Cephalosporins: rationale for clinical use.
Ali Molavi
Abstract
Ali Molavi
Abstract
Cephalosporins, the most widely used class of antibiotics, are more resistant than penicillins to inactivation by beta-lactamases. Based on their spectrum of activity against gram-negative bacteria, cephalosporins are classified into three generations. The generation classification, however, does not correlate with activity against gram-positive bacteria or anaerobes. First-generation cephalosporins have a narrow gram-negative spectrum but are most active against gram-positive bacteria, particularly Staphylococcus aureus. Third-generation compounds have excellent activity against gram-negative bacteria. The cephamycins, a second-generation subgroup that includes cefoxitin, cefotetan and cefmetazole, have the best activity against anaerobes.
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Cephalosporins, the most widely used class of antibiotics, are more resistant than penicillins to inactivation by beta-lactamases. Based on their spectrum of activity against gram-negative bacteria, cephalosporins are classified into three generations. The generation classification, however, does not correlate with activity against gram-positive bacteria or anaerobes. First-generation cephalosporins have a narrow gram-negative spectrum but are most active against gram-positive bacteria, particularly Staphylococcus aureus. Third-generation compounds have excellent activity against gram-negative bacteria. The cephamycins, a second-generation subgroup that includes cefoxitin, cefotetan and cefmetazole, have the best activity against anaerobes.
Key concepts: Cefoxitin, Cephalosporin, Cefmetazole, Cefotetan, Microbiology, Medicine, Antibiotics, Gram-negative bacteria