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The Rate of Killing of Escherichia coli by -Lactam Antibiotics Is Strictly Proportional to the Rate of Bacterial Growth

Microbiology · 1986 · Vol. 132(5) · pp. 1297–1304
Elaine TuomanenRobert CozensW. TOSCHO. ZákAlexander Tomasz

Abstract

Nongrowing bacteria evade the bactericidal activity of beta-lactam antibiotics. We sought to determine if slow growth rate also alters bactericidal activity. The bactericidal activity of two beta-lactams on Escherichia coli grown in glucose limited chemostats was compared for generation times ranging from 0.7 to 12 h. The degree of killing varied with drug structure and with E. coli strain. However, all killing rates were a constant function of the bacterial generation time: slowly growing bacteria became progressively more phenotypically tolerant to beta-lactam antibiotics as the generation time was extended.

Antibiotics Pharmacokinetics and EfficacyAntibiotic Resistance in BacteriaPharmaceutical and Antibiotic Environmental ImpactsEscherichia coliAntibioticsBacteriaMicrobiologyEnterobacteriaceaeBiologyBacterial growthLactamChemistryBiochemistry

MeSH terms

Anti-Bacterial AgentsBacterial ProteinsMuramoylpentapeptide CarboxypeptidaseCarrier ProteinsCefamandoleCell WallEscherichia coliHexosyltransferasesPenicillin GPenicillin ResistancePeptidyl TransferasesCefonicidPenicillin-Binding Proteins
Citations
487
FWCI
9.93
field-weighted impact
References
29
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99%
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References
Properties of the Penicillin‐Binding Proteins of <i>Escherichia coli</i> K12
European Journal of Biochemistry · 1977 · 633 citations
Observations on the Mechanism of Action of Penicillin.
Experimental Biology and Medicine · 1942 · 438 citations
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