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Biomedical subjects

H C Neu

Publications and source records attributed to H C Neu.

At least 343 records · Page 19Linked to original sources

Mezlocillin in the therapy of serious infections.

Mezlocillin, a new semisynthetic penicillin chemically related to ampicillin which is more active than carbenicillin against Ps. aeruginosa, B. fragilis and Strep. faecalis and which inhibits many Klebsiella, was evaluated in the therapy of 34 episodes of infection in 26 patients. Infection sites included pulmonary, urinary tract and tissue infections, including peritonitis. Seven patients had bacteremia. Clinical cures were achieved in 83 per cent and bacteria cures in 76 per cent of infections. Cure was achieved with mezlocillin in patients with infections caused by carbenicillin-resistant species. Adverse effects of therapy were minimal, one rash and one episode of reversible neutropenia. Serum and body flevels of susceptible organisms.uid levels were easily maintained above the inhibitory levels of susceptible organisms. Mezlocillin was a safe, well tolerated and effective antibiotic in the treatment of infections due to susceptible organisms.

Adolescent↗

Antibiotic-associated pseudomembranous colitis in children.

Antibiotic-associated colitis is a rare complication of antimicrobial therapy in children. Ampicillin, penicillin, and clindamycin are the drugs most frequently reported to cause pseudomembranous colitis in pediatric patients. This diagnosis should be suspected in any child with significant diarrhea during or after a course of antimicrobial therapy, especially if the diarrhea persists after the drug has been discontinued. The diagnosis is established by proctoscopic findings of typical plaques of pseudomembranes. Most cases resolve promptly when the implicated antibiotic is stopped; however, the disease can be fulminant, progressing to toxic megacolon, peritonitis, and shock. Therapy of patients who have persistent diarrhea after the offending antibiotic has been discontinued should include oral vancomycin. Close fluid management is crucial for survival.

Ampicillin↗

Comparative inhibition beta-lactamases by novel beta-lactam compounds.

The beta-lactamase-inhibiting activity of CP-45,899, 3,3-dimethyl-7-oxo-4-thia-1-azabicylo(3,2,0)heptane-2-carboxylic acid, 4,4-dioxide [2S-(2alpha,5alpha)], was investigated and compared with the beta-lactamase-inhibiting activity of clavulanic acid and dicloxacillin. CP-45,899 was an effective inhibitor of Staphylococcus aureus beta-lactamase and of those beta-lactamases of gram-negative bacteria which are primarily active against penicillins or equally active against penicillins and cephalosporins. The reaction of CP-45,899 with beta-lactamases was a concentration- and time-dependent event. CP-45,899 acted as a competitive inhibitor of plasmid-mediated S. aureus, Escherichia coli, and Shigella sonnei beta-lactamases and inducible Klebsiella beta-lactamase. CP-45,899 was a poor inhibitor of inducible or constitutive chromosomally mediated beta-lactamases of indole-positive Proteus, Citrobacter, and Enterobacter. CP-45,899 had lower kinetic constants for inhibition of hydrolysis than did clavulanic acid against many of the beta-lactamases which both inhibited.

Ampicillin↗

Cefatrizine activity compared with that of other cephalosporins.

Cefatrizine, a new orally administered cephalosporin, was tested against 400 clinical isolates. Cefatrizine had excellent activity against gram-positive cocci, inhibiting all except enterococci at minimal inhibitory concentrations below 1 mug/ml. Cefatrizine inhibited the majority of Escherichia coli, Klebsiella pneumoniae, Proteus mirabilis, and Salmonella at concentrations below 12.5 mug/ml. Although cefatrizine was not hydrolyzed by many beta-lactamases, it did not inhibit a number of strains of Enterobacter, Serratia, or indole-positive Proteus. Cefatrizine was more active than cephalothin or cephalexin against E. coli, Klebsiella, Enterobacter, Citrobacter, Salmonella, and Shigella. Its overall activity was less than that of cefoxitin against strains resistant to cephalothin, but its activity against cephalothin-susceptible strains was equivalent to that of cefamandole.

Bacteria↗

HR 756, a new cephalosporin active against gram-positive and gram-negative aerobic and anaerobic bacteria.

The in vitro activity of HR 756, 7-[2-(2-amino-4-thiazolyl)-2-(Z)-(methoximino)acetamido] cephalosporanic acid, was investigated against 659 isolates. HR 756 inhibited Neisseria and Haemophilus species at concentrations similar to those needed with ampicillin. It inhibited beta-lactamase-producing N. gonorrhoeae and H. influenzae. HR 756 was the most active compound tested against members of the Enterobacteriaceae, inhibiting most isolates of Escherichia coli, Klebsiella pneumoniae, Proteus mirabilis, Salmonella, Enterobacter, and Shigella at concentrations of less than 0.1 mug/ml. It was twice as active as carbenicillin against Pseudomonas aeruginosa and inhibited Bacteroides fragilis as well as cefoxitin. HR 756 killed E. coli, Staphylococcus aureus, and P. aeruginosa at rates similar to other beta-lactam antibiotics.

Aerobiosis↗

In vitro activity and beta-lactamase stability of cefazaflur compared with those of beta-lactamase-stable cephalosporins.

The in vitro activity of cefazaflur, a parenteral cephalosporin, was determined against 590 clinical isolates. Cefazaflur inhibited the majority of gram-positive cocci at concentrations below 1 mug/ml except for enterococci. The agent was as active as cefamandole or cefoxitin against most Escherichia coli, Klebsiella pneumoniae, and Proteus mirabilis. Although it inhibited a number of strains of Enterobacter, indole-positive Proteus, and Serratia resistant to cephalothin, it was much less active against these organisms than were cefamandole or cefoxitin.

Bacteria↗

In vitro antibacterial activity and beta-lactamase stability of SCE-129, a new cephalosporin.

SCE-129 [3-4-carbamoyl-1-pyridiniomethyl-7beta- (d-alpha-sulfophenylacetamido)-ceph-3-em-4-carboxylate] is a cephalosporin that inhibits Pseudomonas aeruginosa and Staphylococcus aureus. SCE-129 is tenfold more active than carbenicillin in inhibiting P. aeruginosa. SCE-129 has poor activity against Enterobacteriaceae compared with other cephalosporins and is 16-fold less active than the cephalosporins against streptococci. The activity of SCE-129 does not correlate with beta-lactamase stability, although SCE-129 is resistant to hydrolysis by gram-positive and gram-negative bacteria. The compound does not inhibit the hydrolysis of other cephalosporins. Although SCE-129 acts synergistically with gentamicin to inhibit some Pseudomonas, this cannot be predicted based on knowledge of resistance to one or more compounds.

Bacteria↗

Antibacterial activity of a new 1-oxa cephalosporin compared with that of other beta-lactam compounds.

The in vitro activity of (6R,7R)-7-{[carboxy(4-hydroxyphenyl)acetyl]amino}-7-methoxy-3-[[(1-methyl -1H-tetrazol-5-yl)thio]methyl]-8-oxo-5-oxa-1-azabicyclo-[4.2.0]oct-2-ene -2-carboxylic acid was tested against isolates of gram-positive and negative bacteria and compared with those of cephalothin, cefuroxime, cefamandole, cefoxitin, cefotaxime, and carbenicillin. The compound was less active than the other compounds when tested against Staphylococcus aureus and Staphylococcus epidermidis. It had equal or slightly less activity than did cefotaxime when tested against members of the Enterobacteriaceae, but was 8- to 32-fold more active than the other cephalosporins against the Enterobacteriaceae, inhibiting most isolates at concentrations less than 0.5 mug/ml. The compound was twofold more active than cefotaxime and cefoxitin against Bacteroides, and it was twofold more active than cefotaxime and fourfold more active than carbenicillin against Pseudomonas aeruginosa. In vitro activity did not correlate with either the presence or type of beta-lactamase in either Enterobacteriaceae or Pseudomonas. The compound showed minimal synergy when combined with aminoglycosides or carbenicillin.

Bacteria↗

Comparative activity and beta-lactamase stability of cefoperazone, a piperazine cephalosporin.

The in vitro activity and beta-lactamase stability of 7-[d(-)-alpha-(4-ethyl-2,3-dioxopiperazino-carbonylamino) -p-hydroxyphenylacetamido]-3-[(1-methyl)-5-tetrazolylthiomethyl] -Delta(3)-cephem-4-carboxylic acid (cefoperazone), a cephalosporin analog of piperacillin, were compared with the activities and stabilities of other cephalosporins and cephamycins. The compound was less active than cephalothin or cefamandole in inhibiting Staphylococcus aureus; it was as active as cefamandole and cefoxitin against most of the Enterobacteriaceae but less active than cefotaxime. It was more active than carbenicillin or piperacillin against Pseudomonas aeruginosa. In general, the compound was not active against Bacteroides. It was hydrolyzed by the beta-lactamases of some Escherichia coli which hydrolyzed cefamandole, but was stable to most plasmid-mediated, chromosomally mediated, inducible beta-lactamases in the Enterobacteriaceae and Pseudomonas.

Bacteria↗

Diffusion disk susceptibility testing with cefotaxime.

The diffusion disk susceptibility of Staphylococcus aureus, Enterobacteriaceae, and Pseudomonas aeruginosa to cefotaxime was determined. A 30-mug disk provided data for the susceptibility of P. aeruginosa, but yielded extremely large zones of inhibition against Enterobacteriaceae. A 5-mug disk seemed to provide the most useful susceptibility data for S. aureus and Enterobacteriaceae.

Cephalosporins↗

Inactivation of beta-lactam antibiotics by Legionella pneumophila.

Beta-lactam-inactivating activity has been found in all sero-groups of Legionella pneumophila. The beta-lactamase activity could be detected in intact cells and released by ethylenediaminetetraacetic acid treatment, indicating that it is located in the periplasmic space. The enzyme acted primarily as a cephalosporinase hydrolyzing cefamandole, cephalothin, cephaloridine, and also penicillin G and ampicillin. Cefoxitin and cefuroxime were not hydrolyzed. Clavulanic acid and CP-45,899, beta-lactamase inhibitors, prevented the hydrolysis of cephalosporins and penicillins. The beta-lactamase activity appears to be different from that found in Enterobacteriaceae and Pseudomonas.

Anti-Bacterial Agents↗

Pharmacokinetics of cefotaxime.

The pharmacokinetics of cefotaxime after intramuscular injection and intravenous infusion were determined. The mean peak serum level after the 500-mg intramuscular dose was 11.7 micrograms/ml, and it was 20.5 micrograms/ml after a 1,000-mg dose. The serum half-life was 1.2 and 1.3 h, respectively for the two doses. The apparent fractional volumes of distribution of 32 and 37 liters were not significantly different for the two doses, and the fractional serum clearance was approximately 315 ml/min per 1.73 m2 for both doses. The mean peak serum level after 1,000 mg administered by intravenous infusion over 30 min was 41.1 micrograms/ml. The half-life was 1.13 h, apparent volume of distribution was 33 liters, serum clearance 341 ml/min per 1.73 m2, and renal clearance was 130 ml/min per 1.73 m2. The pharmacology of cefotaxime is similar to the pharmacology of other cephalosporin antibiotics, but the low inhibitory levels which it has against gram-positive and gram-negative bacteria suggest that lower dosage regimens should be possible.

Adult↗

Agar disk diffusion susceptibility characteristics of azlocillin, carbenicillin, mezlocillin, piperacillin, and ticarcillin.

The agar disk diffusion susceptibility of Enterobacteriaceae to mezlocillin and piperacillin was correlated with agar minimal inhibitory concentrations and compared with the susceptibility to carbenicillin. The agar disk susceptibility of Pseudomonas aeruginosa to azlocillin, mezlocillin, and piperacillin was correlated with agar minimal inhibitory concentrations and compared with the susceptibility to carbenicillin and ticarcillin. Criteria are offered for the zones of inhibition to provide information about resistant and susceptible isolates that correlate with known serum levels.

Carbenicillin↗

Pharmacokinetics of intravenous piperacillin in patients undergoing chronic hemodialysis.

The pharmacokinetic properties of piperacillin, a piperazine derivative of ampicillin, were determined in seven patients with creatinine clearances less than 7 ml/min who were undergoing chronic, intermittent hemodialysis. A two-compartment linear model was used to analyze the data. Mean elimination half-life was 1.26 +/- 0.1 h; the mean elimination constant was 0.95 +/- 0.08 h-1; the mean volume of distribution was 0.16 +/- 0.02 liters/kg of body weight; the mean volume of the central compartment was 0.10 +/- 0.01 liters/kg of body weight; and the mean clearance was 0.09 +/- 0.01 liters/h per kg of body weight. Mean elimination half-life while off dialysis of 2.1 h.

Adult↗