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Design of nanoconstructs that exhibit enhanced hemostatic efficiency and bioabsorbability

机译:nanoconstructs,表现出增强的设计止血效率和bioabsorbability

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摘要

Hemorrhage is a prime cause of death in civilian and military traumatic injuries, whereby a significant proportion of death and complications occur prior to paramedic arrival and hospital resuscitation. Hence, it is crucial to develop hemostatic materials that are able to be applied by simple processes and allow control over bleeding by inducing rapid hemostasis, non-invasively, until subjects receive necessary medical care. This tutorial review discusses recent advances in synthesis and fabrication of degradable hemostatic nanomaterials and nanocomposites. Control of assembly and fine-tuning of composition of absorbable (i.e., degradable) hemostatic supramolecular structures and nanoconstructs have afforded the development of smart devices and scaffolds capable of efficiently controlling bleeding while degrading over time, thereby reducing surgical operation times and hospitalization duration. The nanoconstructs that are highlighted have demonstrated hemostatic efficiency pre-clinically in animal models, while also sharing characteristics of degradability, bioabsorbability and presence of nano-assemblies within their compositions.
机译:出血是一个平民死亡的首要原因和军事创伤性损伤,a死亡和并发症的重要比例医护人员和医院的到来之前发生复苏。止血材料能够被应用通过简单的流程和允许控制出血诱导快速止血,变化,直到受试者接受必要的医疗服务。的合成和制造的最新进展纳米材料可降解止血,纳米复合材料。微调成分的吸收性(例如,可降解)止血的超分子结构和nanoconstructs给予发展智能设备和支架的能力有效地控制出血而退化随着时间的推移,从而降低外科手术时间和住院时间。nanoconstructs突出显示证明了止血效率临床前在动物模型中,同时共享降解性的特点,bioabsorbability和nano-assemblies的存在在他们的作品。

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