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多模态可裂解报告分子与传统标签用于纳米和微颗粒上可及氨基和羧基基团的光学定量分析

Multimodal Cleavable Reporters versus Conventional Labels for Optical Quantification of Accessible Amino and Carboxy Groups on Nano- and Microparticles.

机构信息

Federal Institute for Materials Research and Testing (BAM) , Richard-Willstätter-Strasse 11 , D-12489 Berlin , Germany.

Institut für Chemie und Biochemie , Freie Universität Berlin , Takustrasse 3 , D-14195 Berlin , Germany.

出版信息

Anal Chem. 2018 May 1;90(9):5887-5895. doi: 10.1021/acs.analchem.8b00666. Epub 2018 Apr 13.

Abstract

Many applications of nanometer- and micrometer-sized particles include their surface functionalization with linkers, sensor molecules, and analyte recognition moieties like (bio)ligands. This requires knowledge of the chemical nature and number of surface groups accessible for subsequent coupling reactions. Particularly attractive for the quantification of these groups are spectrophotometric and fluorometric assays, which can be read out with simple instrumentation. In this respect, we present here a novel family of cleavable spectrophotometric and multimodal reporters for conjugatable amino and carboxyl surface groups on nano- and microparticles. This allows determination of particle-bound labels, unbound reporters in the supernatant, and reporters cleaved off from the particle surface, as well as the remaining thiol groups on particle, by spectrophotometry and inductively coupled optical emission spectrometry (S ICP-OES). Comparison of the performance of these cleavable reporters with conductometry and conventional labels, utilizing changes in intensity or color of absorption or emission, underlines the analytical potential of this versatile concept which elegantly circumvents signal distortions by scattering and encoding dyes and enables straightforward validation by method comparison.

摘要

许多纳米和微米尺寸颗粒的应用包括用连接子、传感器分子和分析物识别部分(如(生物)配体)对其表面进行功能化。这需要了解表面基团的化学性质和数量,以便进行后续的偶联反应。对于这些基团的定量,分光光度法和荧光法测定特别有吸引力,因为它们可以用简单的仪器进行读出。在这方面,我们在这里提出了一种新型的可裂解的分光光度法和多模式报告器,用于纳米和微颗粒上可共轭的氨基和羧基表面基团。这允许通过分光光度法和电感耦合光发射光谱法(S ICP-OES)测定颗粒结合的标记物、上清液中的未结合的报告器以及从颗粒表面裂解的报告器,以及颗粒上剩余的巯基。通过比较这些可裂解报告器与利用吸收或发射强度或颜色变化的电导率法和传统标记物的性能,突出了这种多功能概念的分析潜力,该概念巧妙地避免了散射和编码染料引起的信号失真,并通过方法比较进行了直接验证。

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