Sulfenamide formation – chemical and biochemical reactions and their applications in cell biology

IF 2.1 3区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Tayebeh Amanpour , Rui Wang
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引用次数: 0

Abstract

Sulfenamides are organosulfur compounds that contain a single bond between nitrogen and sulfur in their structures. Sulfur can react with nucleophiles to yield new compounds. The compounds having nitrogen–sulfur bonds are used in polymers for a variety of purposes, including medicines, agrochemicals, veterinary medications, and environmental studies. This review will examine several chemical reactions that lead to sulfenamide production as well as how they are used in cell biology and biochemical applications.

磺酰胺的形成--化学和生物化学反应及其在细胞生物学中的应用
亚磺酰胺是一种有机硫化合物,其结构中的氮和硫之间只有一个键。硫可以与亲核物反应生成新的化合物。具有氮-硫键的化合物可用于聚合物,用途广泛,包括药物、农用化学品、兽药和环境研究。本综述将探讨导致生产亚磺酰胺的几个化学反应,以及它们在细胞生物学和生化应用中的应用。
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来源期刊
Journal of Sulfur Chemistry
Journal of Sulfur Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
4.10
自引率
9.10%
发文量
38
审稿时长
6-12 weeks
期刊介绍: The Journal of Sulfur Chemistry is an international journal for the dissemination of scientific results in the rapidly expanding realm of sulfur chemistry. The journal publishes high quality reviews, full papers and communications in the following areas: organic and inorganic chemistry, industrial chemistry, materials and polymer chemistry, biological chemistry and interdisciplinary studies directly related to sulfur science. Papers outlining theoretical, physical, mechanistic or synthetic studies pertaining to sulfur chemistry are welcome. Hence the target audience is made up of academic and industrial chemists with peripheral or focused interests in sulfur chemistry. Manuscripts that truly define the aims of the journal include, but are not limited to, those that offer: a) innovative use of sulfur reagents; b) new synthetic approaches to sulfur-containing biomolecules, materials or organic and organometallic compounds; c) theoretical and physical studies that facilitate the understanding of sulfur structure, bonding or reactivity; d) catalytic, selective, synthetically useful or noteworthy transformations of sulfur containing molecules; e) industrial applications of sulfur chemistry; f) unique sulfur atom or molecule involvement in interfacial phenomena; g) descriptions of solid phase or combinatorial methods involving sulfur containing substrates. Submissions pertaining to related atoms such as selenium and tellurium are also welcome. Articles offering routine heterocycle formation through established reactions of sulfur containing substrates are outside the scope of the journal.
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