Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023241 (Legionella)
6,990 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Although animal models of infection are associated with certain limitations in interpretation, properly performed studies provide important information for evaluating the efficacy of new antimicrobial agents in the treatment of human disease. The antibacterial efficacy of the newer quinolones, particularly ciprofloxacin, has undergone extensive evaluation in several animal models. Efficacy has been demonstrated in animal models of pneumonia, endocarditis, meningitis, skin and soft-tissue infections, septic arthritis, burn wound sepsis, empyema, intra-abdominal abscess, osteomyelitis, prostatitis, sinusitis, urinary tract infection, chronic gastroenteritis, granuloma pouch infection, and Pseudomonas septicemia. More recent studies have evaluated the efficacy of ciprofloxacin in animal models of tuberculosis and syphilis, as well as in infections caused by the intracellular pathogens Salmonella typhimurium, Legionella pneumophila, and Listeria monocytogenes.
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PMID:An update on the efficacy of ciprofloxacin in animal models of infection. 258 79

The chemistry, mode of action, antimicrobial activity, pharmacokinetics, and therapeutic efficacy of doxycycline are reviewed. Doxycycline displays excellent activity against gram-positive and gram-negative aerobic and anaerobic pathogens. The oral absorption of doxycycline is rapid and virtually complete and is not significantly decreased by food. Moreover, serum concentrations of doxycycline following oral and intravenous (i.v.) administration are comparable. Because of the prolonged half-life of doxycycline, once daily administration is possible. Tissue penetration of doxycycline is excellent. Levels within the therapeutic range have been found in most organs and tissues, including kidney, lung, gallbladder, prostate, intestinal tract, myocardium, sinus secretions, tonsil, aqueous humor, and female reproductive tissue. Doxycycline does not accumulate in patients with renal insufficiency and is not removed from the blood to any great extent during hemodialysis. Extensive clinical investigation has shown doxycycline to be highly effective in infections of the respiratory tract, including atypical pneumonias; skin and soft tissue; genitourinary infection including gonorrhea, syphilis, nonspecific urethritis, and prostatitis; intraabdominal infection due to trauma, sepsis, or surgery; and cholera. Evidence also suggests that doxycycline will prove effective in the treatment of Legionnaires' disease. In addition, placebo-controlled clinical trials suggest doxycycline is effective in the prevention of traveler's diarrhea.
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PMID:Doxycycline. 704 45

Although erythromycin was introduced into clinical medicine more than 28 years ago, the indications for its use continue to expand. This antibiotic has emerged as appropriate therapy for Legionnaires' disease, chronic bacterial prostatitis caused by Escherichia coli, Klebsiella pneumoniae, and Proteus species, enteritis and colitis produced by Campylobacter fetus, and soft tissue and pleuropulmonary anaerobic infections in which Bacteroides fragilis plays no role. In combination with an aminoglycoside, erythromycin has proven to be effective for perioperative antibiotic prophylaxis in patients undergoing elective colon surgery. Additional therapeutic indications continue to be explored. The renewed interest in erythromycin has resulted in a closer examination of its potential for toxicity. New untoward events attributed to erythromycin administration have been described. This antibiotic has produced both reversible hearing loss and pseudomembranous colitis. Erythromycin also possesses the ability to inhibit the degradation of theophylline.
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PMID:Erythromycin. New indications and toxicities. 719 77