Mutations in genes for 50S ribosomal proteins or bases of critical domains of the 23S rRNA receptor site confer resistance to erythromycin and sometimes to other macrolides, lincomycin, and clindamycin; in some but not all strains, this is associated with a decreased binding affinity for erythromycin...
Antagonism exists in vitro between erythromycin and clindamycin, lincomycin, and chloramphenicol. Erythromycin has been shown to be active against most isolates of the following bacteria both in vitro and in clinical infections as described in the INDICATIONS AND USAGE section. Gram-positive bacteria: ...
Chloramphenicol, Tetracyclines, Macrolides, Clindamycin, & Streptogramins ^ Jump up to:a b “unknown”. Archived from the original on 2014-04-19. Cite uses generic title (help) ^ American Academy of Pediatrics Committee on Drugs (September 2001). “Transfer of drugs and other chemicals into...
Antagonism exists in vitrobetween erythromycin and clindamycin, lincomycin, and chloramphenicol. Antimicrobial Activity Erythromycin has been shown to be active against most isolates of the following microorganisms both in vitroand in clinical infections (see INDICATIONS AND USAGE). Aerobic bacteria Gram...
Antagonism existsin vitrobetween erythromycin and clindamycin, lincomycin, and chloramphenicol. Antimicrobial Activity Erythromycin has been shown to be active against most isolates of the following bacteria bothin vitroand in clinical infections as described in theINDICATIONS AND USAGEsection. ...
option when prescribed by a veterinarian. However, if your pet is taking other medications, discuss them with your veterinarian to prevent a possible drug-interaction. Erythromycin can interact with such medications as clindamycin, lincomycin, tylosin, azithromycin, chloramphenicol, theophylline, and ...
Objectives To test four 16-membered macrolides (josamycin, spiramycin, midecamycin and rokitamycin) along with other compounds in the same class (erythromycin, clarithromycin, roxithromycin and azithromycin) plus clindamycin and telithromycin, against Streptococcus pyogenes and Streptococcus pneumoniae ...
Erythromycin acts by inhibition of protein synthesis by binding 50 S ribosomal subunits of susceptible organisms. It does not affect nucleic acid synthesis. Antagonism has been demonstratedin vitrobetween erythromycin and clindamycin, lincomycin, and chloramphenicol. ...
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:Erythromycin appears to inhibit protein synthesis in susceptible organisms by reversibly binding to ribosomal subunits, thereby inhibiting translocation of aminoacyl transfer-RNA and inhibiting polypeptide synthesis. Antagonism has been demonstrated between erythromycin, lincomycin, chloramphenicol, and clindamycin...