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首页> 外文期刊>Clinical Phytoscience >Improved micropropagation of Bacopa monnieri (L.) Wettst. (Plantaginaceae) and antimicrobial activity of in vitro and ex vitro raised plants against multidrug-resistant clinical isolates of urinary tract infecting (UTI) and respiratory tract infecting (RTI) bacteria
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Improved micropropagation of Bacopa monnieri (L.) Wettst. (Plantaginaceae) and antimicrobial activity of in vitro and ex vitro raised plants against multidrug-resistant clinical isolates of urinary tract infecting (UTI) and respiratory tract infecting (RTI) bacteria

机译:Bacopa monnieri(L.)Wettst的改良微繁殖。 (Plantaginaceae)和体外和离体培养植物对尿道感染(UTI)和呼吸道感染(RTI)细菌多药耐药临床分离株的抗菌活性

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Nowadays the multidrug-resistant (MDR) bacterial pathogens are a major concern of the medical science. Medicinal plants may be considered as new sources for producing antibacterial agents. The present study aimed to standardize an improved method for micropropagation and in vitro biomass production of Bacopa monnieri. Second aim is to evaluate the antimicrobial potency of in vitro cultured and ex vitro field grown micropropagated plants against different MDR clinical isolates of human urinary tract infecting (UTI) and respiratory tract infecting (RTI) pathogens. Methods Micropropagation of B. monnieri were performed following standard tissue culture method. The role of 6-benzylaminopurine (BAP), kinetin and spermidine on multiple shoot induction were evaluated. Antimicrobial activity of ethanol, methanol and acetone extract of in vitro and ex vitro plants of B. monnieri were screened by agar cup method against five MDR-UTI bacteria, four MDR-RTI bacteria and three microbial type culture collection (MTCC) bacteria and two fungi. Minimum inhibitory concentration (MIC), minimum bactericidal concentration (MBC) and minimum fungicidal concentration (MFC) were also determined. Results Synergistic effect of BAP and spermidine had improved shoot induction with a maximum of 123.8 shoot-buds per explant. Optimum micropropagation with 34.9 elongated shoots per explant was recorded in Murashige and Skoog medium containing 1.5?mg/L BAP and 2.0?mM spermidine. Methanolic extract of ex vitro plants showed maximum activity against MDR-UTI strain of Escherichia coli (sample-9) [ZI 18?±?0.68?mm, MIC 2.5?μg/mL, MBC 5.0?μg/mL]. Acetone extract of ex vitro plant exhibited maximum inhibition against MDR-RTI strain of Klebsiella pneumoniae (sample-38) [ZI 14?±?0.22?mm, MIC 5.0?μg/mL, MBC 7.5?μg/mL]. The extracts of B. monnieri were bactericidal rather than bacteriostatic against all UTI and RTI bacteria tested. Conclusions The present manuscript demonstrated an efficient in vitro method for large scale biomass production of B. monnieri . Furthermore, the methanolic extract of B. monnieri have potential antimicrobial activity against clinical isolates of MDR-UTI and MDR-RTI bacterial strains. Hence this plant may further use to treat these infectious diseases. The comparative results show ex vitro grown plants have slightly better antimicrobial activities as compared to the in vitro plants.
机译:如今,耐多药(MDR)细菌病原体已成为医学界的主要关注点。药用植物可被视为生产抗菌剂的新来源。本研究旨在标准化改良的方法用于Bacopa monnieri的微繁殖和体外生物量生产。第二个目标是评估体外培养和体外田间种植的微繁殖植物对人尿路感染(UTI)和呼吸道感染(RTI)病原体的不同MDR临床分离株的抗菌效力。方法按照标准的组织培养方法进行小菜蛾微繁殖。评估了6-苄氨基嘌呤(BAP),激动素和亚精胺在多次芽诱导中的作用。通过琼脂杯法筛选了孟氏双歧杆菌离体和离体植物的乙醇,甲醇和丙酮提取物对5种MDR-UTI细菌,4种MDR-RTI细菌和3种微生物类型培养物收集(MTCC)细菌的抗菌活性。菌类。还确定了最小抑菌浓度(MIC),最小杀菌浓度(MBC)和最小杀菌浓度(MFC)。结果BAP和亚精胺的协同作用提高了芽的诱导,每个外植体最多有123.8个芽芽。在含有1.5?mg / L BAP和2.0?mM亚精胺的Murashige和Skoog培养基中记录了最佳的微繁殖,每个外植体有34.9个细长芽。离体植物的甲醇提取物对大肠杆菌(样品9)的MDR-UTI菌株显示出最大的活性[ZI为18±±0.68μmm,MIC为2.5μg/ mL,MBC为5.0μg/ mL]。离体植物的丙酮提取物对肺炎克雷伯菌(样品38)的MDR-RTI菌株表现出最大的抑制作用[ZI14≤±0.22μmm,MIC5.0μg/ mL,MBC7.5μg/ mL]。 B. monnieri的提取物对所有测试的UTI和RTI细菌具有杀菌作用,而不具有抑菌作用。结论本手稿证明了一种有效的大规模生产B. monnieri生物量的方法。此外,B。monnieri的甲醇提取物对MDR-UTI和MDR-RTI细菌菌株的临床分离株具有潜在的抗菌活性。因此,该植物可进一步用于治疗这些传染病。比较结果表明,离体生长的植物与离体植物相比具有稍微更好的抗菌活性。

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