Gas Chromatography-Mass Spectroscopy and antibacterial activity of stem bark of Terminalia glaucescens on some multidrug-resistant gram-negative bacteria

G. C. Agu, A. M. Onabanjo, O. Efuntoye, A. O. Banjo, I. T. Sossou
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Abstract

Frequent antimicrobial resistance of bacterial pathogens has led to a search for plant origin to synthesize new drugs. Hence, the antibacterial potential of the stem bark part of Terminalia glaucescens plant needs to ascertain. The 162 pure bacteria isolated from the patient’s clinical samples were confirmed using standard procedures to be Escherichia coli (65), Pseudomonas aeruginosa (52), and Klebsiella pneumonia (45). The isolates were tested against seven commonly available antibiotics and the extracts. The identified bark of T. glaucescens was prepared for qualitative analysis using standard methods and also analyzed quantitatively using Gas Chromatography-Mass Spectroscopy (GC-MS). Alkaloid, saponin, flavonoid, steroids, tannin, terpenoid, and phenol were identified. The GC-MS analysis revealed 13 bioactive constituents with Neophytadiene, Squalene, 3, 7, 11, 15-Tetramethyl-2-hexadecen-1-ol and 9-eicosyne as active components. Antibiogram study revealed that most isolates, especially E. coli and P. aeruginosa, were 100% resistant to more than two antibiotics. The antibacterial activity of the stem bark of T. glaucescens was reflected by inhibition zones, ranging from 5.5 mm to 12.5 mm; Escherichia coli had the highest zone of inhibition (12.5 mm). The presence of phytochemicals and bioactive components in this stem bark suggests its effectiveness in treating infections and producing pharmaceutical products.
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气相色谱-质谱分析及其对几种多重耐药革兰氏阴性菌的抑菌活性
细菌病原菌的频繁耐药性导致了对植物来源的研究以合成新药。因此,尚需进一步研究毛菖蒲茎皮部分的抑菌潜力。从患者临床样本中分离出的162种纯细菌经标准程序确认为大肠杆菌(65)、铜绿假单胞菌(52)和肺炎克雷伯菌(45)。对分离株进行了抗7种常用抗生素及其提取物的试验。采用标准方法对鉴定出的山参树皮进行定性分析,并采用气相色谱-质谱联用技术对其进行定量分析。鉴定出生物碱、皂苷、类黄酮、类固醇、单宁、萜类和酚。GC-MS分析发现13种活性成分,其中新叶二烯、角鲨烯、3,7,11,15 -四甲基-2-十六烯-1-醇和9-二烯酮为活性成分。抗生素谱研究显示,大多数分离株,特别是大肠杆菌和铜绿假单胞菌,对两种以上抗生素100%耐药。青松茎皮的抑菌活性表现在5.5 ~ 12.5 mm的抑制区范围内;大肠杆菌的抑制区最高(12.5 mm)。这种茎皮中存在的植物化学物质和生物活性成分表明其在治疗感染和生产药品方面的有效性。
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