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基于功能基团辅助的荧光传感平台,用于纳摩尔级检测环境水样和人体生物流体中的抗肿瘤药物和神经递质。

Functional Group-Assisted Fluorescence Sensing Platform for Nanomolar-Level Detection of an Antineoplastic Drug and a Neurotransmitter from Environmental Water and Human Biofluids.

机构信息

Department of Chemistry, Indian Institute of Technology Guwahati, Guwahati 781039, Assam, India.

出版信息

Inorg Chem. 2024 Mar 11;63(10):4502-4510. doi: 10.1021/acs.inorgchem.3c03341. Epub 2024 Feb 26.

Abstract

A fast, sensitive, selective, and biocompatible dual sensor of an antineoplastic medication (methotrexate) and a neurotransmitter (adrenaline) is still being searched by present-day scientists. To overcome this issue, we have designed a functionalized, robust, bio-friendly luminescent MOF for the sensitive, selective, and rapid monitoring of methotrexate and adrenaline. This probe is the first ever reported MOF-based fluorescence sensor of methotrexate and second only for adrenaline. This fluorescence probe has a very low limit of detection (LOD) of 0.34 and 11.2 nM for adrenaline and methotrexate, respectively. The sensor can detect both the targeted analytes rapidly within 5 s. It can also detect adrenaline and methotrexate from human blood serum and urine accurately and precisely. This reusable sensor is equally efficient in detecting methotrexate from environmental water specimens. Biocompatible, user-friendly, and inexpensive chitosan@MOF@cotton composites were fabricated for the detection of adrenaline and methotrexate from the nanomolar to the micromolar range by the naked eye under a fluorescence lamp. This probe displayed high reproducibility, precision, and accuracy in sensing methotrexate and adrenaline. Fluorescence resonance energy transfer (FRET) and the inner filter effect (IFE) are the possible mechanisms for adrenaline and methotrexate sensing, respectively. The possible mechanism was supported by using required instrumental techniques and theoretical simulations.

摘要

目前,科学家们仍在寻找一种快速、灵敏、选择性好且生物相容性强的抗肿瘤药物(甲氨蝶呤)和神经递质(肾上腺素)双传感器。为了解决这个问题,我们设计了一种功能化的、坚固的、生物友好型的发光 MOF,用于灵敏、选择性和快速监测甲氨蝶呤和肾上腺素。这种探针是第一个报道的基于 MOF 的甲氨蝶呤荧光传感器,也是第二个报道的肾上腺素荧光传感器。这种荧光探针对肾上腺素和甲氨蝶呤的检测限分别低至 0.34 和 11.2 nM。该传感器可以在 5 秒内快速检测到这两种目标分析物。它还可以准确、精确地检测人血清和尿液中的肾上腺素和甲氨蝶呤。这种可重复使用的传感器在检测环境水样中的甲氨蝶呤时同样有效。生物相容性好、使用方便且价格低廉的壳聚糖@MOF@棉复合材料,通过在荧光灯下肉眼检测,可在纳摩尔到微摩尔范围内检测肾上腺素和甲氨蝶呤。该探针在检测甲氨蝶呤和肾上腺素时表现出高重现性、精度和准确性。荧光共振能量转移(FRET)和内滤效应(IFE)分别是肾上腺素和甲氨蝶呤传感的可能机制。通过使用所需的仪器技术和理论模拟,支持了这一可能的机制。

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