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香豆素磺酰胺杂合在水介质中对 Pb 的传感研究。

Pb sensing by coumarin sulphonamide hybrids in aqueous medium.

机构信息

Academy of Scientific and Innovative Research (AcSIR), CSIR - Central Road Research Institute, (CRRI), New Delhi, India.

Food and Nutraceutical Division, CSIR - Institute of Himalayan Bioresource Technology, Palampur, India.

出版信息

Luminescence. 2021 Aug;36(5):1172-1180. doi: 10.1002/bio.4042. Epub 2021 Apr 8.

Abstract

Metals play an important role in various metabolic activities in the human body, but above desired concentrations, a role reversal occurs that causes deadly outcomes viz., cancer. Metals cannot be cracked down and are non-biodegradable. It is the bioaccumulation of toxic metals inside the biomatrices, that further intensifies the research on different means of metal detoxification from different matrices. Among heavy toxic metals lead is a brutal carcinogen that requires pitiless sensors for its capturing. The use of heterocycles for metal sensing in supramolecular chemistry is preferred due to the strong chelation they offer to toxic metals. The C1-C3 probes were synthesized and studied for their Pb binding ability. All the probes were prepared by treating bromoacetyl coumarin with camphor sulphonamide, 5-dimethylamino-1-naphthalene sulphonamide, and methyl-2-amino-sulphonyl benzoate at room temperature. The probes show selective binding with Pb ions in aqueous acetonitrile among different tested metal ions viz., Cu , Zn , Ni , Mn and Pb ions as shown in ultraviolet (UV)-visible, nuclear magnetic resonance (NMR), and high-performance liquid chromatography (HPLC) studies. These sulphur-containing probes bind very well with Pb ions by offering selectivity in binding positions that capture lead ions at their minimum possible concentration.

摘要

金属在人体的各种代谢活动中起着重要作用,但超过所需浓度时,会发生角色逆转,导致致命后果,即癌症。金属不能被分解,而且是不可生物降解的。正是有毒金属在生物基质中的生物积累,进一步加剧了从不同基质中进行金属解毒的不同方法的研究。在重金属中,铅是一种残酷的致癌物质,需要无情的传感器来捕捉它。由于它们对有毒金属提供了很强的螯合作用,因此在超分子化学中,杂环被优先用于金属传感。合成了 C1-C3 探针并研究了它们与 Pb 的结合能力。所有探针均通过在室温下用溴乙酰香豆素与樟脑磺酰胺、5-二甲基氨基-1-萘磺酰胺和甲基-2-氨基磺酰苯甲酸处理来制备。在紫外(UV)-可见、核磁共振(NMR)和高效液相色谱(HPLC)研究中,这些含硫探针在水-乙腈中显示出对 Pb 离子的选择性结合,而在不同测试的金属离子中,Cu、Zn、Ni、Mn 和 Pb 离子。这些含硫探针通过在结合位置提供选择性结合,以尽可能低的浓度捕获铅离子,与 Pb 离子结合得非常好。

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