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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Inorganic sulfur-nitrogen compounds: from gunpowder chemistry to the forefront of biological signaling
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Inorganic sulfur-nitrogen compounds: from gunpowder chemistry to the forefront of biological signaling

机译:无机硫氮化合物:从火药化学到生物信号学的最前沿

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The reactions between inorganic sulfur and nitrogen-bearing compounds to form S-N containing species have a long history and, besides assuming importance in industrial synthetic processes, are of relevance to microbial metabolism; waste water treatment; aquatic, soil and atmospheric chemistry; and combustion processes. The recent discovery that hydrogen sulfide and nitric oxide exert often similar, sometimes mutually dependent effects in a variety of biological systems, and that the chemical interaction of these two species leads to formation of S-N compounds brought this chemistry to the attention of physiologists, biochemists and physicians. We here provide a perspective about the potential role of S-N compounds in biological signaling and briefly review their chemical properties and bioactivities in the context of the chronology of their discovery. Studies of the biological role of NO revealed why its chemistry is ideally suited for the tasks Nature has chosen for it; realising how the distinctive properties of sulfur can enrich this bioactivity does much to revive 'die Freude am experimentellen Spiel' of the pioneers in this field.
机译:无机硫和含氮化合物之间形成含S-N物种的反应历史悠久,除了在工业合成过程中具有重要意义外,还与微生物代谢有关。废水处理;水,土壤和大气化学;和燃烧过程。最近的发现表明,硫化氢和一氧化氮在多种生物系统中通常具有相似的,有时相互依赖的作用,并且这两个物种的化学相互作用导致形成SN化合物,这一化学反应引起了生理学家,生物化学家和科学家的注意。医生。我们在这里提供了有关S-N化合物在生物信号传导中潜在作用的观点,并根据其发现的时间顺序简要回顾了它们的化学性质和生物活性。对NO的生物学作用的研究表明,为什么NO的化学性质非常适合自然界为其选择的任务。意识到硫的独特特性如何丰富这种生物活性,对恢复该领域先驱者的“ die Freude am Experimentellen Spiel”起了很大作用。

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