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一种新型 BN 芳基模块修饰的近红外荧光探针,用于监测活细胞和动物中的一氧化碳释放分子 CORM-3。

A novel BN aromatic module modified near-infrared fluorescent probe for monitoring carbon monoxide-releasing molecule CORM-3 in living cells and animals.

机构信息

College of Chemistry and Chemical Engineering, Jiangxi Province Engineering Research Center of Ecological Chemical Industry, Jiujiang Key Laboratory of Organosilicon Chemistry and Application. Jiujiang University, Jiujiang, 332005, China; School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui Province, 236037, China.

School of Chemistry and Materials Engineering, Fuyang Normal University, Fuyang, Anhui Province, 236037, China.

出版信息

Talanta. 2024 Dec 1;280:126734. doi: 10.1016/j.talanta.2024.126734. Epub 2024 Aug 19.

Abstract

Carbon monoxide (CO), a significant gas transmitter, plays a vital role in the intricate functioning of living systems and is intimately linked to a variety of physiological and pathological processes. To comprehensively investigate CO within biological system, researchers have widely adopted CORM-3, a compound capable of releasing CO, which serves as a surrogate for CO. It aids in elucidating the physiological and pathological effects of CO within living organisms and can be employed as a therapeutic drug molecule. Therefore, the pivotal role of CORM-3 necessitates the development of effective probes that can facilitate the visualization and tracking of CORM-3 in living systems. However, creating fluorescent probes for real-time imaging of CORM-3 in living species has proven to be a persisting challenge that arises from factors such as background interference, light scattering and photoactivation. Herein, the BNDN fluorescent probe, a brand-new near-infrared is proposed. Remarkably, the BNDN probe offers several noteworthy advantages, including a substantial Stokes shift (201 nm), heightened sensitivity, exceptional selectivity, and an exceedingly low CORM-3 detection limit (0.7 ppb). Furthermore, the underlying sensing mechanism has been meticulously examined, revealing a process that revives the fluorophore by reducing the complex Cu to Cu. This distinctive NIR fluorescence "turn-on" character, coupled with its larger Stokes shift, holds great promise for achieving high resolution imaging. Most impressively, this innovative probe has demonstrated its efficacy in detecting exogenous CORM-3 in living animal. It is important to underscore that these endeavors mark a rare instance of a near-infrared probes successfully detecting exogenous CORM-3 in vivo. These exceptional outcomes highlighted the potential of BNDN as a highly promising new tool for in vivo detection of CORM-3. Considering the impressive imaging capabilities demonstrated by BNDN presented in this study, we anticipate that this tool may offer a compelling avenue for shedding light on the roles of CO in future research endeavors.

摘要

一氧化碳(CO)作为一种重要的气体递质,在生命系统的复杂功能中起着至关重要的作用,并且与多种生理和病理过程密切相关。为了全面研究生物系统中的 CO,研究人员广泛采用了 CORM-3,一种能够释放 CO 的化合物,作为 CO 的替代品。它有助于阐明 CO 在生物体内的生理和病理作用,并且可以用作治疗药物分子。因此,CORM-3 的关键作用需要开发有效的探针,以促进 CORM-3 在生命系统中的可视化和跟踪。然而,创建用于实时成像活体中 CORM-3 的荧光探针一直是一个挑战,这是由于背景干扰、光散射和光激活等因素造成的。在此,提出了一种全新的近红外 BNDN 荧光探针。值得注意的是,BNDN 探针具有几个显著的优点,包括大斯托克斯位移(201nm)、高灵敏度、卓越的选择性和极低的 CORM-3 检测限(0.7ppb)。此外,还详细研究了潜在的传感机制,揭示了通过将配合物 Cu 还原为 Cu 来恢复荧光团的过程。这种独特的近红外荧光“开启”特性,再加上其较大的斯托克斯位移,为实现高分辨率成像提供了很大的可能性。最令人印象深刻的是,该创新探针已证明其在活体动物中外源 CORM-3 的检测功效。需要强调的是,这些努力标志着近红外探针成功在体内检测外源性 CORM-3 的罕见实例。这些出色的结果突显了 BNDN 作为体内检测 CORM-3 的极有前途的新工具的潜力。考虑到 BNDN 在本研究中展示的令人印象深刻的成像能力,我们预计该工具可能为未来的研究努力提供一种有吸引力的途径,以揭示 CO 的作用。

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