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The Journal of Antimicrobial Chemotherapy
|
October 1, 1990
Multiple mechanisms of erythromycin resistance
E A Eady, J I Ross, J H Cove
Gene
|
December 12, 1996
Minimal functional system required for expression of erythromycin resistance by msrA in Staphylococcus aureus RN4220
J I Ross, E A Eady, J H Cove, et al.
Gene
|
February 3, 1995
Identification of a chromosomally encoded ABC-transport system with which the staphylococcal erythromycin exporter MsrA may interact
J I Ross, E A Eady, J H Cove, et al.
Antimicrobial Agents and Chemotherapy
|
July 14, 1998
16S rRNA mutation associated with tetracycline resistance in a gram-positive bacterium
J I Ross, E A Eady, J H Cove, et al.
The Journal of Antimicrobial Chemotherapy
|
August 10, 2000
Antibiotic resistance patterns of aerobic coryneforms and furazolidone-resistant Gram-positive cocci from the skin surface of the human axilla and fourth toe cleft
E A Eady, P Coates, J I Ross, et al.
Dermatology (Basel, Switzerland)
|
April 29, 1998
Resistance to erythromycin and clindamycin in cutaneous propionibacteria is associated with mutations in 23S rRNA
J I Ross, E A Eady, J H Cove, et al.
The Journal of Antimicrobial Chemotherapy
|
December 1, 1989
Characterisation and molecular cloning of the novel macrolide-streptogramin B resistance determinant from Staphylococcus epidermidis
J I Ross, A M Farrell, E A Eady, et al.
The British Journal of Dermatology
|
September 1, 1994
Effects of benzoyl peroxide and erythromycin alone and in combination against antibiotic-sensitive and -resistant skin bacteria from acne patients
E A Eady, M R Farmery, J I Ross, et al.
The Journal of Antimicrobial Chemotherapy
|
April 1, 1989
Macrolide-lincosamide-streptogramin B (MLS) resistance in cutaneous propionibacteria: definition of phenotypes
E A Eady, J I Ross, J H Cove, et al.
Molecular Microbiology
|
July 1, 1990
Inducible erythromycin resistance in staphylococci is encoded by a member of the ATP-binding transport super-gene family
J I Ross, E A Eady, J H Cove, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 15) with videos related to
Sort By:
Page
of 2
The Journal of Antimicrobial Chemotherapy
|
October 1, 1990
Multiple mechanisms of erythromycin resistance
E A Eady, J I Ross, J H Cove
Gene
|
December 12, 1996
Minimal functional system required for expression of erythromycin resistance by msrA in Staphylococcus aureus RN4220
J I Ross, E A Eady, J H Cove, et al.
Gene
|
February 3, 1995
Identification of a chromosomally encoded ABC-transport system with which the staphylococcal erythromycin exporter MsrA may interact
J I Ross, E A Eady, J H Cove, et al.
Antimicrobial Agents and Chemotherapy
|
July 14, 1998
16S rRNA mutation associated with tetracycline resistance in a gram-positive bacterium
J I Ross, E A Eady, J H Cove, et al.
The Journal of Antimicrobial Chemotherapy
|
August 10, 2000
Antibiotic resistance patterns of aerobic coryneforms and furazolidone-resistant Gram-positive cocci from the skin surface of the human axilla and fourth toe cleft
E A Eady, P Coates, J I Ross, et al.
Dermatology (Basel, Switzerland)
|
April 29, 1998
Resistance to erythromycin and clindamycin in cutaneous propionibacteria is associated with mutations in 23S rRNA
J I Ross, E A Eady, J H Cove, et al.
The Journal of Antimicrobial Chemotherapy
|
December 1, 1989
Characterisation and molecular cloning of the novel macrolide-streptogramin B resistance determinant from Staphylococcus epidermidis
J I Ross, A M Farrell, E A Eady, et al.
The British Journal of Dermatology
|
September 1, 1994
Effects of benzoyl peroxide and erythromycin alone and in combination against antibiotic-sensitive and -resistant skin bacteria from acne patients
E A Eady, M R Farmery, J I Ross, et al.
The Journal of Antimicrobial Chemotherapy
|
April 1, 1989
Macrolide-lincosamide-streptogramin B (MLS) resistance in cutaneous propionibacteria: definition of phenotypes
E A Eady, J I Ross, J H Cove, et al.
Molecular Microbiology
|
July 1, 1990
Inducible erythromycin resistance in staphylococci is encoded by a member of the ATP-binding transport super-gene family
J I Ross, E A Eady, J H Cove, et al.
Page
of 2