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通过液相色谱/质谱联用同位素标记技术研究多巴胺自组装形成聚多巴胺的化学结构及形成机制。

Investigation of the chemical structure and formation mechanism of polydopamine from self-assembly of dopamine by liquid chromatography/mass spectrometry coupled with isotope-labelling techniques.

作者信息

Chan Wan

机构信息

Department of Chemistry, The Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong.

出版信息

Rapid Commun Mass Spectrom. 2019 Mar 15;33(5):429-436. doi: 10.1002/rcm.8373.

DOI:10.1002/rcm.8373
PMID:30556629
Abstract

RATIONALE

Dopamine (Dp) is one of the neurotransmitters released by the brain, and it was recently observed to undergo "self-polymerization" to form polydopamine (polyDp) functional materials, with a poorly understood polymerization mechanism. In this study, we investigated the chemical structure of polyDp as well as the mechanism of its formation using a combination of mass spectrometric techniques for both liquid and solid-state samples.

METHODS

Using the classical combustion analyses in combination with liquid chromatography coupled with spectrophotometric and mass spectrometric (MS) techniques and a 'bottom up' approach, we identified the major monomer units and a spectrum of oligomeric aggregates in the reaction mixtures of self-assembling Dp. Furthermore, the effect of the reaction medium on the structure and composition of polyDp materials was also investigated using time-of-flight secondary ion mass spectrometry (TOF-SIMS) analysis.

RESULTS

A study of the MS and MS/MS spectra revealed for the first time that polyDp is partially composed of non-covalent supramolecular aggregates with unmodified Dp (3,4-dihydroxyphenethylamine) and oxidized Dp (dopaminechrome) as the main building blocks. This finding was further validated via a heavy isotope labelling method and a 'top-down' approach in which we detected Dp and dopaminechrome monomers in the synthesized polyDp material. To the best of our knowledge, this study provides the first direct evidence demonstrating the formation mechanism and chemical structure of polyDp.

CONCLUSIONS

It is anticipated that the knowledge generated from this study will provide insight into the structure-property relationship of polyDp and assist in developing polyDp-based material with better performance.

摘要

原理

多巴胺(Dp)是大脑释放的神经递质之一,最近观察到它会发生“自聚合”形成聚多巴胺(polyDp)功能材料,但其聚合机制尚不清楚。在本研究中,我们结合液相和固相样品的质谱技术,研究了聚多巴胺的化学结构及其形成机制。

方法

我们采用经典燃烧分析结合液相色谱与分光光度和质谱(MS)技术以及“自下而上”的方法,确定了自组装多巴胺反应混合物中的主要单体单元和一系列寡聚聚集体。此外,还使用飞行时间二次离子质谱(TOF-SIMS)分析研究了反应介质对聚多巴胺材料结构和组成的影响。

结果

对质谱和串联质谱谱图的研究首次表明,聚多巴胺部分由非共价超分子聚集体组成,其主要结构单元为未修饰的多巴胺(3,4-二羟基苯乙胺)和氧化的多巴胺(多巴胺色素)。通过重同位素标记法和“自上而下”的方法进一步验证了这一发现,在合成的聚多巴胺材料中检测到了多巴胺和多巴胺色素单体。据我们所知,本研究首次提供了直接证据,证明了聚多巴胺的形成机制和化学结构。

结论

预计本研究产生的知识将有助于深入了解聚多巴胺的结构-性能关系,并有助于开发性能更好的聚多巴胺基材料。

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