SYNTHESIS AND COMPLEX-FORMING PRO­PERTIES OF THIO-CONTAINING COMPLEXONS: S,S'- ETHYLENEDITHIODIALANINE AND S,S'- CARBOXY- ETHYLENEDITHIODIALANINE

E. Trunova, Ganna Artamonova, M. Rusakova, O. Vasin, V. Glushakov
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Abstract

Two thio-containing complexones – S,S'-ethy­lenedithiodialanin (EDAL) and S,S'-carboxy-ethylenedithiodialanin (СEDAL) – were synthesized by the alkylation reaction of L-cysteine with dibromoethane. The developed technique has a number of advantages compared to those described in the literature: the absence of ammonia and metallic sodium as synthesis reagents, a decrease in the synthesis temperature and time, an increase in the yield of the final product to ~95%. The physicochemical properties of complesones were investigated using (1H, 13C) NMR, pH-potentiometry, UV-VIS, IR-spectroscopy, DTA and non-quantitative mass spectrometry. The acid dissociation constants of EDAL (pКN1=9.79; pКN2=8.79; pКCOO1=3.25) and СEDAL (pКN1=9.81; pКN2=8.17; pКCOO1=2.82; pКCOO2=3.34) were calculated and the scheme of protonation of complexons depending on pH was proposed. On the basis of NMR spectroscopy data, it is shown that the complexons have a folded structure, mobile along the S-CN2СНСООН and N–CH–COOH axes, in which betaine nitrogen atoms form two intramolecular five-membered glycine cycles due to the rapid exchange of labile protons of СООН groups. In addition, there is an intermolecular cycle in the molecule, which includes an ethylenethioamine fragment. DTA data show the presence of adsorbed and crystallization water in molecules of thio-complexons, which is eliminated at 100–170 0С. Intraspherical water molecules are located between molecular layers and form a branched system of hydrogen bonds. The final tempe­rature of the decomposition of compounds is ~4600C. Probably, the end products of EDAL and СEDAL decomposition are non-stoichiometric sulfates or sulfides. Complex formation of thio-complexons with Mo(VI) and Cu(II) at their equimolar ratio was investigated in aqueous solutions in a wide pH range (1÷10). The formation of complexes of the composition MoO3CEDAL and CuEDAL in the range of pH 4–9 is shown and the structure of the complexes is proposed. The biological activity of carboxy-ethylenedithiodialanin and its complexes with Cu(II) was studied. It has been proven that the compounds exhibit fungistatic properties against pathogenic bacteria Candida spp. (main causative agents of fungal infections).
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采用l -半胱氨酸与二溴乙烷烷基化反应,合成了S,S′-乙二硫代二氰胺(EDAL)和S,S′-羧基乙二硫代二氰胺(СEDAL)两个含硫络合物。与文献中描述的技术相比,所开发的技术具有许多优点:不需要氨和金属钠作为合成试剂,降低了合成温度和合成时间,最终产品的收率提高到95%。采用核磁共振(1H, 13C)、ph -电位法、紫外-可见光谱、红外光谱、差热分析和非定量质谱等方法研究了配合体的理化性质。EDAL的酸解离常数(pКN1=9.79;pКN2 = 8.79;pКCOO1=3.25)和СEDAL (pКN1=9.81;pКN2 = 8.17;pКCOO1 = 2.82;pКCOO2=3.34),并提出了络合子质子化随pH值变化的方案。核磁共振波谱数据表明,配合物具有折叠结构,沿S-CN2СНСООН和N-CH-COOH轴移动,其中甜菜碱氮原子由于СООН基团的不稳定质子的快速交换,形成了两个分子内五元甘氨酸环。此外,在分子中存在一个分子间循环,其中包括一个乙基乙胺片段。DTA数据表明,硫代络合物分子中存在吸附和结晶水,在100-170 0С处被消除。球内水分子位于分子层之间,形成一个支链氢键系统。化合物分解的最终温度为~4600C。EDAL和СEDAL分解的最终产物可能是非化学计量的硫酸盐或硫化物。研究了硫代络合物与Mo(VI)和Cu(II)以等摩尔比在宽pH范围的水溶液中形成的络合物(1÷10)。研究了MoO3CEDAL和CuEDAL配合物在pH 4 ~ 9范围内的形成过程,并给出了配合物的结构。研究了羧基乙二硫代dialanin及其与Cu(II)配合物的生物活性。已证明该化合物对致病菌念珠菌(真菌感染的主要病原体)具有抑菌作用。
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