首页> 美国卫生研究院文献>Frontiers in Chemistry >Hexamethylenediamine-Mediated Polydopamine Film Deposition: Inhibition by Resorcinol as a Strategy for Mapping Quinone Targeting Mechanisms
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Hexamethylenediamine-Mediated Polydopamine Film Deposition: Inhibition by Resorcinol as a Strategy for Mapping Quinone Targeting Mechanisms

机译:六亚甲基二胺介导的聚多巴胺膜沉积:间苯二酚的抑制作为映射醌靶向机制的策略。

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摘要

Hexamethylenediamine (HMDA) and other long chain aliphatic diamines can induce substrate-independent polymer film deposition from dopamine and several other catechols substrates at relatively low concentrations, however the mechanism of the diamine-promoted effect has remained little understood. Herein, we report data indicating that: (a) film deposition from 1 mM HMDA and dopamine is not affected by chemical oxidation with periodate but is markedly inhibited by resorcinol, which also prevents PDA film formation at 10 mM monomer concentration in the absence of HMDA; (b) N-acetylation of HMDA completely inhibits the effect on PDA film formation; (c) HMDA enables surface functionalization with 1 mM 5,6-dihydroxyindole (DHI) polymerization at pH 9.0 in a resorcinol-inhibitable manner. Structural investigation of the polymers produced from dopamine and DHI in the presence of HMDA using solid state 13C and 15N NMR and MALDI-MS suggested formation of covalent cross linked structures. It is concluded that HMDA enhances polydopamine adhesion by acting both on dopamine quinone and downstream, e.g., via covalent coupling with DHI. These results provide new insights into the mechanisms of PDA adhesion and disclose resorcinol as a new potent tool for targeting/mapping quinone intermediates and for controlling polymer growth.
机译:六亚甲基二胺(HMDA)和其他长链脂族二胺可以在相对较低的浓度下诱导多巴胺和几种其他邻苯二酚底物形成与底物无关的聚合物膜,但是对二胺促进作用的机制仍知之甚少。本文中,我们报告的数据表明:(a)1 mM HMDA和多巴胺的成膜不受高碘酸盐化学氧化的影响,但被间苯二酚显着抑制,这也防止了在不存在HMDA的情况下在10 mM单体浓度下PDA膜的形成。 ; (b)HMDA的N-乙酰化完全抑制了对PDA膜形成的影响; (c)HMDA能够以间苯二酚抑制的方式在pH 9.0下通过1 mM 5,6-二羟基吲哚(DHI)聚合进行表面官能化。使用固态 13 C和 15 N NMR和MALDI-MS对在HMDA存在下由多巴胺和DHI制备的聚合物进行结构研究表明形成了共价交联结构。结论是,HMDA通过例如通过与DHI的共价偶联作用于多巴胺醌和下游两者而增强了聚多巴胺的粘附。这些结果提供了对PDA粘附机理的新见解,并公开了间苯二酚作为靶向/映射醌中间体和控制聚合物生长的新有效工具。

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