Buldain Daniel, Gortari Castillo Lihuel, Marchetti María Laura, Julca Lozano Karen, Bandoni Arnaldo, Mestorino Nora
Laboratorio de Estudios Farmacológicos y Toxicológicos (LEFyT), Facultad de Ciencias Veterinarias, Universidad Nacional de La Plata, La Plata B1900, Argentina.
Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), La Plata B1900, Argentina.
Antibiotics (Basel). 2021 Feb 23;10(2):222. doi: 10.3390/antibiotics10020222.
Essential oils (EO) are a great antimicrobial resource against bacterial resistance in public health. Math models are useful in describing the growth, survival, and inactivation of microorganisms against antimicrobials. We evaluated the antimicrobial activity of EO obtained from plants placed in the province of Buenos Aires (Argentina) against The minimum inhibitory and bactericidal concentrations were close and decreased, slightly acidifying the medium from pH 7.4 to 6.5 and 5.0. This result was also evidenced by applying a sigmoid model, where the time and EO concentration necessaries to achieve 50% of the maximum effect decreased when the medium was acidified. Moreover, at pH 7.4, applying the Gompertz model, we found that subinhibitory concentrations of EO decreased the growth rate and the maximum population density and increased the latency period concerning the control. Additionally, we established physicochemical parameters for quality control and standardization of EO. Mathematical modeling allowed us to estimate key parameters in the behavior of and EO at different pH. This is interesting in situations where the pH changes are relevant, such as the control of intracellular infections in public health or the development of preservatives for the food industry.
精油(EO)是公共卫生领域对抗细菌耐药性的一种重要抗菌资源。数学模型有助于描述微生物在抗菌剂作用下的生长、存活和失活情况。我们评估了从布宜诺斯艾利斯省(阿根廷)的植物中提取的精油对[具体微生物未提及]的抗菌活性。最低抑菌浓度和杀菌浓度相近且降低,使培养基从pH 7.4略微酸化至6.5和5.0。通过应用S型模型也证明了这一结果,当培养基酸化时,达到最大效应50%所需的时间和精油浓度会减少。此外,在pH 7.4时,应用Gompertz模型,我们发现亚抑菌浓度的精油降低了生长速率和最大种群密度,并延长了相对于对照的延迟期。此外,我们建立了精油质量控制和标准化的理化参数。数学建模使我们能够估计精油在不同pH下行为的关键参数。在pH变化相关的情况下,如公共卫生中细胞内感染的控制或食品工业防腐剂的开发,这一点很有趣。