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Titlebook: Antimicrobial Drug Resistance; Mechanisms of Drug R Douglas L. Mayers Book 2009 Humana Press 2009 Drug.HIV.Handbook.Hepatitis.Malaria.Mayer

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发表于 2025-3-21 17:54:14 | 显示全部楼层 |阅读模式
期刊全称Antimicrobial Drug Resistance
期刊简称Mechanisms of Drug R
影响因子2023Douglas L. Mayers
视频video
学科分类Infectious Disease
图书封面Titlebook: Antimicrobial Drug Resistance; Mechanisms of Drug R Douglas L. Mayers Book 2009 Humana Press 2009 Drug.HIV.Handbook.Hepatitis.Malaria.Mayer
影响因子This ? rst edition of Antimicrobial Drug Resistance grew out of a desire by the editors and authors to have a comprehensive resource of information on antimicrobial drug resistance that encompassed the current information available for bacteria, fungi, protozoa and viruses. We believe that this information will be of value to clinicians, epidemiologists, microbiologists, virologists, parasitologists, public health authorities, medical students and fellows in training. We have endeavored to provide this information in a style which would be accessible to the broad community of persons who are concerned with the impact of drug resistance in our cl- ics and across the broader global communities. Antimicrobial Drug Resistance is divided into Volume 1 which has sections covering a general overview of drug resistance and mechanisms of drug resistance ? rst for classes of drugs and then by individual microbial agents including bacteria, fungi, protozoa and viruses. Volume 2 addresses clinical, epidemiologic and public health aspects of drug resistance along with an overview of the conduct and interpretation of speci? c drug resistance assays. Together, these two volumes offer a comprehens
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https://doi.org/10.1007/978-981-13-3444-3d by a number of simple phenomena in antibiotic resistance. Variability is created by random mutation, and some of these variants (for instance those with a mutation in the antibiotic target) become resistant. These variants are selected by antibiotic use and consequently they increase the frequency
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Solid State Physics Literature Guidese antimicrobial agents are emerging. Bacteria with this phenotype are designated multidrug-resistant (MDR) or pan-drug resistant (PDR) strains. What is the genetic basis of this remarkable survival skill? Are advantageous changes in the genome always random? Is antibiotic pressure the cause of growi
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Saurav Z. K. Sajib,Rosalind Sadleirnd/or function of the microorganism. In order to do their job effectively, antimicrobial agents must interact with these targets in a manner that precludes the normal functioning of the target molecule. Moreover, their interactions with the target must be fairly specifi c, otherwise the potential fo
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J. L. Counil,M. Menvielle,J. L. Le Mouelibiotic therapy, and that an alternative drug must be used. In this chapter, we will concern ourselves with the growing number of bacterial infections in which antibiograms of the causative organism show sensitivity to standard antibiotics in readily attainable concentrations, but the infection fail
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