Tissue hydrate layer-trigger swollen gelatin-based aerogel hemostatic material with bletilla striata complex active ingredient complex to promote hemostasis

止血 明胶 成分 气凝胶 明胶海绵 水合物 止血剂 化学 生物医学工程 医学 材料科学 纳米技术 食品科学 外科 生物化学 有机化学 栓塞
作者
Wencheng Liang,Pingan Wu,Shanshan Yan,Shen Wang,Junhua Zhao,Xing Su,Jun Li,Yu Fan,Meidong Lang,Yan Xie
出处
期刊:Applied Materials Today [Elsevier BV]
卷期号:38: 102227-102227 被引量:2
标识
DOI:10.1016/j.apmt.2024.102227
摘要

Gelatin exhibits excellent solubility at the 37℃ tissue surface due to its affinity for the rich tissue hydrate water. However, its inherent property doesn't facilitate the formation of a robust physical barrier to effectively manage wound hemorrhage and promote hemostasis. To address this challenge, a novel gelatin-based derivative (Ged) with swollen property upon absorbing the tissue hydrate layer was prepared. In this work, a hydrophobic monomer was introduced into gelatin under amide reaction to regulate the interactions between water molecules and gelatin molecular chains. This investigation results showed that Ged exhibited excellent adhesion properties and long-term swollen at 37 °C. In addition, bletilla striata complex active ingredients (Bscai) was employed to the Ged to promote hemostasis capacity, which referred to as Bscai/Ged hemostatic material. In-depth experiments were conducted to investigate the structural characteristics and biocompatibility of Bscai/Ged hemostatic materials, those results revealed that Bscai/Ged hemostatic materials had swift hydrate layer-trigger rate, robust adhesive strength on wet tissue surfaces, outstanding hemostatic properties and facilitating accelerated wound healing. Additionally, in vivo experimental results indicated that the Bscai/Ged hemostatic material could mitigate inflammatory responses, promote collagen deposition and enhance angiogenesis. Overall, Bscai/Ged hemostatic material presents a highly promising candidate for advanced hemostatic material applications.
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