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Published on: May 9, 2019
Calcium-releasing silica-coated cellulose nanofiber aerogel for safe and efficient hemostasis
Lei Chen1, Ruicai Xia1, Zhiping Jin1
1Shanghai Key Laboratory of Regulatory Biology, School of Life Sciences, East China Normal University, Shanghai, 200241, PR China.
Abstract:
Severe hemorrhage remains a leading cause of preventable death in trauma and surgical settings, underscoring the ongoing need for topical hemostats that offer rapid coagulation, robust retention, and a favorable safety profile. Here we report a calcium-releasing silica-modified cellulose nanofiber (Ca-SCNF) aerogel fabricated via a Pickering emulsion-templated approach. In this design, carboxymethyl cellulose nanofibers function both as the scaffold-forming matrix and as the template for silica-based surface modification, with Ca2+ incorporated as a releasable pro-coagulant component. The resulting Ca-SCNF aerogel exhibits a lightweight, highly porous structure, with negligible hemolysis (<1%), minimal heat generation and limited particle detachment. When exposed to platelet-poor plasma, Ca-SCNF aerogel increases detectable Ca2+ availability and promotes plasma coagulation under direct material contact. In a rat femoral artery transection model, Ca-SCNF aerogel significantly reduces hemostasis time and blood loss relative to cotton and QuikClot Combat Gauze. These findings establish Ca-SCNF aerogel as a safe and effective hemostatic agent that outperforms natural inorganic mineral-based counterparts.