Hasan Rashedul, Acharjee Mrityunjoy, Noor Rashed
Department of Microbiology, Stamford University Bangladesh, Dhaka, Bangladesh.
Tzu Chi Med J. 2016 Apr-Jun;28(2):49-53. doi: 10.1016/j.tcmj.2016.03.002. Epub 2016 Apr 23.
The increase in resistance of methicillin resistant (MRSA) strains to vancomycin has been perceived as a formidable threat in the therapeutic fields. The present study investigated the vancomycin resistance traits of MRSA isolates [vancomycin resistant (VRSA)] collected from burn patients.
Twenty-nine of 40 isolates of spp. were identified as which were further tested against 20 commercially available antibiotics to determine antibiotic susceptibility patterns.
Imipenem was the most potential antibiotic resulting in 90% sensitivity, followed by netilmicin, clindamycin, and nitrofurantoin (80% sensitivity). All isolates were found to be resistant to penicillin. Approximately 75% of them were found to be resistant to methicillin, oxacillin, azithromycin, cipro-floxacin, and tetracycline. Approximately 45% isolates exhibited resistance to amikacin, chloramphenicol, gentamycin, and tobramycin. Twenty-one of the 29 strains of were MRSA, of which 11 were resistant to vancomycin when employing the disc diffusion method. However, when the broth micro-dilution procedure was used to measure the minimum inhibitory concentration (MIC) of vancomycin, eight isolates were resistant to vancomycin, six with an MIC of 32 μg/mL and two with an MIC of 64 μg/mL.
A significant fraction of VRSA was found among MRSA strains in this study, revealing the necessity for new and effective drugs against MRSA.
耐甲氧西林金黄色葡萄球菌(MRSA)菌株对万古霉素的耐药性增加已被视为治疗领域的一个巨大威胁。本研究调查了从烧伤患者中分离出的耐万古霉素金黄色葡萄球菌(VRSA)菌株的万古霉素耐药特性。
40株葡萄球菌属菌株中的29株被鉴定为MRSA,进一步对其进行20种市售抗生素的测试,以确定抗生素敏感性模式。
亚胺培南是最具潜力的抗生素,敏感性达90%,其次是奈替米星、克林霉素和呋喃妥因(敏感性80%)。所有分离株均对青霉素耐药。约75%的分离株对甲氧西林、苯唑西林、阿奇霉素、环丙沙星和四环素耐药。约45%的分离株对阿米卡星、氯霉素、庆大霉素和妥布霉素耐药。29株葡萄球菌中有21株为MRSA,其中11株采用纸片扩散法时对万古霉素耐药。然而,当采用肉汤微量稀释法测定万古霉素的最低抑菌浓度(MIC)时,有8株分离株对万古霉素耐药,6株MIC为32μg/mL,2株MIC为64μg/mL。
本研究中在MRSA菌株中发现了相当一部分VRSA,这表明需要研发针对MRSA的新型有效药物。