使用量子化学参数预测含有肉桂霉菌片段相关结构的抗自由基(ho·)活性。3查尔酮、黄酮和带间苯三酚型环“a”的黄酮

E. Oganesyan, S. S. Shatokhin
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The calculations of the listed above parameters with the use of the semi-empirical method PM7 (WinMopac 2016 program) have been carried out on a workstation with an Intel Xeon E5-1620 3.5 GHz processor, 20 GB of RAM.Results. The quantum-chemical characteristics of the considered derivatives having a phloroglucinic type of the “A” ring, indicate that the OH group in position 6' of chalcones (in the corresponding flavanones and flavones in position 5) has different effects: a slight increase occurs in chalcones negative charge (a.e.) and electron density, the bond numbers take different values, which depends on the position and number of substituents on the ring \"B\". In flavanones, Nµ practically remains at the same level of 3.822-3.829. For flavones, the binding numbers Nµ for C-8 are in the range of 3.700-3.706, and the Mulliken charges are in the range from -0.4120 to -0.4356. For position-substituted C-3 (6anone and 7anone), the charges are -0.4436 and -0.4479, respectively. The charge on C-7 of chalcones is negative for compounds 4x, 5x, 10x and 13x from -0.0204 to -0.0470. The remaining derivatives of the chalcone, as well as the corresponding flavanones and flavones, are characterized by a positive value of a.e. on C-7. Based on the bond numbers (Nµ), free valency indices (Fµ) have been found for the carbon atoms of the cinnamoyl fragment C-1 → C-6 → C-7 → C-8. When comparing the obtained data, it was found out that for chalcones on C-1 → C-8 atoms, the values of the free valence indices are in the range of 0.900-0.980 for compounds 12x, 13x, where Fµ> 1. For flavanones on C-1, C-3, and C-5 atoms (compounds 12anone and 13anone), the free valence indices are in the range of 0.984-1.024, and for the remaining atoms the value of Fµ is approximately the same as that of chalcones. On the C-8 atoms of all the derivatives, as well as on C-1, C-3 and C-5 (compounds 12one, 13one), Fµ ≥ 1.0. It can be assumed that at values of Fµ = 0.850-0.955 for all the analyzed compounds, coupling reactions on the double bond are possible, and if Fµ ≥1, the coupling will take place according to the free radical mechanism. The data obtained indicate that the OH group in position 6’ for the chalcone and 5 for the flavanones, does not significantly effect the Mulliken charge (a.e) and the electron density on C-8 atoms.Conclusion. It has been established that the OH group in position 6' of the \"A\" ring of chalcones (in position 5 of the \"A\" ring in flavones and flavanones) has a conflicting effect on the bond numbers: when passing from chalcone to flavanone, Nµ increases, and then, in flavone, sharply decreases. For C-8 of all flavone derivatives, Fµ ≥1. The following conclusion has been confirmed: at the initial stage of the reaction the electrophilic hydroxyl radical is attached at the C-8 position of the cinnamoyl fragment","PeriodicalId":20025,"journal":{"name":"Pharmacy & Pharmacology","volume":"18 1","pages":"446-455"},"PeriodicalIF":0.0000,"publicationDate":"2021-05-17","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"USE OF QUANTUM-CHEMICAL PARAMETERS FOR FORECASTING ANTIRADICAL (HO·) ACTIVITY OF RELATED STRUCTURES CONTAINING A CINNAMIC MOLD FRAGMENT. III. CHALCONES, FLAVANONES AND FLAVONES WITH PHLOROGLUCINIC TYPE OF RING “A”\",\"authors\":\"E. Oganesyan, S. S. Shatokhin\",\"doi\":\"10.19163/2307-9266-2020-8-6-446-455\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"42 derivatives of chalcone, flavanone and flavone having a phloroglucinic type of ring “A” and containing the same electron-donating substituents on ring “B”, have been studied. Flavonoids with the phloroglucinic type of ring “A” are the most common in nature, which is due to the peculiarities of biogenetic formation with the participation of malonyl and acetyl fragments.The aim of the article is to determine the effect of the hydroxy group in position 6' of chalcones and in position 5 of flavanones and flavones on bond numbers (Nµ), free valence indices (Fµ), Mulliken charges (a.e), electron density, unsaturation indices (IUA) of the carbon atoms C-1 → C-6 → C-7 → C-8.Materials and methods. The calculations of the listed above parameters with the use of the semi-empirical method PM7 (WinMopac 2016 program) have been carried out on a workstation with an Intel Xeon E5-1620 3.5 GHz processor, 20 GB of RAM.Results. The quantum-chemical characteristics of the considered derivatives having a phloroglucinic type of the “A” ring, indicate that the OH group in position 6' of chalcones (in the corresponding flavanones and flavones in position 5) has different effects: a slight increase occurs in chalcones negative charge (a.e.) and electron density, the bond numbers take different values, which depends on the position and number of substituents on the ring \\\"B\\\". In flavanones, Nµ practically remains at the same level of 3.822-3.829. For flavones, the binding numbers Nµ for C-8 are in the range of 3.700-3.706, and the Mulliken charges are in the range from -0.4120 to -0.4356. For position-substituted C-3 (6anone and 7anone), the charges are -0.4436 and -0.4479, respectively. 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It can be assumed that at values of Fµ = 0.850-0.955 for all the analyzed compounds, coupling reactions on the double bond are possible, and if Fµ ≥1, the coupling will take place according to the free radical mechanism. The data obtained indicate that the OH group in position 6’ for the chalcone and 5 for the flavanones, does not significantly effect the Mulliken charge (a.e) and the electron density on C-8 atoms.Conclusion. It has been established that the OH group in position 6' of the \\\"A\\\" ring of chalcones (in position 5 of the \\\"A\\\" ring in flavones and flavanones) has a conflicting effect on the bond numbers: when passing from chalcone to flavanone, Nµ increases, and then, in flavone, sharply decreases. For C-8 of all flavone derivatives, Fµ ≥1. The following conclusion has been confirmed: at the initial stage of the reaction the electrophilic hydroxyl radical is attached at the C-8 position of the cinnamoyl fragment\",\"PeriodicalId\":20025,\"journal\":{\"name\":\"Pharmacy & Pharmacology\",\"volume\":\"18 1\",\"pages\":\"446-455\"},\"PeriodicalIF\":0.0000,\"publicationDate\":\"2021-05-17\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Pharmacy & Pharmacology\",\"FirstCategoryId\":\"1085\",\"ListUrlMain\":\"https://doi.org/10.19163/2307-9266-2020-8-6-446-455\",\"RegionNum\":0,\"RegionCategory\":null,\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"\",\"JCRName\":\"\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Pharmacy & Pharmacology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.19163/2307-9266-2020-8-6-446-455","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0

摘要

研究了42种查尔酮、黄酮和黄酮的衍生物,它们的a环为间苯二甲酸型,B环上含有相同的供电子取代基。具有间苯三酚型环“A”的类黄酮是自然界中最常见的,这是由于丙二醇和乙酰基片段参与的生物成因形成的特殊性。本文的目的是确定查尔酮的6′位羟基和黄酮的5′位羟基对碳原子C-1→C-6→C-7→C-8的键数(Nµ)、自由价指数(Fµ)、Mulliken电荷(a.e)、电子密度、不饱和指数(IUA)的影响。材料和方法。采用半经验方法PM7 (WinMopac 2016程序)在Intel Xeon E5-1620 3.5 GHz处理器、20gb ram的工作站上进行了上述参数的计算。所考虑的“a”环间苯二甲酸类衍生物的量子化学特征表明,查尔酮的6'位羟基(对应的黄酮和5位黄酮)具有不同的影响:查尔酮的负电荷(a.e)和电子密度略有增加,键数不同,这取决于“B”环上取代基的位置和数量。在黄酮中,Nµ基本保持在3.822 ~ 3.829的水平。C-8的结合数Nµ在3.700 ~ 3.706之间,Mulliken电荷在-0.4120 ~ -0.4356之间。对于位置取代的C-3 (6anone和7anone),电荷分别为-0.4436和-0.4479。在-0.0204 ~ -0.0470范围内,化合物4x、5x、10x和13x的查尔酮的C-7带负电荷。查尔酮的其余衍生物,以及相应的黄酮和黄酮,在C-7上的a.e.值为正值。根据C-1→C-6→C-7→C-8的键数(Nµ),得到了C-1→C-6→C-7→C-8的游离价指数(Fµ)。对比得到的数据发现,对于C-1→C-8原子上的查尔酮,化合物12x、13x的自由价指数在0.900 ~ 0.980之间,其中Fµ>.1。C-1、C-3和C-5原子上的黄酮(化合物12anone和13anone)的自由价指数在0.984 ~ 1.024之间,其余原子的Fµ值与查尔酮的Fµ值大致相同。所有衍生物的C-8原子以及C-1、C-3和C-5(化合物12one、13one)上的Fµ≥1.0。可以认为,在Fµ= 0.850-0.955时,所有化合物都可能发生双键上的偶联反应,当Fµ≥1时,根据自由基机理发生偶联反应。结果表明,查尔酮的6′位羟基和黄酮的5′位羟基对C-8原子的Mulliken电荷(a.e)和电子密度没有显著影响。查尔酮A环6′位的羟基(黄酮和黄酮A环5′位)对键数的影响是相互矛盾的:当从查尔酮过渡到黄酮时,Nµ增加,而在黄酮中,Nµ急剧减少。所有黄酮衍生物的C-8, Fµ≥1。以下结论得到了证实:在反应初始阶段,亲电羟基自由基附着在肉桂酰片段的C-8位置
本文章由计算机程序翻译,如有差异,请以英文原文为准。
USE OF QUANTUM-CHEMICAL PARAMETERS FOR FORECASTING ANTIRADICAL (HO·) ACTIVITY OF RELATED STRUCTURES CONTAINING A CINNAMIC MOLD FRAGMENT. III. CHALCONES, FLAVANONES AND FLAVONES WITH PHLOROGLUCINIC TYPE OF RING “A”
42 derivatives of chalcone, flavanone and flavone having a phloroglucinic type of ring “A” and containing the same electron-donating substituents on ring “B”, have been studied. Flavonoids with the phloroglucinic type of ring “A” are the most common in nature, which is due to the peculiarities of biogenetic formation with the participation of malonyl and acetyl fragments.The aim of the article is to determine the effect of the hydroxy group in position 6' of chalcones and in position 5 of flavanones and flavones on bond numbers (Nµ), free valence indices (Fµ), Mulliken charges (a.e), electron density, unsaturation indices (IUA) of the carbon atoms C-1 → C-6 → C-7 → C-8.Materials and methods. The calculations of the listed above parameters with the use of the semi-empirical method PM7 (WinMopac 2016 program) have been carried out on a workstation with an Intel Xeon E5-1620 3.5 GHz processor, 20 GB of RAM.Results. The quantum-chemical characteristics of the considered derivatives having a phloroglucinic type of the “A” ring, indicate that the OH group in position 6' of chalcones (in the corresponding flavanones and flavones in position 5) has different effects: a slight increase occurs in chalcones negative charge (a.e.) and electron density, the bond numbers take different values, which depends on the position and number of substituents on the ring "B". In flavanones, Nµ practically remains at the same level of 3.822-3.829. For flavones, the binding numbers Nµ for C-8 are in the range of 3.700-3.706, and the Mulliken charges are in the range from -0.4120 to -0.4356. For position-substituted C-3 (6anone and 7anone), the charges are -0.4436 and -0.4479, respectively. The charge on C-7 of chalcones is negative for compounds 4x, 5x, 10x and 13x from -0.0204 to -0.0470. The remaining derivatives of the chalcone, as well as the corresponding flavanones and flavones, are characterized by a positive value of a.e. on C-7. Based on the bond numbers (Nµ), free valency indices (Fµ) have been found for the carbon atoms of the cinnamoyl fragment C-1 → C-6 → C-7 → C-8. When comparing the obtained data, it was found out that for chalcones on C-1 → C-8 atoms, the values of the free valence indices are in the range of 0.900-0.980 for compounds 12x, 13x, where Fµ> 1. For flavanones on C-1, C-3, and C-5 atoms (compounds 12anone and 13anone), the free valence indices are in the range of 0.984-1.024, and for the remaining atoms the value of Fµ is approximately the same as that of chalcones. On the C-8 atoms of all the derivatives, as well as on C-1, C-3 and C-5 (compounds 12one, 13one), Fµ ≥ 1.0. It can be assumed that at values of Fµ = 0.850-0.955 for all the analyzed compounds, coupling reactions on the double bond are possible, and if Fµ ≥1, the coupling will take place according to the free radical mechanism. The data obtained indicate that the OH group in position 6’ for the chalcone and 5 for the flavanones, does not significantly effect the Mulliken charge (a.e) and the electron density on C-8 atoms.Conclusion. It has been established that the OH group in position 6' of the "A" ring of chalcones (in position 5 of the "A" ring in flavones and flavanones) has a conflicting effect on the bond numbers: when passing from chalcone to flavanone, Nµ increases, and then, in flavone, sharply decreases. For C-8 of all flavone derivatives, Fµ ≥1. The following conclusion has been confirmed: at the initial stage of the reaction the electrophilic hydroxyl radical is attached at the C-8 position of the cinnamoyl fragment
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