» Articles » PMID: 2014983

Novel Method for Measurement of Outer Membrane Permeability to New Beta-lactams in Intact Enterobacter Cloacae Cells

Overview
Specialty Pharmacology
Date 1991 Jan 1
PMID 2014983
Citations 16
Authors
Affiliations
Soon will be listed here.
Abstract

The ability of five new beta-lactams to permeate the outer membrane of intact Enterobacter cloacae beta-lactamase-overproducing cells was measured by using a high-pressure liquid chromatography (HPLC)-based technique that avoided certain possible artifacts of the traditional methods. Low concentrations of antibiotics were mixed with bacterial suspensions, and at different times, the cells were removed from the medium by filtration. Residual beta-lactam concentrations in the medium were then assessed by HPLC and UV detection. The assay was performed under conditions in which no beta-lactamase activity was detected in the filtrate and the number of viable cells remained constant during the experiment. Outer membrane permeability was assessed with the Zimmermann-Rosselet equation, in which outer membrane permeability was rate limiting for hydrolysis of the beta-lactam by periplasmic beta-lactamase. Thus, the rate of disappearance of beta-lactam was equal to the rate of outer membrane permeation. Preincubation of bacterial suspensions with 300 micrograms of cloxacillin per ml inhibited the hydrolysis of beta-lactams by intact cells, demonstrating that beta-lactam hydrolysis by periplasmic beta-lactamase was essential in order to allow measurement of outer membrane permeability by this method. Permeability coefficients (P) were calculated from the Zimmermann-Rosselet equation and were independent of the external concentration of antibiotic over a 100-fold concentration range. Cefepime and cefpirome exhibited rates of outer membrane permeation 5- to 20-fold higher than those of carumonam, ceftriaxone, and cefotaxime. Thus, the presence of a positive charge in the 3-lateral chain increased the permeation ability of beta-lactam molecules considerably.

Citing Articles

Donnan Potential across the Outer Membrane of Gram-Negative Bacteria and Its Effect on the Permeability of Antibiotics.

Alegun O, Pandeya A, Cui J, Ojo I, Wei Y Antibiotics (Basel). 2021; 10(6).

PMID: 34208097 PMC: 8230823. DOI: 10.3390/antibiotics10060701.


The Whole Is Bigger than the Sum of Its Parts: Drug Transport in the Context of Two Membranes with Active Efflux.

Rybenkov V, Zgurskaya H, Ganguly C, Leus I, Zhang Z, Moniruzzaman M Chem Rev. 2021; 121(9):5597-5631.

PMID: 33596653 PMC: 8369882. DOI: 10.1021/acs.chemrev.0c01137.


Emerging Strategies to Combat β-Lactamase Producing ESKAPE Pathogens.

Vrancianu C, Gheorghe I, Dobre E, Czobor Barbu I, Cristian R, Popa M Int J Mol Sci. 2020; 21(22).

PMID: 33198306 PMC: 7697847. DOI: 10.3390/ijms21228527.


Novel Cassette Assay To Quantify the Outer Membrane Permeability of Five β-Lactams Simultaneously in Carbapenem-Resistant and .

Kim T, Tao X, Moya B, Jiao Y, Basso K, Zhou J mBio. 2020; 11(1).

PMID: 32047131 PMC: 7018653. DOI: 10.1128/mBio.03189-19.


β-Lactams and β-Lactamase Inhibitors: An Overview.

Bush K, Bradford P Cold Spring Harb Perspect Med. 2016; 6(8).

PMID: 27329032 PMC: 4968164. DOI: 10.1101/cshperspect.a025247.


References
1.
Zimmermann W, Rosselet A . Function of the outer membrane of Escherichia coli as a permeability barrier to beta-lactam antibiotics. Antimicrob Agents Chemother. 1977; 12(3):368-72. PMC: 429920. DOI: 10.1128/AAC.12.3.368. View

2.
Bellido F, Pechere J, Hancock R . Reevaluation of the factors involved in the efficacy of new beta-lactams against Enterobacter cloacae. Antimicrob Agents Chemother. 1991; 35(1):73-8. PMC: 244944. DOI: 10.1128/AAC.35.1.73. View

3.
Sawai T, MATSUBA K, Yamagishi S . A method for measuring the outer membrane-permeability of beta-lactam antibiotics in gram-negative bacteria. J Antibiot (Tokyo). 1977; 30(12):1134-6. DOI: 10.7164/antibiotics.30.1134. View

4.
Kojo H, Shigi Y, Nishida M . A novel method for evaluating the outer membrane permeability to beta-lactamase-stable beta-lactam antibiotics. J Antibiot (Tokyo). 1980; 33(3):310-6. DOI: 10.7164/antibiotics.33.310. View

5.
Nikaido H, Rosenberg E, Foulds J . Porin channels in Escherichia coli: studies with beta-lactams in intact cells. J Bacteriol. 1983; 153(1):232-40. PMC: 217361. DOI: 10.1128/jb.153.1.232-240.1983. View