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用于止血的植物基形状记忆冷冻凝胶

Plant-Based Shape Memory Cryogel for Hemorrhage Control.

作者信息

Deng J, Zhao Z, Yeo X Y, Yang C, Yang J, Ferhan A R, Jin B, Oh C, Jung S, Suresh S, Cho N-J

机构信息

School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

Centre for Cross Economy, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.

出版信息

Adv Mater. 2024 Sep;36(36):e2311684. doi: 10.1002/adma.202311684. Epub 2024 Jul 16.

Abstract

The escalating global demand for sustainable manufacturing, motivated by concerns over energy conservation and carbon footprints, encounters challenges due to insufficient renewable materials and arduous fabrication procedures to fulfill specific requirements in medical and healthcare systems. Here, biosafe pollen cryogel is engineered as effective hemostats without additional harmful crosslinkers to treat deep noncompressible wounds. A straightforward and low-energy approach is involved in forming stable macroporous cryogel, benefiting from the unique micro-hierarchical structures and chemical components of non-allergenic plant pollen. It is demonstrated that the pollen cryogel exhibits rapid water/blood-triggered shape-memory properties within 2 s. Owing to their inherent nano/micro hierarchical structure and abundant chemical functional groups on the pollen surface, the pollen cryogel shows effective hemostatic performance in a mouse liver penetration model, which is easily removed after usage. Overall, the self-crosslinking pollen cryogel in this work pioneers a framework of potential clinical applications for the first-hand treatment on deep noncompressible wounds.

摘要

由于对能源节约和碳足迹的担忧,全球对可持续制造的需求不断升级,但由于可再生材料不足以及制造程序繁琐,难以满足医疗和医疗保健系统的特定要求,因此面临挑战。在此,生物安全的花粉冷冻凝胶被设计成有效的止血剂,无需额外的有害交联剂即可治疗深部不可压缩伤口。一种简单且低能耗的方法用于形成稳定的大孔冷冻凝胶,这得益于非致敏性植物花粉独特的微观层次结构和化学成分。结果表明,花粉冷冻凝胶在2秒内表现出快速的水/血液触发形状记忆特性。由于其固有的纳米/微观层次结构以及花粉表面丰富的化学官能团,花粉冷冻凝胶在小鼠肝脏穿刺模型中表现出有效的止血性能,使用后易于移除。总体而言,这项工作中的自交联花粉冷冻凝胶开创了一个潜在临床应用框架,用于对深部不可压缩伤口进行即时治疗。

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