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通过环状 α-氨基酸封端剂的共价表面接枝实现碳点表面手性反转。

Chirality Inversion on the Carbon Dot Surface via Covalent Surface Conjugation of Cyclic α-Amino Acid Capping Agents.

机构信息

Department of Bioengineering , University of Illinois at Urbana-Champaign , Urbana , Illinois 61801 , United States.

Mills Breast Cancer Institute and Carle Foundation Hospital , 502 North Busey , Urbana , Illinois 61801 , United States.

出版信息

Bioconjug Chem. 2018 Nov 21;29(11):3913-3922. doi: 10.1021/acs.bioconjchem.8b00736. Epub 2018 Nov 5.

Abstract

Manipulating the chiroptical properties at the nanoscale is of great importance in stereoselective reactions, enantioseparation, self-assembly, and biological phenomena. In recent years, carbon dots have garnered great attention because of their favorable properties such as tunable fluorescence, high biocompatibility, and facile, scalable synthetic procedures. Herein, we report for the first time the unusual behavior of cyclic amino acids on the surface of carbon dots prepared via microwave-based carbonization. Various amino acids were introduced on the surface of carbon dots via EDC/NHS conjugation at room temperature. Circular dichroism results revealed that although most of the surface conjugated amino acids can preserve their chirality on negatively charged, "bare" carbon dots, the "handedness" of cyclic α-amino acids can be flipped when covalently attached on carbon dots. Moreover, these chiroptical carbon dots were found to interact with the cellular membrane or its mimic in a highly selective manner due to their acquired asymmetric selectivity. A comprehensive inhibitor study was conducted to investigate the pathway of cellular trafficking of these carbon dots. Overall, it was concluded that the chirality of the amino acid on the surface of carbon dots could regulate many of the cellular processes.

摘要

在立体选择性反应、对映体分离、自组装和生物现象中,操纵纳米尺度的手性光学性质非常重要。近年来,由于碳点具有可调荧光、高生物相容性和易于规模化合成等优点,因此受到了极大的关注。在此,我们首次报道了通过微波碳化法制备的碳点表面环状氨基酸的异常行为。通过 EDC/NHS 室温偶联,在碳点表面引入了各种氨基酸。圆二色性结果表明,尽管大多数表面接枝的氨基酸在带负电荷的“裸露”碳点上可以保持其手性,但当共价连接在碳点上时,环状α-氨基酸的“手性”可以翻转。此外,由于获得的不对称选择性,这些手性碳点被发现能够以高度选择性的方式与细胞膜或其模拟物相互作用。进行了全面的抑制剂研究,以探讨这些碳点的细胞内运输途径。总的来说,结论是碳点表面氨基酸的手性可以调节许多细胞过程。

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