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Selection of appropriate analytical tools to determine the potency and bioactivity of antibiotics and antibiotic resistance

机译:选择适当的分析工具以确定抗生素的效力和生物活性以及抗生素耐药性

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Antibiotics are the chemotherapeutic agents that kill or inhibit the pathogenic microorganisms. Resistance of microorganism to antibiotics is a growing problem around the world due to indiscriminate and irrational use of antibiotics. In order to overcome the resistance problem and to safely use antibiotics, the correct measurement of potency and bioactivity of antibiotics is essential. Microbiological assay and high performance liquid chromatography (HPLC) method are used to quantify the potency of antibiotics. HPLC method is commonly used for the quantification of potency of antibiotics, but unable to determine the bioactivity; whereas microbiological assay estimates both potency and bioactivity of antibiotics. Additionally, bioassay is used to estimate the effective dose against antibiotic resistant microbes. Simultaneously, microbiological assay addresses the several parameters such as minimal inhibitory concentration (MIC), minimum bactericidal concentration (MBC), mutation prevention concentration (MPC) and critical concentration (Ccr) which are used to describe the potency in a more informative way. Microbiological assay is a simple, sensitive, precise and cost effective method which gives reproducible results similar to HPLC. However, the HPLC cannot be a complete substitute for microbiological assay and both methods have their own significance to obtain more realistic and precise results.
机译:抗生素是杀死或抑制病原微生物的化学治疗剂。由于对抗生素的不加选择和不合理的使用,微生物对抗生素的抗性在世界范围内是一个日益严重的问题。为了克服耐药性问题并安全使用抗生素,正确测量抗生素的效力和生物活性至关重要。微生物测定和高效液相色谱(HPLC)方法用于量化抗生素的效力。 HPLC方法通常用于定量抗生素效力,但无法确定其生物活性。而微生物分析可同时评估抗生素的效力和生物活性。另外,生物测定法用于估计针对抗生素抗性微生物的有效剂量。同时,微生物检测解决了几个参数,例如最小抑菌浓度(MIC),最小杀菌浓度(MBC),突变预防浓度(MPC)和临界浓度(Ccr),这些信息用于以更丰富的方式描述效价。微生物测定是一种简单,灵敏,精确且具有成本效益的方法,可提供与HPLC相似的可重现结果。但是,HPLC不能完全替代微生物测定,并且这两种方法对于获得更真实,更精确的结果都具有各自的意义。

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