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Nitric oxide-generating compound and bio-clickable peptide mimic for synergistically tailoring surface anti-thrombogenic and anti-microbial dual-functions

机译:一氧化氮产生的化合物和生物点球肽模拟用于协同剪裁表面抗血栓形成和抗微生物双功能

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摘要

Application of extracorporeal circuits and indwelling medical devices has saved many lives. However, it is accompanied with two major complications: thrombosis and infection. To address this issue, we apply therapeutic nitric oxide gas (NO) and antibacterial peptide for synergistically tailoring such devices for surface anti-thrombogenic and antifouling dual functions. Such functional surface is realized by stepwise conjugation of NO-generating compound of 1,4,7,10-tetraazacyclododecane-1,4,7,10-tetraacetic acid (DOTA) chelated copper ions (Cu-DOTA) and dibenzylcyclooctyne- (DBCO-) modified antimicrobial peptide based on carbodiimide and click chemistry respectively. The integration of peptide and Cu-DOTA grants the modified surface the ability to not only efficiently inhibit bacterial growth, but also catalytically generate NO from endogenous s-nitrosothiols (RSNO) to reduce adhesion and activation of platelets, preventing the formation of thrombus. We envision that the stepwise synergistic modification strategy by using anticoagulant NO and antibacterial peptide would facilitate the surface multifunctional engineering of extracorporeal circuits and indwelling medical devices, with reduced clinical complications associated with thrombosis and infection.
机译:体外电路和留置医疗设备的应用挽救了许多生命。然而,它伴有两个主要的并发症:血栓形成和感染。为了解决这一问题,我们应用治疗型一氧化物气体(NO)和抗菌肽,用于协同剪裁这些装置,用于表面抗血栓形成和防污双功能。通过逐步缀合的1,4,7,10-四饱和二乙烷-1,4,7,10-四乙酸(DOTA)螯合铜离子(Cu-dota)和二苄基环辛酯 - (DBCO)的逐步缀合来实现这种功能表面。(DBCO - 基于碳二亚胺的修饰抗微生物肽,分别点击化学。肽和Cu-dota的整合授予改性表面的能力不仅有效地抑制细菌生长,而且还可以催化从内源性S-亚硝基硫醇(RSNO)中产生NO,以降低血小板的粘附和活化,防止形成血栓形成。我们设想通过使用抗凝血的NO和抗菌肽的逐步协同改性策略将促进体外电路和留置医疗装置的表面多功能工程,其临床并发症与血栓形成和感染相关。

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