El-Sheekh Mostafa M, Daboor Said M, Swelim Mahmoud A, Mohamed Soha
Botany Department, Faculty of Science, Tanta University, Tanta, Egypt.
Biomedical Science Department Al Farabi Colleges for Dentistry and Nursing, Riyadh, KSA.
Iran J Microbiol. 2014 Apr;6(2):112-9.
The present work was carried out to investigate the ability of Spirulina platensis to produce antimicrobial substance against bacteria and fungi.
The cells of the cyanobacterium were subjected to different extractions and the purified antagonistic compound proved to be effective against broad spectrum of bacteria and fungi. The antagonistic compound was purified using thin layer chromatography.
The results indicated that the IR spectrum showed bands at 1269 cm(-1), 1414 cm(-1) (C-O-C), 1643 cm(-1) (CO of amide),1563 cm(-1) (C = C) and broad band 3441 cm(-1) (of OH and NH)., (1)HNMR showed δ 0.8 (-CH3), δ 1.2 (-CH2), δ 4.2(-OH), δ 7.2(-NH), δ 7.4 and δ 7.7 (aromatic CH)., Mass spectrum showed molecular ion beak at m/z = 341 (abundance (0.03%). Also, the elemental analysis gave molecular formula,C15H18NO8.
The purified antimicrobial compound produced by S. platensis was more active against Gram positive, Gram negative bacteria and unicellular fungi, C. albicans. The highest biological activity was recorded against Escherichia coli, Pseudomonas aeruginosa, Bacillus subtilis and Aspergillus niger. The results of this investigation proved that cyanobacteria could be a good source for production of antimicrobial agents which could be effective when compared with contemporary antimicrobial compounds.
开展本研究以调查钝顶螺旋藻产生抗细菌和真菌抗菌物质的能力。
对蓝藻细胞进行不同提取,纯化后的拮抗化合物被证明对多种细菌和真菌有效。使用薄层色谱法对拮抗化合物进行纯化。
结果表明,红外光谱在1269 cm⁻¹、1414 cm⁻¹(C - O - C)、1643 cm⁻¹(酰胺的C = O)、1563 cm⁻¹(C = C)处有谱带,在3441 cm⁻¹处有宽谱带(OH和NH的);¹H NMR显示δ 0.8(-CH₃)、δ 1.2(-CH₂)、δ 4.2(-OH)、δ 7.2(-NH)、δ 7.4和δ 7.7(芳香族CH);质谱显示分子离子峰在m/z = 341(丰度0.03%)。此外,元素分析给出分子式为C₁₅H₁₈NO₈。
钝顶螺旋藻产生的纯化抗菌化合物对革兰氏阳性菌、革兰氏阴性菌和单细胞真菌白色念珠菌更具活性。对大肠杆菌、铜绿假单胞菌、枯草芽孢杆菌和黑曲霉的生物活性最高。本研究结果证明蓝藻可能是生产抗菌剂的良好来源,与当代抗菌化合物相比,这些抗菌剂可能有效。