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Cryptocyanine-Based Fluorescent Probes for DNA Detection: Controlling Solubility and Aggregation Through Side Chain Design

Domahidy, Farkas and Cseri, Levente and Turczel, Gábor and Huszár, Blanka and Rózsa J., Balázs and Mucsi, Zoltán and Kovács, Ervin (2026) Cryptocyanine-Based Fluorescent Probes for DNA Detection: Controlling Solubility and Aggregation Through Side Chain Design. ADVANCED SENSOR RESEARCH, 5 (1). No. e00139. ISSN 2751-1219

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Abstract

Novel cryptocyanine-based DNA-binding fluorescent probes were developed by introducing side chains with varying polarity to the dye scaffold. This structural modification improves water solubility, reduces aggregation in aqueous media, and enhances DNA binding affinity. Upon binding to DNA, the derivatives exhibit a high increase in fluorescence quantum yield, demonstrating their potential as fluorogenic DNA probes. The photophysical behavior of the dyes is systematically investigated using spectroscopic techniques, focusing on their environment-sensitive emission properties. These results highlight the importance of environmentally responsive dye scaffolds in the development of fluorogenic tools for nucleic acid detection and diagnostic applications.

Item Type: Article
Uncontrolled Keywords: cryptocyanine, DNA binding, fluorescence, fluorescent sensors
Subjects: Q Science / természettudomány > QD Chemistry / kémia > QD04 Organic chemistry / szerves kémia
Depositing User: Dr. Kovács Ervin
Date Deposited: 23 Sep 2026 07:03
Last Modified: 23 Sep 2026 07:03
URI: https://real.mtak.hu/id/eprint/247297

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