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Activating proper inflammation for wound-healing acceleration via mesoporous silica nanoparticle tissue adhesive

机译:通过介孔二氧化硅纳米粒子组织粘合剂激活适当的伤口愈合加速炎症

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摘要

Efficient initiation and resolution of inflammation are crucial for wound repair. However, with using tissue adhesives for wound repair, patients occasionally suffered from delayed healing process because slow elimination of those exogenous adhesives generally leads to chronic inflammation. As the demand for minimal invasive therapy continues to rise, desire for adhesive materials that can effectively reconnect surgical gaps and promote wound regeneration becomes increasingly urgent. Herein, by exploiting the inherent porous structure and performance of adhesion to tissue of mesoporous silica nanoparticles (MSNs), we demonstrate a tissue adhesive that can elicit acute inflammatory response and get eliminated after tissue reformation. With formation of nanocomposites in wound gaps, the injured tissues can get reconnected conveniently. The resultant accelerated healing process verify that the strategy of exploiting unique properties of nanomaterials can effectively promote inflammation resolution and wound repair. This design strategy will inspire more innovative tissue adhesives for clinical applications.
机译:炎症的有效启动和分辨对于伤口修复至关重要。然而,通过使用组织粘合剂进行伤口修复,患者偶尔遭受延迟的愈合过程,因为消除这些外源粘合剂的消除通常导致慢性炎症。随着对最小侵入性治疗的需求继续上升,可以有效地重新连接手术间隙并促进伤口再生的粘合材料的需求变得越来越紧迫。这里,通过利用内部孔纳米粒子纳米粒子(MSNS)的固有多孔结构和对组织的粘附性的性能,我们证明了可以引发急性炎症反应的组织粘合剂并在组织重构后消除。通过在伤口间隙中形成纳米复合材料,可以方便地重新连接受伤的组织。得到的加速愈合过程验证了利用纳米材料的独特性质的策略可以有效地促进炎症分辨率和伤口修复。这种设计策略将激发更多的创新组织粘合剂,用于临床应用。

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