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用于通过分子内惠斯根点击化学环化的合成肽纯度评估的能量分辨质谱和中红外光谱法

Energy-Resolved Mass Spectrometry and Mid-Infrared Spectroscopy for Purity Assessment of a Synthetic Peptide Cyclised by Intramolecular Huisgen Click Chemistry.

作者信息

Maroto Alicia, Boqué Ricard, Jeanne Dit Fouque Dany, Memboeuf Antony

机构信息

Univ Brest, CEMCA, CNRS, UMR 6521, 29238 Brest, France.

Department of Analytical Chemistry and Organic Chemistry, Universitat Rovira i Virgili, C/Marcel⋅lí Domingo 1, 43007 Tarragona, Spain.

出版信息

Methods Protoc. 2024 Dec 2;7(6):97. doi: 10.3390/mps7060097.

Abstract

Cyclic peptides have higher stability and better properties as therapeutic agents than their linear peptide analogues. Consequently, intramolecular click chemistry is becoming an increasingly popular method for the synthesis of cyclic peptides from their isomeric linear peptides. However, assessing the purity of these cyclic peptides by mass spectrometry is a significant challenge, as the linear and cyclic peptides have identical masses. In this paper, we have evaluated the analytical capabilities of energy-resolved mass spectrometry (ER MS) and mid-infrared microscopy (IR) to address this challenge. On the one hand, mixtures of both peptides were subjected to collision-induced dissociation tandem mass spectrometry (CID MS/MS) experiments in an ion trap mass spectrometer at several excitation energies. Two different calibration models were used: a univariate model (at a single excitation voltage) and a multivariate model (using multiple excitation voltages). The multivariate model demonstrated slightly enhanced analytical performance, which can be attributed to more effective signal averaging when multiple excitation voltages are considered. On the other hand, IR microscopy was used for the quantification of the relative amount of linear peptide. This was achieved through univariate calibration, based on the absorbance of an alkyne band specific to the linear peptide, and through Partial Least Squares (PLS) multivariate calibration. The PLS calibration model demonstrated superior performance in comparison to univariate calibration, indicating that consideration of the full IR spectrum is preferable to focusing on the specific peak of the linear peptide. The advantage of IR microscopy is that it is linear across the entire working interval, from linear peptide molar ratios of 0 (equivalent to pure cyclic peptide) up to 1 (pure linear peptide). In contrast, the ER MS calibration models exhibited linearity only up to 0.3 linear peptide molar ratio. However, ER MS showed better performances in terms of the limit of detection, intermediate precision and the root-mean-square-error of calibration. Therefore, ER MS is the optimal choice for the detection and quantification of the lowest relative amounts of linear peptides.

摘要

与线性肽类似物相比,环肽作为治疗剂具有更高的稳定性和更好的性质。因此,分子内点击化学正成为从其异构体线性肽合成环肽的一种越来越流行的方法。然而,通过质谱评估这些环肽的纯度是一项重大挑战,因为线性肽和环肽具有相同的质量。在本文中,我们评估了能量分辨质谱(ER MS)和中红外显微镜(IR)的分析能力,以应对这一挑战。一方面,将两种肽的混合物在离子阱质谱仪中于几种激发能量下进行碰撞诱导解离串联质谱(CID MS/MS)实验。使用了两种不同的校准模型:单变量模型(在单个激发电压下)和多变量模型(使用多个激发电压)。多变量模型显示出略高的分析性能,这可归因于考虑多个激发电压时更有效的信号平均。另一方面,IR显微镜用于定量线性肽的相对量。这是通过基于线性肽特有的炔烃带的吸光度进行单变量校准以及通过偏最小二乘法(PLS)多变量校准来实现的。与单变量校准相比,PLS校准模型表现出卓越的性能,表明考虑整个红外光谱比关注线性肽的特定峰更可取。IR显微镜的优点是它在整个工作区间内呈线性,从线性肽摩尔比为0(相当于纯环肽)到1(纯线性肽)。相比之下,ER MS校准模型仅在高达0.3的线性肽摩尔比时表现出线性。然而,ER MS在检测限、中间精密度和校准均方根误差方面表现更好。因此,ER MS是检测和定量最低相对量线性肽的最佳选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/769a/11676744/d2c78001e18e/mps-07-00097-g001.jpg

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