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利用 MALDI-TOF 质谱分析硬蛋白冠在选择性氧化铁纳米粒子上的组成:在乳蛋白组中鉴定和放大隐藏的乳腺炎生物标志物。

Analysis of hard protein corona composition on selective iron oxide nanoparticles by MALDI-TOF mass spectrometry: identification and amplification of a hidden mastitis biomarker in milk proteome.

机构信息

Department of Comparative Biomedicine and Food Science, University of Padua, Viale dell'Università, 16, 35020, Legnaro, Italy.

Regional Centre of Advanced Technologies and Materials, Department of Physical Chemistry and Experimental Physics, Palacky University, Slechtitelu 27, 783 71, Olomouc, Czech Republic.

出版信息

Anal Bioanal Chem. 2018 May;410(12):2949-2959. doi: 10.1007/s00216-018-0976-z. Epub 2018 Mar 12.

Abstract

Surface active maghemite nanoparticles (SAMNs) are able to recognize and bind selected proteins in complex biological systems, forming a hard protein corona. Upon a 5-min incubation in bovine whey from mastitis-affected cows, a significant enrichment of a single peptide characterized by a molecular weight at 4338 Da originated from the proteolysis of a-casein was observed. Notably, among the large number of macromolecules in bovine milk, the detection of this specific peptide can hardly be accomplished by conventional analytical techniques. The selective formation of a stable binding between the peptide and SAMNs is due to the stability gained by adsorption-induced surface restructuration of the nanomaterial. We attributed the surface recognition properties of SAMNs to the chelation of iron(III) sites on their surface by sterically compatible carboxylic groups of the peptide. The specific peptide recognition by SAMNs allows its easy determination by MALDI-TOF mass spectrometry, and a threshold value of its normalized peak intensity was identified by a logistic regression approach and suggested for the rapid diagnosis of the pathology. Thus, the present report proposes the analysis of hard protein corona on nanomaterials as a perspective for developing fast analytical procedures for the diagnosis of mastitis in cows. Moreover, the huge simplification of proteome complexity by exploiting the selectivity derived by the peculiar SAMN surface topography, due to the iron(III) distribution pattern, could be of general interest, leading to competitive applications in food science and in biomedicine, allowing the rapid determination of hidden biomarkers by a cutting edge diagnostic strategy. Graphical abstract The topography of iron(III) sites on surface active maghemite nanoparticles (SAMNs) allows the recognition of sterically compatible carboxylic groups on proteins and peptides in complex biological matrixes. The analysis of hard protein corona on SAMNs led to the determination of a biomarker for cow mastitis in milk by MALDI-TOF mass spectrometry.

摘要

表面活性磁赤铁矿纳米粒子(SAMN)能够识别和结合复杂生物系统中的选定蛋白质,形成坚硬的蛋白质外壳。在从患有乳腺炎的奶牛的牛初乳中孵育 5 分钟后,观察到一种由 a-酪蛋白的蛋白水解产生的分子量为 4338 Da 的单一肽显著富集。值得注意的是,在牛乳中的大量大分子中,很难通过常规分析技术检测到这种特定的肽。肽与 SAMN 之间形成稳定结合的选择性归因于纳米材料的吸附诱导表面重构获得的稳定性。我们将 SAMN 的表面识别特性归因于其表面的铁(III)位点与肽的空间相容的羧基之间的螯合作用。SAMN 对特定肽的识别允许通过 MALDI-TOF 质谱法轻松测定,并且通过逻辑回归方法确定其归一化峰强度的阈值,并建议用于快速诊断病理学。因此,本报告提出了对纳米材料上的硬蛋白质外壳的分析,作为开发用于快速诊断奶牛乳腺炎的分析程序的一种前景。此外,由于铁(III)分布模式导致的特殊 SAMN 表面形貌的选择性,可以极大地简化蛋白质组的复杂性,这可能具有普遍意义,导致在食品科学和生物医学中的竞争应用,通过前沿的诊断策略允许快速测定隐藏的生物标志物。

摘要 表面活性磁赤铁矿纳米粒子(SAMN)上的铁(III)位点的形貌允许识别复杂生物基质中蛋白质和肽上的空间相容的羧基。对 SAMN 上硬蛋白质外壳的分析导致通过 MALDI-TOF 质谱法在牛奶中确定了奶牛乳腺炎的生物标志物。

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