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Pharmacologically Active Sulfur-Containing Compounds

机译:药理活性含硫化合物

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Abstract: In addition to sulfur-containing compounds that form essential and indispensable constituents of all living cells, there is a plethora of less wide-spread sulfur-containing compounds with much less common and often unexpected properties, chemical structures and biological activities. Some of these compounds have long been known as efficient antibiotics. This review surveys these less known compounds with two and more sulfur atoms in their molecule. In particular, it deals with natural heterocyclic compounds isolated, e.g., from bacteria, fungi, lichens, plants, and animals but also from unusual and exotic sources such as sea invertebrates (coelenterates, sponges, tunicates, sea worms), etc. Compounds such as calicheamicins, thiazole-related compounds and epipolythiodioxopiperazines may serve as examples. Because of their vast variety, individual compounds are grouped according to their chemical structure (only compounds whose chemical structure has been identified are included). These compounds affect a huge array of organisms from microorganisms to man, and the pharmacological activities they exert range from antiviral, antibacterial, antifungal, insecticidal or antiproto-zoan effects to regulation of gene expression, cytoskeleton disruption, immunomodulation, plant growth stimulation or inhibition, pro- or antioxidant action, effects on selected enzymes, receptors and signal transduction pathways, etc. The activities are however often known only sketchily, and this paucity of data, and the fact that the activities were tested on a diverse spectrum of test organisms, cell lines, etc., is of necessity reflected in our survey. Two seemingly trivial but important points deserve attention; (a) compounds with widely different structures and from widely different sources have often very similar pharmacological effects; (b) a slight modification in the molecule may bring vast changes in the biological effects of the compound, in terms of quality, quantity and targeting. The purpose of the review was to show both the unique and common features of these compounds and to point out their potential usefulness for mankind
机译:摘要:除了构成所有活细胞必不可少的组成部分的含硫化合物外,还有很多不那么普遍的含硫化合物,它们的共同点,特性,化学结构和生物学活性要低得多。这些化合物中的一些早已被公认为有效的抗生素。这篇综述调查了这些分子中具有两个或多个硫原子的鲜为人知的化合物。特别地,它涉及从细菌,真菌,地衣,植物和动物中分离出的天然杂环化合物,也从不寻常的外来资源中分离出的天然杂环化合物,如无脊椎动物(腔肠动物,海绵,被膜,海虫)等。作为加利车霉素,噻唑相关化合物和表聚硫代二氧杂哌嗪类可作为实例。由于它们的种类繁多,因此根据其化学结构将各个化合物分组(仅包括已确定其化学结构的化合物)。这些化合物会影响从微生物到人类的各种生物,它们发挥的药理活性包括抗病毒,抗菌,抗真菌,杀虫或抗原生动物作用,以及基因表达的调节,细胞骨架破坏,免疫调节,植物生长刺激或抑制,或抗氧化作用,对选定的酶,受体和信号转导途径的影响等。然而,通常只能粗略地了解这些活性,而这种数据很少,而且这些活性是在多种测试生物体上进行测试的,细胞系等在我们的调查中必不可少。有两个看似微不足道但很重要的观点值得关注。 (a)结构和来源不同的化合物通常具有非常相似的药理作用; (b)分子的轻微修饰可能会在质量,数量和靶向方面使该化合物的生物学效应发生巨大变化。审查的目的是展示这些化合物的独特和共同特征,并指出它们对人类的潜在用途

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