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New 3,4,5-trisubstituted isoxazole derivatives with potential biological properties

机译:具有潜在生物学特性的新3,4,5-三取代异恶唑衍生物

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Synthesis of (E)-3,5-dimethyl-4-(R-phenyldiazenyl)isoxazoles was carried out by reacting beta-diketohydrazones (R-C6H4-NHN=C(COCH3)(2)) with hydroxylammonium chloride, where R = 4-N(CH3)(2)(1), 4-OH(2), 4-CH3(3), 4-OCH3(4), 4-H(5), 4-Cl(6) 4-Br(7), 4-CO2H(8), 4-CO2CH2CH3(9), 4-COCH3(10), 4-CN(11), 4-NO2(12), 4-CH2CO2CH2CH3(13), 3-Cl(14), 2-OH(15), 2-Cl(16), 2-NO2(17), 2-CO2H(18). All compounds were characterized by EA and spectroscopic methods. The crystalline structure of two of the compounds, (7) and (17), were solved by the X-ray diffraction method. DFT and TDDFT computations were performed in order to characterize the molecular geometry and the molecular orbitals involved in the transitions. Besides, a biological activity study was performed to evaluate the toxicity of the compounds towards human promyelocytic leukemia cell line, HL-60, using the MTT reduction method. The IC50 values are in a wide concentration range, 86-755 mu M. Isoxazoles (3) and (6) were the most cytotoxic. Expression analysis in HL-60 cells was carried out with compounds (3) and (6) by RT-PCR, in order to determine the effect on the expression levels of mRNA that codify for the genes Bcl-2, Bax and p21(WAF-1). Isoxazole (3) induced a decrease in the expression of Bcl-2, whereas isoxazole (6) showed an opposite behaviour. However, these isoxazoles had no effect on mRNA levels of Bax. On the other hand, both isoxazoles increased the levels of p21(WAF-1). These results suggest that the cytotoxic activity of isoxazole (3) would be the sum of effects triggered by promotion of apoptosis and cell cycle arrest, whereas for isoxazole (6) it would be mainly through cell cycle arrest.
机译:(E)-3,5-二甲基-4-(R-苯基二氮烯基)异恶唑的合成是通过将β-二酮hydr唑(R-C6H4-NHN = C(COCH3)(2))与羟基氯化铵反应进行的,其中R = 4-N(CH3)(2)(1),4-OH(2),4-CH3(3),4-OCH3(4),4-H(5),4-Cl(6)4-Br (7),4-CO2H(8),4-CO2CH2CH3(9),4-COCH3(10),4-CN(11),4-NO2(12),4-CH2CO2CH2CH3(13),3-Cl( 14),2-OH(15),2-Cl(16),2-NO2(17),2-CO2H(18)。所有化合物均通过EA和光谱法进行了表征。通过X射线衍射法解析了化合物(7)和(17)中的两种的晶体结构。进行DFT和TDDFT计算以表征转变中涉及的分子几何形状和分子轨道。此外,使用MTT还原法进行了生物学活性研究以评价化合物对人早幼粒细胞白血病细胞系HL-60的毒性。 IC50值在很宽的浓度范围内,为86-755μM。异恶唑(3)和(6)具有最大的细胞毒性。为了确定化合物Bcl-2,Bax和p21(WAF)对编码的mRNA表达水平的影响,使用RT-PCR在化合物(3)和(6)中对HL-60细胞进行了表达分析。 -1)。异恶唑(3)诱导Bcl-2表达降低,而异恶唑(6)显示相反的行为。但是,这些异恶唑对Bax的mRNA水平没有影响。另一方面,两种异恶唑均增加了p21(WAF-1)的水平。这些结果表明,异恶唑(3)的细胞毒性活性是细胞凋亡和细胞周期阻滞促进触发作用的总和,而对于异恶唑(6),主要是通过细胞周期阻滞。

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