Departments of Chemistry, Chemical Engineering, Materials Science & Engineering, and The Laboratory for Synthetic-Biologic Interactions, Texas A&M University, College Station, TX, 77842-3012, USA.
Department of Surgery, Faculty of Medicine, Assiut University, Assiut, 71515, Egypt.
Nat Commun. 2019 May 24;10(1):2307. doi: 10.1038/s41467-019-10290-1.
The development of hemostatic technologies that suit a diverse range of emergency scenarios is a critical initiative, and there is an increasing interest in the development of absorbable dressings that can be left in the injury site and degrade to reduce the duration of interventional procedures. In the current study, β-cyclodextrin polyester (CDPE) hydrogels serve as sacrificial macroporous carriers, capable of degradation under physiological conditions. The CDPE template enables the assembly of imprinted chitosan honeycomb-like monolithic mats, containing highly entangled nanofibers with diameters of 9.2 ± 3.7 nm, thereby achieving an increase in the surface area of chitosan to improve hemostatic efficiency. In vivo, chitosan-loaded cyclodextrin (CDPE-Cs) hydrogels yield significantly lower amounts of blood loss and shorter times to hemostasis compared with commercially available absorbable hemostatic dressings, and are highly biocompatible. The designed hydrogels demonstrate promising hemostatic efficiency, as a physiologically-benign approach to mitigating blood loss in tissue-injury scenarios.
开发适用于各种紧急情况的止血技术是一项关键举措,人们越来越关注可吸收敷料的开发,这种敷料可以留在损伤部位并降解,以减少介入治疗的持续时间。在本研究中,β-环糊精聚酯(CDPE)水凝胶用作牺牲性大孔载体,能够在生理条件下降解。CDPE 模板允许印迹壳聚糖蜂窝状整体垫的组装,其中包含高度缠结的纳米纤维,直径为 9.2±3.7nm,从而增加壳聚糖的表面积以提高止血效率。在体内,与市售可吸收止血敷料相比,负载壳聚糖的环糊精(CDPE-Cs)水凝胶的出血量明显减少,止血时间更短,并且具有高度的生物相容性。设计的水凝胶表现出有希望的止血效率,是一种生理性良好的减轻组织损伤情况下失血的方法。