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I期外源性物质代谢酶的实时荧光监测

Real-time fluorescent monitoring of phase I xenobiotic-metabolizing enzymes.

作者信息

Iqbal Hajra, Ilyas Kainat, Akash Muhammad Sajid Hamid, Rehman Kanwal, Hussain Amjad, Iqbal Jamshed

机构信息

Department of Pharmaceutical Chemistry, Government College University Faisalabad Pakistan

Department of Pharmacy, The Women University Multan Pakistan

出版信息

RSC Adv. 2024 Mar 15;14(13):8837-8870. doi: 10.1039/d4ra00127c. eCollection 2024 Mar 14.

Abstract

This article explores the intricate landscape of advanced fluorescent probes crafted for the detection and real-time monitoring of phase I xenobiotic-metabolizing enzymes. Employing state-of-the-art technologies, such as fluorescence resonance energy transfer, intramolecular charge transfer, and solid-state luminescence enhancement, this article unfolds a multifaceted approach to unraveling the dynamics of enzymatic processes within living systems. This encompassing study involves the development and application of a diverse range of fluorescent probes, each intricately designed with tailored mechanisms to heighten sensitivity, providing dynamic insights into phase I xenobiotic-metabolizing enzymes. Understanding the role of phase I xenobiotic-metabolizing enzymes in these pathophysiological processes, is essential for both medical research and clinical practice. This knowledge can guide the development of approaches to prevent, diagnose, and treat a broad spectrum of diseases and conditions. This adaptability underscores their potential clinical applications in cancer diagnosis and personalized medicine. Noteworthy are the trifunctional fluorogenic probes, uniquely designed not only for fluorescence-based cellular imaging but also for the isolation of cellular glycosidases. This innovative feature opens novel avenues for comprehensive studies in enzyme biology, paving the way for potential therapeutic interventions. The research accentuates the selectivity and specificity of the probes, showcasing their proficiency in distinguishing various enzymes and their isoforms. The sophisticated design and successful deployment of these fluorescent probes mark significant advancements in enzymology, providing powerful tools for both researchers and clinicians. Beyond their immediate applications, these probes offer illuminating insights into disease mechanisms, facilitating early detection, and catalyzing the development of targeted therapeutic interventions. This work represents a substantial leap forward in the field, promising transformative implications for understanding and addressing complex biological processes. In essence, this research heralds a new era in the development of fluorescent probes, presenting a comprehensive and innovative approach that not only expands the understanding of cellular enzyme activities but also holds great promise for practical applications in clinical settings and therapeutic endeavors.

摘要

本文探讨了为检测和实时监测I相异生物代谢酶而精心设计的先进荧光探针的复杂情况。利用荧光共振能量转移、分子内电荷转移和固态发光增强等先进技术,本文展现了一种多方面的方法来揭示生物系统中酶促过程的动态变化。这项全面的研究涉及多种荧光探针的开发和应用,每种探针都经过精心设计,具有特定的机制以提高灵敏度,从而为I相异生物代谢酶提供动态见解。了解I相异生物代谢酶在这些病理生理过程中的作用,对医学研究和临床实践都至关重要。这些知识可以指导预防、诊断和治疗广泛疾病及病症的方法的开发。这种适应性突出了它们在癌症诊断和个性化医疗中的潜在临床应用。值得注意的是三功能荧光探针,其独特设计不仅用于基于荧光的细胞成像,还用于分离细胞糖苷酶。这一创新特性为酶生物学的全面研究开辟了新途径,为潜在的治疗干预铺平了道路。该研究强调了探针的选择性和特异性,展示了它们区分各种酶及其同工型的能力。这些荧光探针的精密设计和成功应用标志着酶学领域的重大进展,为研究人员和临床医生提供了强大工具。除了其直接应用外,这些探针还为疾病机制提供了有启发性的见解,有助于早期检测,并推动靶向治疗干预的发展。这项工作代表了该领域的重大飞跃,有望对理解和应对复杂生物过程产生变革性影响。本质上,这项研究预示着荧光探针开发的新时代,提出了一种全面且创新的方法,不仅扩展了对细胞酶活性的理解,而且在临床环境和治疗努力中的实际应用也极具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fd3/10941266/cacd92c8b0dd/d4ra00127c-f1.jpg

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