School of Life Sciences, B. S Abdul Rahman Crescent Institute of Science and Technology, Vandalur, Chennai, India.
Braz J Microbiol. 2023 Jun;54(2):827-839. doi: 10.1007/s42770-023-00945-z. Epub 2023 Mar 11.
Nyctanthes arbor-tristis is one of India's valuable and populous medicinal plants which belongs to the family Oleaceae, and widely recognize as night jasmine. Over the years till date, different parts of the plant are used to treat or cure different ailments via various means of traditional medicine. Endophytes are organisms that live in the cell or body of other organisms with no apparent negative impact on the host which they inhabit and are of great source of novel bioactive compounds possessing important economic value. Secondary metabolites were identified in the aqueous extract of Cronobactersakazakii through quantitative phytochemical and GC-MS analysis. Antibacterial activity of the extract against clinical and ATCC strains of E. coli was assessed. Biological activity spectra of these compounds were predicted and categorized either as probably active (P) or probably inactive (P). Drug-likeness of bioactive compounds was determined as well as their ability to target protein (CTXM-15) responsible for antibiotic resistance in Gram-negative bacteria. Results revealed the presence of active compounds with pharmacological activities and considerable pharmacokinetics parameters. In addition, ligand-protein interactions of compounds with CTXM-15 proteins were identified. These results suggest that bioactive compounds of endophytic Cronobactersakazakii could contain novel chemical entities for the development of antibiotics against pathogenic microbes and other drugs for the amelioration of several infections.
印度的一种有价值且广泛分布的药用植物——八角枫属植物,属于木犀科,通常被称为夜茉莉。多年来,该植物的不同部位通过各种传统医学方法被用于治疗或治愈不同的疾病。内生菌是指生活在其他生物体细胞或体内的生物体,对其所栖息的宿主没有明显的负面影响,是具有重要经济价值的新型生物活性化合物的重要来源。通过定量植物化学和 GC-MS 分析,从 Cronobacter sakazakii 的水提物中鉴定出次生代谢物。评估了提取物对临床和 ATCC 大肠杆菌菌株的抗菌活性。预测并将这些化合物的生物活性谱分类为可能有效(P)或可能无效(P)。还确定了生物活性化合物的类药性及其靶向负责革兰氏阴性菌抗生素耐药性的蛋白质(CTXM-15)的能力。结果表明,内生 Cronobacter sakazakii 的生物活性化合物具有药理学活性和相当大的药代动力学参数。此外,还确定了化合物与 CTXM-15 蛋白的配体-蛋白相互作用。这些结果表明,内生 Cronobacter sakazakii 的生物活性化合物可能含有针对致病微生物的抗生素和其他改善多种感染的药物的新型化学实体。