究用于实质脏器出血控制,但仍需要提高其安全性和有效性。目前的研究致力于使用静电纺丝和微波辅助方法开发新型天然聚合物(壳聚糖)止血材料。研究了止血性能、生物相容性、降解和体内有效性,以评估新材料的功能特性。壳聚糖基制剂表现出相当好的止血性能、适中的生物降解速度和体外高生物相容性。使用静电纺丝制成的壳聚糖共聚物显著提高了壳聚糖基制剂的体内生物相容性和降解,为其在内脏出血管理中的应用提供了机会。壳聚糖气凝胶由于具有高抗菌活性,可有效应用于止血贴的开发,但由于中度炎症作用和缓慢降解,不建议用于内脏应用。