首页> 外文期刊>Monatshefte fur Chemie >New efficient design and synthesis of novel antioxidant and antifungal 7-imino[1,3]selenazolo[4,5-d]pyrimidine-5(4H)-thiones utilizing a base-promoted cascade addition/cyclization sequence
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New efficient design and synthesis of novel antioxidant and antifungal 7-imino[1,3]selenazolo[4,5-d]pyrimidine-5(4H)-thiones utilizing a base-promoted cascade addition/cyclization sequence

机译:新的高效设计和合成新型抗氧化剂和抗真菌7-亚氨基[1,3]索伦唑[4,5-D]嘧啶-5(4H) - 利用碱促进的级联添加/环化序列

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A straightforward strategy for the efficient synthesis of multi-functionalized 7-imino[1,3]selenazolo[4,5-d]pyrimidine-5(4H)-thiones bearing an incorporated N-phenylmethanethioamide fragment from the heteroannulation of several 2,4,5-trisubstituted 1,3-selenazoles with readily accessible phenyl isothiocyanates was established in boiling pyridine. To enrich the biological profile of the newly synthesized fused heterocyclic scaffold, some noted pharmacophores such as pyrrolidine, piperidine, morpholine, fluorine, and bromine were inserted into the framework. Inhibitory activities of the selenium-containing heterocycles were assessed against DPPH and Candida albicans. Antioxidant activities as IC50 values were observed in the range of 0.010-0.063 mM. Results revealed that 6-phenyl-substituted selenazolopyrimidines bearing C-2-pyrrolidine and C-2-piperidine both with IC50 value of 0.010 mM were superlative amongst others. Being far superior to ascorbic acid (IC50 = 0.022 mM), 4-fluorophenyl-substituted compounds bearing 2-morpholine residual (IC50 = 0.014 mM), and 2-piperidine (IC50 = 0.019 mM) were ranked in the second place and third place of antioxidant efficacy, respectively. Moreover, para-bromo and fluoro substituted N-phenylselenazolo[4,5-d]pyrimidines containing pyrrolidine moiety exhibited similar and six times higher potency for death and blocking of Candida albicans fungus than ketoconazole, respectively. Consequently, some of these selenazolopyrimidines are promising anti-Candida albicans as well as antioxidant lead compounds which can be used in the treatment of candidiasis, cancer, and neurodegenerative and diabetes diseases.
机译:高效合成多官能化7-亚氨基的直接策略[1,3]索伦唑[4,5-D]嘧啶-5(4h) - 含有掺入的N-苯基甲基己酰胺片段,来自几种2,4的异质率,在沸腾的吡啶中建立了5-三取代的1,3-硒唑,具有易于可获得的苯基异硫氰酸酯。为了富集新合成的稠合杂环支架的生物学谱,将一些注意的药物团如吡咯烷,哌啶,吗啉,氟和溴插入框架中。评估含硒的杂环的抑制活性对抗DPPH和Candida albicans。在0.010-0.063mm的范围内观察到IC 50值的抗氧化活性。结果表明,含有C-2-吡咯烷和C-2-哌啶的6-苯基取代的硒唑嘧啶,IC50值为0.010mm在其他中是最高级的。远远优于抗坏血酸(IC50 = 0.022mm),轴承2-吗啉残留物(IC50 = 0.014mm)和2-哌啶(IC50 = 0.019 mm)的4-氟苯基取代的化合物排名在第二名和第三位分别抗氧化效率。此外,含有吡咯烷部分的溴代和氟代苯基硒唑[4,5-D]嘧啶含有比酮康唑的死亡和阻断念珠菌的效力相似和六倍。因此,一些这些硒唑嘧啶是有前途的抗念珠菌和抗氧化剂铅化合物,其可用于治疗念珠菌病,癌症和神经变性和糖尿病疾病。

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