Synthesis and X-ray Structure Analysis of the Polymeric [Ag2(4-Amino-4H-1,2,4-triazole)2(NO3)]n(NO3)n Adduct: Anticancer, and Antimicrobial Applications

Mostafa A. El-Naggar, Hessa H. Al-Rasheed, Sarah A. AL-khamis, Ayman El-Faham, Morsy A. M. Abu-Youssef, Matti Haukka, Assem Barakat, Mona M. Sharaf, Saied M. Soliman
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Abstract

A new Ag(I) adduct was synthesized by the reaction of 4-amino-4H-1,2,4-triazole (L) with AgNO3. Its chemical structure was approved to be [Ag2(L)2(NO3)]n(NO3)n utilizing elemental analysis, FTIR spectra, and single crystal X-ray diffraction (SC-XRD). According to SC-XRD, there are two independent silver atoms which are coordinated differently depending on whether the nitrate anion is coordinated or not. The coordination geometry of Ag1 is a slightly bent configuration while Ag2 has a distorted tetrahedral structure. The 4-amino-4H-1,2,4-triazole ligand and one of the nitrate groups adopt bridging mode, which connects the crystallographically independent Ag1 and Ag2 atoms resulting in the formation of two-dimensional coordination polymer. Hirshfeld surface analysis displays that the intermolecular O···H (34.0%), Ag···N (10.6%), H···H (10.4%), Ag···O (9.3%), and N···H (9.0%) contacts are the most abundant interactions. Regarding anticancer activity, the [Ag2(L)2(NO3)]n(NO3)n demonstrates stronger cytotoxic efficacy against lung (IC50 = 3.50 ± 0.37 µg/mL) and breast (IC50 = 2.98 ± 0.26 µg/mL) carcinoma cell lines than the anticancer medication cis-platin. The [Ag2(L)2(NO3)]n(NO3)n complex showed interesting antibacterial and antifungal activities compared to the free components (AgNO3 and 4-amino-4H-1,2,4-triazole). The investigated silver(I) complex exhibits remarkable antibacterial activity against E. coli (MIC = 6.1 µg/mL) that may be on par with Gentamycin (MIC = 4.8 µg/mL). As a result, the newly synthesized Ag(I) complex could be suggested for anticancer and antibacterial treatments.
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高分子[Ag2(4-氨基- 4h -1,2,4-三唑)2(NO3)]n(NO3)n加合物的合成及x射线结构分析:抗癌和抗菌应用
采用4-氨基- 4h -1,2,4-三唑(L)与AgNO3反应合成了一种新的Ag(I)加合物。通过元素分析、FTIR光谱和单晶x射线衍射(SC-XRD)等手段证实其化学结构为[Ag2(L)2(NO3)]n(NO3)n。通过SC-XRD分析,发现两个独立的银原子根据硝酸阴离子是否配位而有不同的配位。Ag1的配位几何为微弯曲构型,而Ag2的配位几何为畸变四面体结构。4-氨基- 4h -1,2,4-三唑配体与其中一个硝酸基团采用桥接方式,将晶体独立的Ag1和Ag2原子连接起来,形成二维配位聚合物。Hirshfeld表面分析表明,分子间O··H(34.0%)、Ag··N(10.6%)、H··H(10.4%)、Ag··O(9.3%)和N··H(9.0%)接触最为丰富。在抗癌活性方面,[Ag2(L)2(NO3)]n(NO3)n对肺(IC50 = 3.50±0.37µg/mL)和乳腺(IC50 = 2.98±0.26µg/mL)癌细胞的细胞毒作用强于抗癌药物顺铂。与游离组分AgNO3和4-氨基- 4h -1,2,4-三唑相比,[Ag2(L)2(NO3)]n(NO3)n配合物显示出有趣的抗菌和抗真菌活性。所研究的银(I)复合物对大肠杆菌(MIC = 6.1µg/mL)具有显著的抗菌活性,可能与庆大霉素(MIC = 4.8µg/mL)相当。因此,新合成的Ag(I)配合物可用于抗癌和抗菌治疗。
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