Bioactivity of pyocyanin of Pseudomonas aeruginosa clinical isolates against a variety of human pathogenic bacteria and fungi species

Z. J. Jameel, A. Hussain, Muthana Abdulkhader Al-Mahdawi, Nuha F. Abed Alkerim, Eman Sabah Abd Alrahman
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引用次数: 8

Abstract

Pyocyanin is blue pigment redox active, secondary metabolites produced by P. aeruginosa. The present study investigated the bioactivity of pyocyanin against certain types of bacteria and fungi causing human infections Objectives: Pyocyanin is blue pigment redox active, secondary metabolites produced by P. aeruginosa. The current study deals with biosynthesis, purification and bioactivity of pyocyanin produced by P. aeruginosa. Design: Pyocyanin extraction was done by chloroform method and concentration was determined by multiplying the optical density at 520 nm by 17.072 expressed as µg/ml. Biological activity of pyocyanin was determined by well diffusion procedure. Results: According to the source of infection, results showed that P. aeruginosa were most common in ear infection (30%) followed by wounds (22%), burns (17%), urine (13%) and each in stool and diabetes (9%). In this study the high resistance of  P. aeruginosa  isolates to antibiotics were 19 (82.6 %) to piperacillin followed by 10(43.5%) to aztreonem, 8(34.8%) to meropenem, 6(26.1%) to amikacin, 5(21.7%) to ciprofloxacin then 2(8.7%) to cefotaxime. the urine isolate produced the largest amount of pyocyanin (15.894 µg/ml). pyaocyanin have antimicrobial activity against Pathogenic bacteria: Shigella,  Staphyllococcus aureus and  Staphyllococcus epidermedis. and pathogenic fungi and yeast: Aspergillus niger, Penicillium spp., Rhizopus spp, Trichophyton  mentagrophyte, Rhodotorula spp., Alternaria alternate , Trichophyton rubrum and Candida spp Conclusions: cefotaxime is the best antibiotic for P. aeruginosa. Antimicrobial activity of pyocyanin against gram positive more than gram negative bacteria but less than that observed against fungi (molds and yeast).
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铜绿假单胞菌临床分离株pyocyanin对多种人类致病菌和真菌的生物活性
Pyocyanin是一种具有氧化还原活性的蓝色色素,由P. aeruginosa产生的次生代谢产物。目的:pyocyanin是一种具有氧化还原活性的蓝色色素,是铜绿假单胞菌产生的次生代谢产物。本文研究了铜绿假单胞菌产花青素的生物合成、纯化及其生物活性。设计:花青素采用氯仿法提取,520 nm处光密度乘以17.072(µg/ml)测定浓度。采用孔扩散法测定了花青素的生物活性。结果:按感染源分类,铜绿假单胞菌以耳部感染最常见(30%),其次为伤口感染(22%)、烧伤感染(17%)、尿液感染(13%),大便感染和糖尿病感染次之(9%)。本研究中铜绿假单胞菌对抗菌药物的高耐药率依次为:哌拉西林19株(82.6%)、氨曲奈姆10株(43.5%)、美罗培南8株(34.8%)、阿米卡星6株(26.1%)、环丙沙星5株(21.7%)、头孢噻肟2株(8.7%)。尿分离物产生最多的pyocyanin(15.894µg/ml)。pyaocyanin对致病菌志贺氏菌、金黄色葡萄球菌和表皮葡萄球菌具有抗菌活性。病原菌和酵母菌:黑曲霉、青霉、根霉、茅多菌毛癣菌、红酵母毛癣菌、互生毛癣菌、念珠菌。结论:头孢噻肟是铜绿假单胞菌的最佳抗生素。花青素对革兰氏阳性菌的抑菌活性高于革兰氏阴性菌,但对真菌(霉菌和酵母)的抑菌活性较低。
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