数字农科院2.0

Synthesis, Antimicrobial Activities, and Model of Action of Indolyl Derivatives Containing Amino-Guanidinium Moieties

文献类型: 外文期刊

作者: Yu Xi Li;Xiang Geng;Qi Tao;Ruo Chen Hao;Ya Jun Yang;Xi Wang Liu;Jian Yong Li

作者机构:

关键词: aminoguanidine;antibacterial activity;indole;K. pneumoniae;synthesis

期刊名称: Molecules

ISSN: 1420-3049

年卷期: 2025 年 30 卷 4 期

页码:

收录情况: SCIE(2025版)

摘要: The objectives of the study were to design, synthesize, and evaluate the antibacterial activity of a series of novel aminoguanidine-indole derivatives. Thirty-seven new compounds were effectively synthesized through nucleophilic substitution reaction and guanidinylation reaction. Chemical structures of all the desired compounds were identified by NMR and HR-MS spectroscopy. Most of the synthesized compounds showed significant antibacterial activity against ESKAPE pathogens and clinical resistant Klebsiella pneumoniae (K. pneumoniae) isolates. K. pneumoniae is an important opportunistic pathogen that often threatens the health of immunocompromised people such as the elderly, children, and ICU patients. The most active compound 4P showed rapid bactericidal activity against resistant K. pneumoniae 2108 with MIC and MBC values that were 4 and 8 µg/mL, respectively. The hemolytic activity of 4P was low, with an HC50 value of 123.6 µg/mL. Compound 4P induced the depolarization of the bacterial membrane and disrupted bacterial membrane integrity and was not prone to antibiotic resistance. The dihydrofolate reductase (DHFR) activity was also notably inhibited by 4P in vitro. Molecular docking revealed that the aminoguanidine moiety and indole structure of 4P played an important role in binding to the target site of the K. pneumoniae dihydrofolate reductase (DHFR) receptor. In the mouse pneumonia model caused by K. pneumoniae, 4P improved the survival rate of mice, reduced bacterial loads, and alleviated tissues’ pathological injuries at a dosage of 4 mg/kg. Therefore, compound 4P may be a promising lead compound or drug candidate for antibacterial purposes against K. pneumoniae.

分类号:

  • 相关文献

[1]Synthesis, Antimicrobial Activities, and Model of Action of Novel Tetralone Derivatives Containing Aminoguanidinium Moiety. Qing Jie Zhang,Yu Xi Li,Wen Bo Ge,Li Xia Bai,Xiao Xu,Ya Jun Yang,Xi Wang Liu,Jian Yong Li. 2025

[2]Synthesis and Antibacterial Activity of Novel Pleuromutilin Derivatives. Liu, Huixian,Xiao, Sui,Zhang, Lifang,Wang, Xiaoyang,Xue, Feiqun,Zhang, Depeng,Mu, Shuhua.

[3]Synthesis and antibacterial activities of 1-substituted aryl-4-ethoxycarbonyi-5-acylamino-1,2,3-triszoles. Chen, MD,Lu, SJ,Yang, YH,Du, XL,Yuan, GP,Yang, SY. 2001

[4]Synthesis and antibacterial evaluation of novel pleuromutilin derivatives. Shang, Ruofeng,Liu, Yu,Guo, Wenzhu,Guo, Zhiting,Hao, Baocheng,Liang Jianping,Xin, Zhijun.

[5]Discovery of novel pleuromutilin derivatives as potent antibacterial agents. Yuhang Zhou,Yunpeng Yi,Jiangkun Wang,Zheng Yang,Qinqin Liu,Wanxia Pu,Ruofeng Shang. 2022

[6]Synthesis and evaluation of novel pleuromutilin derivatives targeting the 50S ribosomal subunit for antibacterial ability. Qinqin Liu,Hongjuan Zhang,Yun Peng Yi,Panpan Wang,Wanxia Pu,Shengyi Wang,Ruofeng Shang. 2023

[7]Discovery of novel thiazole-pleuromutilin derivatives with potent antibacterial activity. Xian Long Qi,He Chao Zhang,Xiao Xu,Xi Wang Liu,Ya Jun Yang,Zhun Li,Jian Yong Li. 2025

[8]植物甾醇脂肪酸酯的功效和合成方法的研究进展(英文). 王明霞,黄沁洁,王江薇,黄凤洪. 2007

[9]Fingolimod Inhibits Exopolysaccharide Production and Regulates Relevant Genes to Eliminate the Biofilm of K. pneumoniae. Xiang Geng,Ya Jun Yang,Zhun Li,Wen Bo Ge,Xiao Xu,Xi Wang Liu,Jian Yong Li. 2024

[10]Fingolimod synergizes and reverses K. pneumoniae resistance to colistin. Xiang Geng,Zhen Dong Zhang,Yu Xi Li,Ruo Chen Hao,Ya Jun Yang,Xi Wang Liu,Jian Yong Li. 2024

[11]Poly(A) polymerase I participates in the indole regulatory pathway of Pantoea agglomerans YS19. Li, Zihua,Jiang, Jing,Yu, Xuemei,Feng, Yongjun,Wu, Cunxiang,Shen, Delong.

[12]Indole affects the formation of multicellular aggregate structures in Pantoea agglomerans YS19. Yu, Xuemei,Jiang, Jing,Liang, Chen,Zhang, Xiao,Wang, Jieru,Feng, Yongjun,Shen, Delong.

[13]Selective Toxicity of Secondary Metabolites from the Entomopathogenic Bacterium Photorhabdus luminescens sonorensis against Selected Plant Parasitic Nematodes of the Tylenchina Suborder. Kusakabe A., 王辰., Xu Y.-M., Molnár I., Stock S.P.. 2022

[14]An Odorant Receptor from the Proboscis of the Cotton Bollworm Helicoverpa armigera (Lepidoptera: Noctuidae) Narrowly Tuned to Indole. Guo, Mengbo,Ren, Xueting,Liu, Yang,Wang, Guirong. 2022

[15]A new l-serine binding orphan SerBP affects indole synthesis in Pantoea ananatis. Zhang, Lei,Yu, Jiajia,Zheng, Jing,Wu, Liqing,Zhou, Xinyi,Ban, Yali,Sun, Yuanhao,Zhang, Haotian,Feng, Yongjun. 2023

[16]The Effect of Lactobacillus plantarum on the Fecal Microbiota, Short Chain Fatty Acids, Odorous Substances, and Blood Biochemical Indices of Cats. Bing Han,Shukun Liang,Jintao Sun,Hui Tao,Zhenlong Wang,Baosheng Liu,Xiumin Wang,Jie Liu,Jinquan Wang. 2024

[17]Metabolic Analysis of Indole-degradated Metabolites in Two Acinetobacter spp.. T. A. Tesso,G. Liu. 2023

[18]A Facile Synthesis of DNA-Magnetic-Fluorescent Composite Particles. Wang, Miao,Xu, Siyuan,She, Yongxin,Jin, Maojun,Jin, Fen,Shao, Hua,Wang, Jing,Wang, Miao,Xu, Siyuan,She, Yongxin,Jin, Maojun,Jin, Fen,Shao, Hua,Wang, Jing,Wang, Miao,Xu, Siyuan,She, Yongxin,Jin, Maojun,Jin, Fen,Shao, Hua,Wang, Jing. 2012

[19]Synthesis and In Vitro Anticancer Activity of Novel 2-((3-thioureido)carbonyl)phenyl Acetate Derivatives. Xiong, Lin,Gao, Ya-Qin,Niu, Chu-E,Wang, Hong-Bo,Li, Wei-Hong,Xiong, Lin,Gao, Ya-Qin,Niu, Chu-E,Wang, Hong-Bo,Li, Wei-Hong. 2014

[20]Synthesis, Crystal Structure and Biological Activity of N-tert-butyl-N-(4-methyl-1,2,3-thiadiazole)-5-yl-N '-(4-methyl-1,2,3-thiadiazole)-5-formyl-N '-3,5-dichloropyridin-2-yl-diacylhydrazine. Wang Huan,Fu Yi-Feng,Fan Zhi-Jin,Song Hai-Bin,Wu Qing-Jun,Zhang You-Jun,Belskaya, N. P.,Bakulev, V. A.. 2011

作者其他论文 更多>>