Susceptibility testing recommendations for ticarcillin/clavulanic acid in the Stokes' disc diffusion test.
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Biomedical subjects
Publications and source records attributed to R Sutherland.
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Peripheral blood lymphocytes from 20 patients with neutropenia not consistent with aplastic anaemia were tested for their ability to inhibit the proliferation of normal granulopoietic precursor cells (CFU-GM) in agar culture. Two patients, both with features of an autoimmune disorder, had lymphocytes which were more inhibitory than normal lymphocytes to both normal and their own CFU-GM. Two other patients had lymphocytes which were more inhibitory than normal lymphocytes to either their own CFU-GM or normal CFU-GM but not both. Eight patients had lymphocytes which were significantly less inhibitory than normal lymphocytes to either normal or their own CFU-GM, but only one showed this feature against both normal and their own CFU-GM. One patient had a highly potent plasma inhibitor of CFU-GM--this patient had received multiple transfusions and had a leucocyte antibody of a broad specificity. No clinical or haematological features were common to any of these groups of patients which reflects the heterogeneity of patients studied and stresses the importance of controls.
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The efficacy of amoxycillin/clavulanic acid was compared with those of metronidazole, cefuroxime, metronidazole/ampicillin, metronidazole/gentamicin and metronidazole/cefuroxime, in experimental mixed infections produced in mice by subcutaneous inoculation of amoxycillin-resistant strains of Bacteroides fragilis and Escherichia coli. The combination of metronidazole/ampicillin failed to inhibit the growth of E. coli, and exerted only a transient effect on the numbers of Bact. fragilis in the groin abscesses. In contrast, amoxycillin/clavulanic acid prevented the development of the infection, eliminating both organisms. Metronidazole and cefuroxime, alone and in combination, were less effective than amoxycillin/clavulanic acid in inhibiting the growth of the infecting organisms. These results demonstrate the clinical potential of amoxycillin/clavulanic acid in prophylaxis, or in the therapy of mixed aerobe/anaerobe infections.
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Malignant systemic mastocytosis is a rare disorder, a subgroup of the mast cell neoplasms. Its clinical and histological diagnosis is often difficult, especially in patients without cutaneous involvement. We report an unsuspected case who underwent laparotomy complicated by life-threatening hypotension consistent with vasoactive mediator release from mast cells. The subsequent use of two chemotherapy regimens is detailed and both induced transient reduction in disease bulk.
The binding and penetration of two 125I-labeled anti-carcinoembryonic antigen (CEA) monoclonal antibodies (MAb) and their F(ab')2 and Fab fragments were measured in multicellular spheroids of poorly (HT29) and moderately well differentiated (Co112) human colon adenocarcinomas which express different amounts of CEA. Spheroids cultured in vitro model tumor microenvironments where poor vascular supply may modulate antigen expression and accessibility. The two MAb studied, 202 and 35, were shown previously to react with different CEA epitopes and to have high affinities of 1.2 and 5.8 X 10(9) M-1, respectively. MAb 202 has also been shown to cross-react with antigens present on human granulocytes and normal epithelial cells from human lung and pancreas. Specific binding of intact MAb and fragments of both antibodies was demonstrated for both types of human colon carcinoma spheroids compared to mouse colon carcinoma (CL26) and mammary tumor (EMT6/Ro) spheroids. Total binding of MAb and fragments was greater (1.5- to 2.5-fold) after 4 h compared to 1 h of exposure; the amount of binding compared to control IgG1 was 5- to 30-fold greater after 1-h incubation and 15 to 200 times greater after 4 h. This binding was stable as demonstrated by short and long wash experiments at 37 degrees and 4 degrees C. The binding of F(ab')2 and Fab fragments of the anti-CEA MAb 35 to spheroids of human colon Co112 was almost 2-fold greater than that of the intact MAb. However, for MAb 202, the binding of intact MAb and F(ab')2 was greater than that of Fab fragments. In addition the binding of both intact and F(ab')2 fragments of MAb 202 was greater than that obtained with MAb 35. Specific binding of both antibodies to HT29 spheroids, which express less CEA, was decreased for MAb and fragments of both 202 and 35. Autoradiography and immunoperoxidase experiments were performed to determine the penetration of MAb and fragments after incubation with intact spheroids. Comparisons were made with labeled MAb directly applied to frozen sections of spheroids. F(ab')2 and Fab fragments of both antibodies were bound at the surface of intact spheroids and penetrated to eight to ten cells, but the intact MAb were localized mainly at the spheroid surface and the outer one to three cell layers. There was much less binding at the surfaces of HT29 compared to Co112 spheroids. An enzyme immunoassay using MAb 35 and 202 demonstrated that Co112 spheroids produced about 8-fold more CEA/mg of cell protein than did monolayer cultures.(ABSTRACT TRUNCATED AT 400 WORDS)
Five patients with Ph1 +ve chronic granulocytic leukaemia and massive splenomegaly were given induction therapy with splenic irradiation, and their peripheral blood leucocyte count and granulocyte macrophage progenitor (CFU-GM) concentration monitored during the following six hours. In each patient there was a greater fall in CFU-GM than would have been expected from the fall in leucocyte count, but no evidence of a plasma inhibitor was found to explain the disproportionate reduction in CFU-GM. The difference between the estimated and observed decrease in CFU-GM/1 following splenic irradiation indicates a highly dynamic traffic of CFU-GM from the spleen to other organs in chronic granulocytic leukaemia.
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The therapeutic effects produced by ticarcillin plus clavulanic acid were compared with those of ticarcillin and clavulanic acid separately against infections in the mouse caused by beta-lactamase-producing bacteria. The infections studied included a pneumonia model, a local tissue infection and pyelonephritis. The distribution of ticarcillin and clavulanic acid in infected animals was evaluated by measurement of the concentrations of the substances present at sites of infection. The results showed that both ticarcillin and clavulanic acid were well-distributed in the mouse and at the doses employed were present at the sites of infection at concentrations of the same order as those obtained in man after administration of ticarcillin/clavulanic acid formulations (Timentin). The protection of ticarcillin by clavulanic acid from inactivation by the beta-lactamases produced in vivo by Bacteroides fragilis, Escherichia coli, Klebsiella pneumoniae and Pseudomonas aeruginosa was demonstrated by the pronounced bactericidal effects produced by the ticarcillin/clavulanic acid combination against the ticarcillin-refractory infections studied.
The comparative efficacies of ticarcillin and ticarcillin plus clavulanic acid have been determined in the mouse against experimental infections caused by ticarcillin-resistant bacteria. The infections studied comprised an intraperitoneal infection, local tissue infections, pyelonephritis, and pneumonia. Both ticarcillin and clavulanic acid penetrated readily to the sites of infection studied and at the doses employed were present at concentrations of the same order as those obtained in humans after the administration of ticarcillin-clavulanic acid formulations (Timentin; Beecham). At these concentrations, the ticarcillin-clavulanic acid combination caused significant bactericidal effects at the sites of infection against the ticarcillin-resistant strains of Bacteroides fragilis, Escherichia coli, Klebsiella pneumoniae, Pseudomonas aeruginosa, and Staphylococcus aureus investigated. The efficacy of ticarcillin plus clavulanic acid against the infections resistant to therapy with ticarcillin demonstrated the beta-lactamase-inhibitory activity of clavulanic acid in vivo.
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The antibacterial activities of two ureidopenicillins, azlocillin and mezlocillin, were compared with those of the alpha-carboxypenicillins, carbenicillin and ticarcillin, against a large number of gram-positive and gram-negative bacteria. All four penicillins were active against a wide range of bacteria including Pseudomonas aeruginosa, but there were differences in the antibacterial spectra and in the antibacterial effects demonstrated by the two classes of penicillins. In particular, the minimum inhibitory concentrations of azlocillin and mezlocillin against Klebsiella aerogenes and against P. aeruginosa were greatly influenced by the size of bacterial inoculum tested whereas there was no significant inoculum effect with carbenicillin and ticarcillin. In stability tests, the ureidopenicillins were inactivated rapidly by the beta-lactamases of K. aerogenes and P. aeruginosa whereas the alpha-carboxypenicillins were stable. It seems probable that the inoculum effect seen with azlocillin and mezlocillin in antibacterial tests with K. aerogenes and P. aeruginosa is associated with the instability of the compounds to the beta-lactamases of these bacteria.
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The antibacterial activity of a combination of equal parts of amoxycillin and flucloxacillin was compared in vitro and in vivo with that of amoxycillin and flucloxacillin against a range of gram-positive and gram-negative bacteria. The combination generally showed additive effects against bacteria sensitive to the individual penicillins and there was no evidence of antagonism, but synergistic effects were observed between amoxycillin and flucloxacillin against certain amoxycillin-resistant gram-negative bacilli. The extent of synergism varied according to the particular bacterial species under test and synergy was observed only against bacteria with chromosomally-mediated beta-lactamases and not against bacteria with R-factor-mediated beta-lactamases. In general, amoxycillin + flucloxacillin demonstrated activity against experimental mouse infections in good agreement with demonstrated activity against experimental mouse infections in good agreement with its in vitro activity, and synergy was produced against a range of gram-negative bacilli in vivo. The data suggest that clinical trial with amoxycillin + flucloxacillin in the treatment of selected infections including those due to some amoxycillin-resistant bacteria may well be justified.
Plasmas from 31 patients with moderately severe to severe renal failure inhibited granulopoietic colony formation in human marrow in vitro. The inhibitory activity could not be removed by in-vitro dialysis but was present in an ultrafiltered fraction of molecular weight less than 25 000 daltons. It inhibited the production of colony-stimulating activity (C.S.A.) by leucocytes in the culture system but had little or no effect on preformed C.S.A. or on the granulopoietic colony-forming cell itself. The level of plasma inhibitory activity correlated with the degree of azotaemia but not with the neutrophil or monocyte counts. Despite the potency with which granulopoiesis was inhibited in vitro, none of the patients was severely neutropenic, and only 4 had mild neutropenia (neutrophil count 1.5--2.1 x 10(9)/1).
Spheroids of EMT6 tumour cells were grown in spinner culture. As with V79 cell spheroids, the combination of 1.5mM misonidazole and hyperthermia at 42.5 degree C for 1 or 2 h cuased greater cytotoxicity than either heat or drug alone. Radioresistant hypoxic cells at the centre of the spheroids were eliminated but other cells were also killed.