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新型双香豆素钠化合物:晶体结构、理论研究及对成骨细胞癌细胞的杀肿瘤活性

New dicoumarol sodium compound: crystal structure, theoretical study and tumoricidal activity against osteoblast cancer cells.

作者信息

Rehman Sadia, Ikram Muhammad, Khan Ajmal, Min Soyoung, Azad Effat, Hofer Thomas S, Mok Kh, Baker Robert J, Blake Alexander J, Rehman Saeed Ur

机构信息

Institute of Chemical Sciences, University of Peshawar, Peshawar, Pakistan ; Department of Chemistry, Sarhad University of Science and Information Technology, Peshawar, Pakistan.

Department of Chemistry, Sarhad University of Science and Information Technology, Peshawar, Pakistan.

出版信息

Chem Cent J. 2013 Jul 2;7:110. doi: 10.1186/1752-153X-7-110. eCollection 2013.

Abstract

BACKGROUND

Enormous interest had been paid to the coordination chemistry of alkali and alkaline metal ions because of their role inside body viz; their Li(+)/Na(+) exchange inside the cell lead to different diseases like neuropathy, hypertension, microalbuminuria, cardiac and vascular hypertrophy, obesity, and insulin resistance. It has been presumed that alkali metal ions (whether Na(+) or K(+)) coordinated to chelating ligands can cross the hydrophobic cell membrane easily and can function effectively for depolarizing the ion difference. This unique function was utilized for bacterial cell death in which K(+) has been found coordinated valinomycin (antibiotic).

RESULTS

Distinct sodium adduct (1) with dicoumarol ligand, 4-Hydroxy-3-[(4-hydroxy-2-oxo-4a,8a-dihydro-2H-chromen-3-yl)-phenyl-methyl]-chromen-2-one (L) is isolated from the saturated solution of sodium methoxide. Single crystal X-ray diffraction studies of the adduct reveals that sodium is in the form of cation attached to a methoxide, methanol and a dicoumarol ligand where carbonyl functional groups of the coumarin derivative are acting as bridges. The sodium compound (1) is also characterized by IR, (1)H-NMR, and (13)C{(1)H}-NMR spectroscopic techniques. The composition is confirmed by elemental analysis. DFT study for 1 has been carried out using B3LYP/6-13G calculations which shown the theoretical confirmation of the various bond lengths and bond angles. Both the compounds were studied subsequently for the U2OS tumoricidal activity and it was found that L has LD50 value of 200 μM whereas the sodium analog cytotoxicity did not drop down below 60%.

CONCLUSION

A sodium analogue (1) with medicinally important dicoumarol ligand (L) has been reported. The crystal structure and DFT study confirm the formation of cationic sodium compound with dicoumarol. The ligand was found more active than the sodium analog attributed to the instability of 1 in solution state. Coumarin compound with sodium was observed to be less cytotoxic than the ligand, its LD50 value never dropped below 60%.

摘要

背景

碱金属和碱土金属离子的配位化学因其在体内的作用而备受关注,即它们在细胞内的Li(+)/Na(+)交换会导致不同疾病,如神经病变、高血压、微量白蛋白尿、心脏和血管肥大、肥胖及胰岛素抵抗。据推测,与螯合配体配位的碱金属离子(无论是Na(+)还是K(+))能够轻易穿过疏水细胞膜,并有效发挥作用使离子差异去极化。这种独特功能被用于细菌细胞死亡研究,其中发现K(+)与缬氨霉素(抗生素)配位。

结果

从甲醇钠饱和溶液中分离出与双香豆素配体4-羟基-3-[(4-羟基-2-氧代-4a,8a-二氢-2H-色烯-3-基)-苯基甲基]-色烯-2-酮(L)形成的独特钠加合物(1)。该加合物的单晶X射线衍射研究表明,钠以阳离子形式存在,与一个甲醇盐、甲醇和一个双香豆素配体相连,其中香豆素衍生物的羰基官能团起桥梁作用。钠化合物(1)还通过红外光谱、(1)H-NMR和(13)C{(1)H}-NMR光谱技术进行了表征。通过元素分析确定了其组成。使用B3LYP/6-13G计算对1进行了密度泛函理论(DFT)研究,结果显示了各种键长和键角的理论确认。随后对这两种化合物进行了U2OS肿瘤杀伤活性研究,发现L的半数致死剂量(LD50)值为200 μM,而钠类似物的细胞毒性未降至60%以下。

结论

报道了一种与具有重要药用价值的双香豆素配体(L)形成的钠类似物(1)。晶体结构和DFT研究证实了与双香豆素形成阳离子钠化合物。由于1在溶液状态下不稳定,发现配体比钠类似物更具活性。观察到含钠的香豆素化合物的细胞毒性低于配体,其LD50值从未降至60%以下。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/562d/3716688/c7150e250732/1752-153X-7-110-i1.jpg

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