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Synthesis and Regioselective Reaction of Some Unsymmetrical Heterocyclic Chalcone Derivatives and Spiro Heterocyclic Compounds as Antibacterial Agents

机译:一些不对称杂环查耳酮衍生物和螺杂环化合物的合成及区域选择性反应

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A number of novel heterocyclic chalcone derivatives can be synthesized by thermal and microwave tools. Treatment of 4-(4-Acetylamino- and/or 4-bromo-phenyl)-4-oxobut-2-enoic acids with hydrogen peroxide in alkaline medium were afforded oxirane derivatives 2. Reaction of the epoxide 2 with 2-amino-5-aryl-1,3,4-thiadiazole derivatives yielded chalcone of imidazo[2,1-b]thiadiazole derivative 4 via two thermal routes. In one pot reaction of 4-bromoacetophenone, diethyloxalate, and 2-amino-5-aryl-1,3,4-thiadiazole derivatives in MW irradiation (W 250 and T 150 °C) under eco-friendly conditions afforded an unsuitable yield of the desired chalcone 4d. The chalcone derivatives 4 were used as a key starting material to synthesize some new spiroheterocyclic compounds via Michael and aza-Michael adducts. The chalcone 4f was similar to the aryl-oxo-vinylamide derivatives for the inhibition of tyrosine kinase and cancer cell growth. The electron-withdrawing substituents, such as halogens, and 2-amino-1,3,4-thiadiazole moeity decreasing the electron density, thereby decreasing the energy of HOMO, and the presence of imidazothiadiazole moiety should improve the antibacterial activity. Thus, the newly synthesized compounds were evaluated for their anti-bacterial activity against (ATCC 25923), (ATCC 10987), (ATCC 274,) and (SM514). The structure of the newly synthesized compounds was confirmed by elemental analysis and spectroscopic data.
机译:可以通过热和微波工具合成许多新颖的杂环查耳酮衍生物。在碱性介质中用过氧化氢处理4-(4-乙酰氨基和/或4-溴苯基)-4-氧代丁-2-烯酸,得到了环氧乙烷衍生物2。环氧化物2与2-氨基-5的反应-芳基-1,3,4-噻二唑衍生物通过两个热途径产生了咪唑并[2,1-b]噻二唑衍生物4的查尔酮。在环保条件下,在MW辐射(W 250和T 150°C)下,一锅4-溴苯乙酮,草酸二乙酯和2-氨基-5-芳基-1,3,4-噻二唑衍生物的锅反应所需的查尔酮4d。查耳酮衍生物4被用作通过迈克尔和氮杂-迈克尔加合物合成一些新的螺杂环化合物的关键原料。查尔酮4f与抑制酪氨酸激酶和癌细胞生长的芳基-氧代-乙烯基酰胺衍生物相似。吸电子取代基,例如卤素和2-氨基-1,3,4-噻二唑部分降低了电子密度,从而降低了HOMO的能量,并且咪唑并噻二唑部分的存在应改善抗菌活性。因此,评估了新合成的化合物对(ATCC 25923),(ATCC 10987),(ATCC 274)和(SM514)的抗菌活性。通过元素分析和光谱数据证实了新合成化合物的结构。

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