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P Moine

Publications and source records attributed to P Moine.

At least 37 records · Page 2Linked to original sources

Efficiency of inhaled nitric oxide as rescue therapy during severe ARDS: survival and factors associated with the first response.

PURPOSE: The purpose of this study was to determine if the response to inhaled nitric oxide (NO) as salvage therapy is an independent factor for survival in adult respiratory distress syndrome (ARDS) patients and to identify the factors that predict the response to inhaled NO during ARDS. MATERIALS AND METHODS: This was a multicenter, 2-year retrospective, clinical study in five university surgical or medical intensive care units, including all consecutive patients with ARDS in whom inhaled NO was tried. Clinical data (medical history, diagnoses), general severity scores (SAPS II, OSF), biological data, radiological and hemodynamic data at admission, at the beginning of the ARDS, and under treatment with inhaled NO were recorded. The NO response was defined as the variation of PaO2/Fio2 ratio before initiation and after 30 minutes of NO inhalation (VarPaO2/FiO2). RESULTS: Ninety-three patients aged 49 +/- 18 years were studied. Mean SAPS II was 45 +/- 16. Before the beginning of inhaled NO, PaO2/Fio2 ratio was 95 +/- 53 mm Hg and lung injury score 2.7 + 0.3. VarPao2/Fio2 when NO was started (11 +/- 4 ppm) was 26 +/- 44.5 mm Hg (median 17 mm Hg). Intensive care unit mortality was 74%. None of the parameters studied were predictors of response to inhaled NO, although there was a tendency for the youngest patients with the more severe hypoxemia to have a better response. Response to first inhaled NO test (VarPaO2/FiO2) was univariately associated with survival (Survivors: 45 +/- 44 mm Hg vs. Nonsurvivors: 20 +/- 43 mm Hg, P = .01), but this difference disappeared after adjusting for other prognostic factors (P = .16) selected by multivariate analysis. Finally, inhaled NO was continued for more than 1 day for 75 patients, and definitively stopped for 18 patients. Intensive care unit mortality (73% vs. 78%) was not different between these groups (P = .25, Log-rank test). CONCLUSIONS: We conclude that (1) efficacy of inhaled NO in improving oxygenation was moderate and difficult to predict, (2) response to first NO inhalation was not associated with prognosis, and (3) treatment of the most severe ARDS patients with inhaled NO did not influenced their intensive care unit survival.

Adult↗

Streptococcus pneumoniae pneumonia in mice: optimal amoxicillin dosing predicted from a pharmacokinetic-pharmacodynamic model.

In an attempt to better understand the interaction of amoxicillin with Streptococcus pneumoniae in the lung, and to determine the parameters of therapeutic efficacy of the antimicrobial agent amoxicillin, we used a pharmacokinetic-pharmacodynamic model to describe the overall dose-effect relationship of amoxicillin against 12 strains of S. pneumoniae with penicillin minimum inhibitory concentrations ranging from <0.01 to 16 microg/ml in a neutropenic murine pneumonia model. We were able to correlate amoxicillin dosing, pharmacokinetics, and the temporal changes in bacterial count in lung. Moreover, survival rates measured in one strain at different dosing were significantly related to the number of bacteria in lung calculated from the pharmacokinetic-pharmacodynamic model. Disappearance of amoxicillin from the effect compartment appeared to be very slow and the rate constant (k(e0)) governing this process was significantly different between strains, ranging from 0.00131 to 0.03945 h(-1). These findings have two major implications: 1) after a single dose of amoxicillin, bacterial counts in lung rapidly decreased and the bacterial growth remained suppressed during a long period of time after cessation of exposure of microorganisms to amoxicillin; and 2) the duration of bacterial growth suppression was related to the intrinsic properties of S. pneumoniae strains rather than to host environment because k(e0) was significantly different between strains. These two premises clearly demonstrate that bacterial growth suppression is related to an in vivo postantibiotic effect. Furthermore, we have shown that the major determinant of amoxicillin in vivo bactericidal activity and therapeutic efficacy appeared to be the dose of amoxicillin because amoxicillin exhibits a rapid dose-dependent killing regardless of the S. pneumoniae strain. Our findings may have implications for the clinical use of amoxicillin. In view of our results, the guidance to increase the amoxicillin-loading dose in pneumococcal pneumonia appears to be immediately clinically relevant.

Amoxicillin↗

Pharmacodynamic activities of ciprofloxacin and sparfloxacin in a murine pneumococcal pneumonia model: relevance for drug efficacy.

We looked for associations between pharmacokinetic (Pk) and pharmacodynamic (Pd) parameters of ciprofloxacin (CPFX) and sparfloxacin (SPFX) and the in vivo efficacy of these antimicrobials in an immunocompetent mouse model of severe Streptococcus pneumoniae pneumonia. Bacterial killing curves recorded in the lungs during the 24 h after single subcutaneous injections of the fluoroquinolones (FQs) in doses ranging from 6.25 to 200 mg/kg were compared with mean Pk/Pd parameters in the serum of the same mice. The impact of the dosing interval on the antimicrobial dose response was evaluated based on the survival of mice treated for 3 days with CPFX (25-200 mg/kg) or SPFX (6.25-50 mg/kg) administered at various intervals from 3 to 24 h. Bacterial killing curves showed that the maximal bacterial decrease achieved in the lungs was correlated, similarly for both FQs, with the area under the curve (AUC) above the minimal inhibitory concentration (MIC) (overall correlation: r = 0.968, P < 10(-4)). CPX attained higher maximal bactericidal effect values, a steeper killing slope and a shorter time to maximal bactericidal effect in comparison with SPX for the highest doses tested. The lower MIC of SPFX compared with CPFX (0.25 vs. 0.75 microgram/ml) and its higher AUC/dose ratio (resulting from a lower serum peak but a longer half-life) translated into a greater area under the bactericidal curve. In the dose fractionation experiments, the Pk/Pd parameter most closely correlated with the survival rate for both FQs was the daily AUC/MIC ratio (r = 0.976, P < 10(-4)). When the AUC/MIC ratio was greater than 160, the probability of a clinical cure was 100%, independently of the dosage schedule.

Animals↗

Hemorrhage increases cytokine expression in lung mononuclear cells in mice: involvement of catecholamines in nuclear factor-kappaB regulation and cytokine expression.

The expression of proinflammatory and immunoregulatory cytokines rapidly increases in the lungs after hemorrhage, and such alterations contribute to the frequent development of acute inflammatory lung injury in this setting. Blood loss also produces elevations in catecholamine concentrations in the pulmonary and systemic circulation. In the present experiments, we used alpha- and beta-adrenergic receptor blockade to examine in vivo interactions between hemorrhage-induced adrenergic stimulation and pulmonary cytokine expression. Treatment of mice with the alpha-adrenergic receptor antagonist phentolamine prevented not only the elevation in mRNA levels of IL-1beta, TNF-alpha, and TGF-beta1, the increase in IL-1beta protein, but also the activation of nuclear factor (NF)-KB and cyclic AMP response element binding protein, which occurred in lung cells of untreated animals during the first hour after hemorrhage. In contrast, treatment before hemorrhage with the beta-adrenergic receptor antagonist propranolol was associated with increases in mRNA levels for IL-1beta, TNF-alpha, and TGF-beta1, which were greater than those present in untreated hemorrhaged mice, and did not prevent hemorrhage-associated increases in lung IL-1beta protein. Treatment with propranolol prevented hemorrhage-induced phosphorylation of cyclic AMP response element binding protein, but increased hemorrhage-associated activation of NF-KB. These results demonstrate that hemorrhage initially increases pulmonary cytokine expression through alpha- but not beta-adrenergic stimulation, and suggest that such alpha-adrenergic-mediated effects occur through activation of the transcriptional regulatory factor NF-kappaB.

Animals↗

Systemic blood loss affects NF-kappa B regulatory mechanisms in the lungs.

The nuclear regulatory factor (NF)-kappa B is activated in the lungs of patients with acute respiratory distress syndrome (ARDS). In experimental models of acute lung injury, activation of NF-kappa B contributes to the increased expression of immunoregulatory cytokines and other proinflammatory mediators in the lungs. Because of the important role that NF-kappa B activation appears to play in the development of acute lung injury, we examined cytoplasmic and nuclear NF-kappa B counterregulatory mechanisms in lung mononuclear cells, using a murine model in which inflammatory lung injury develops after blood loss. Sustained activation of NF-kappa B was present in lung mononuclear cells over the 4-h period after blood loss. The activation of NF-kappa B after hemorrhage was accompanied by alterations in levels of the NF-kappa B regulatory proteins I kappa B alpha and Bcl-3. Cytoplasmic and nuclear I kappa B alpha were increased and nuclear Bcl-3 was decreased during the first hour after blood loss, but, by 4 h posthemorrhage, cytoplasmic and nuclear I kappa B alpha levels were decreased and nuclear levels of Bcl-3 were increased. Inhibition of xanthine oxidase activity in otherwise unmanipulated unhemorrhaged mice resulted in increased levels of I kappa B alpha and decreased amounts of Bcl-3 in nuclear extracts from lung mononuclear cells. No changes in the levels of nuclear I kappa B alpha or Bcl-3 occurred after hemorrhage when xanthine oxidase activity was inhibited. These results demonstrate that blood loss, at least partly through xanthine oxidase-dependent mechanisms, produces alterations in the levels of both I kappa B alpha and Bcl-3 in lung mononuclear cell populations. The effects of hemorrhage on proteins that regulate activation of NF-kappa B may contribute to the frequent development of inflammatory lung injury in this setting.

Allopurinol↗

Is the duration of mechanical ventilation predictable?

BACKGROUND: Prolonged mechanical ventilation (MV) is associated with high morbidity, mortality, and cost. However, few and limited data are available on the prediction of duration of MV. We conducted an observational cohort study to seek predictive criteria. METHODS: The study was performed in a surgical ICU (SICU) in a university hospital. One hundred ninety-five consecutive unselected patients and 203 episodes of MV were prospectively analyzed to determine if clinical features, physiologic parameters, or multifactor scoring systems, at the time of admission or intubation, could be used as predictors of MV > or = 15 days. A univariate statistical analysis and a multiple logistic regression were used. A prospective validation study was then conducted to determine the accuracy of the results. RESULTS: (1) Univariate statistical analysis indicated that SICU length of stay, emergent endotracheal intubation as opposed to elective intubation, indication for MV, sepsis score at the time of admission and intubation, lung injury score (LIS) at the time of admission and intubation, number of organ system failures at the time of admission and intubation, and serum albumin concentration were significantly different between the two groups. (2) Only the circumstances (emergency) of endotracheal intubation (odds ratio [OR]=3.5, p=0.02) and the LIS (OR=3.7, p=0.004) independently predicted a duration of endotracheal intubation > or = 15 days. One hundred twenty-eight consecutive patients requiring emergent intubation and MV were included in the prospective validation. The accuracy of the LIS > or = 1 used to predict MV > or = 15 days was as follows: sensitivity=0.88; specificity=0.28; positive predictive value=0.24; negative predictive value=0.91. CONCLUSION: Low incidence of MV > or = 15 days was observed (13% and 20%, respectively, in observational cohort study and validation study) in unselected SICU patients. LIS > or = 1 at the time of intubation provides excellent negative predictive value (0.93 and 0.91) of duration of MV > or = 15 days. These data suggest that tracheotomy should not be considered for patients with LIS < 1.

Adolescent↗

Correlation between in vitro and in vivo activity of amoxicillin against Streptococcus pneumoniae in a murine pneumonia model.

We studied the relationship between in vitro bacteriological parameters [minimal inhibitory concentration (MIC), minimal bactericidal concentration (MBC) and killing rate, defined as the reduction in the inoculum within 1, 3 or 6 hr] and in vivo activity of amoxicillin against 12 strains of Streptococcus pneumoniae, with penicillin MICs of < 0.01 to 16 micrograms/ml, in a cyclophosphamide-induced neutropenic murine pneumonia model. Dose-response curves were determined for amoxicillin against each strain, and three quantitative parameters of in vivo amoxicillin activity were defined, i.e., maximal attainable antimicrobial effect attributable to the drug [i.e., reduction in log colony-forming units (CFU) per lung, compared with untreated controls], dose required to reach 50% of maximal effect and dose required to achieve a reduction of 1 log CFU/lung. We demonstrated a highly significant correlation between the dose required to reach 50% of maximal effect and MIC (Spearman r = 0.98, P < .0001) or MBC (Spearman r = 0.95, P < .0001) for amoxicillin against strains of S. pneumoniae with a wide range of amoxicillin MICs (0.01-8 micrograms/ml). Significant correlations between the dose required to achieve a reduction of 1 log CFU/lung and MIC (Spearman r = 0.98, P < .0001) or MBC (Spearman r = 0.95, P < .0001) were also observed. In contrast, there were no significant correlations between the maximal attainable antimicrobial effect attributable to the drug and MIC, MBC or killing rate or between killing rate and the dose required to reach 50% of maximal effect or the dose required to achieve a reduction of 1 log CFU/lung. We conclude that in vitro susceptibility test results (MICs and MBCs) correlated well with in vivo amoxicillin activity against pneumococcal strains, including highly penicillin-resistant strains, in this animal model. Furthermore, these data suggest that the estimated MIC breakpoints for amoxicillin against S. pneumoniae would be 2 micrograms/ml for intermediate-resistant and 4 micrograms/ml for resistant, although this remains to be confirmed in clinical studies.

Amoxicillin↗

CFTR haplotypic variability for normal and mutant genes in cystic fibrosis families from southern France.

In order to contribute to a better understanding of the dispersion of cystic fibrosis (CF) mutations in the South of France, seven diallelic and three multiallelic markers [three upstream of the cystic fibrosis transmembrane conductance regulator (CFTR) gene (XV-2c, KM 19 and J44) and seven intragenic polymorphism (IVS6A, IVS8CA, M470V, T854T, IVS17BTA, IVS17BCA and TUB18)] were analyzed for 143 delta F508 chromosomes, 100 CF chromosomes carrying 85 non-delta F508 and 15 unknown mutations, and 198 normal CFTR alleles. The study provides haplotypic data for 39 different CF mutations, which should be useful in diagnosis by haplotypic analysis and detection of the associated mutations. A major haplotype [2-1-2-7-16-2-1-(30/31)-13-1] was found in normal chromosomes, which should be the most ancient in the Caucasoid population. The most frequent haplotypes in normal chromosomes were associated with 16 different non-delta F508 mutations, suggesting that there was no preferential haplotype on which these mutations arose. Several mutations were each associated with more than one haplotype, as the result of slippage at one or two of the three microsatellites (delta F508, G542X, N1303K, G85E, E585X, K710X and 2184delA) or recombination (1717-1G-->A, R334W, L206W, R1162X and Y122X). Haplotypes for the most common CFTR mutations (delta F508, G542X, N1303K) revealed that a large number of alleles were generated by slippage at the microsatellite loci, suggesting that they are the most ancient CF mutations. Other mutations were associated with haplotypes that were different either at several diallelic sites (R334W) or at both diallelic and microsatellite markers (R1162X and R1158X), which is more suggestive of recurrence. Twenty recombinations were detected among the CF mutant alleles analyzed, 75% of them occurring in the second half of the CFTR gene. The higher mutational heterogeneity and the haplotypic variability reported in this small population from the Mediterranean area are consistent with an earlier appearance of CFTR mutations in southern Europe than in central and northern Europe, and an earlier origin and expansion of this population.

Cystic Fibrosis↗

Nuclear factor-kappa B is activated in alveolar macrophages from patients with acute respiratory distress syndrome.

OBJECTIVE: The expression of proinflammatory cytokines is rapidly increased in experimental models of the acute respiratory distress syndrome (ARDS), in patients at risk for ARDS, and in patients with established ARDS. Because multiple cytokines are present in bronchoalveolar lavage fluid, a common, proximal activation mechanism may operate in these settings. The proinflammatory cytokines whose expression is increased in the lungs of patients with ARDS have binding sequences in their enhancer/promoter regions for transcriptional regulatory proteins, such as nuclear factor-kappa B (NF-kappa B), nuclear factor-IL6 (NF-IL6), cyclic adenosine monophosphate responsive element binding protein, serum protein-1, and activating protein-1. To test the hypothesis that activation of one or more of these nuclear transcriptional regulatory factors might provide a common mechanism for the simultaneous expression of multiple cytokine genes in the setting of ARDS, we measured activation of these factors in alveolar macrophages from patients with ARDS and from controls. DESIGN: Prospective, clinical study. SETTING: Medical and surgical intensive care units at a university hospital and a county hospital. PATIENTS: Twelve patients, six with established ARDS and six control patients without lung injury. INTERVENTIONS: Patients with ARDS and controls underwent fiberoptic bronchoscopy and bronchoalveolar lavage. Alveolar macrophages were isolated from lavage fluid and the nuclear proteins were extracted. Activation of transcriptional factors NF-kappa B, NF-IL6, cyclic adenosine monophosphate responsive element binding protein, activating protein-1, and serum protein-1 was determined using an electrophoretic mobility shift assay, followed by densitometry of the autoradiographed gels. MEASUREMENTS AND MAIN RESULTS: There were no significant differences in gender, age, tobacco smoking, Acute Physiology and Chronic Health Evaluation II score, quantity of lavage fluid, or number of alveolar macrophages in lavage specimens in the patient groups. Acute Lung Injury score and the Pao2/Fio2 ratio differed significantly between controls and ARDS patients: 0.46 +/- 0.17 vs. 2.74 +/- 0.14 (p < .0001) and 310 +/- 45 torr (41.3 +/- 6.0 kPa) vs. 150 +/- 11 torr (21.3 +/- 1.5 kPa) (p < .006), respectively. The mean Fio2 of the control patients was not significantly different from the mean Fio2 of ARDS patients: 0.47 +/- 0.11 vs. 0.55 +/- 0.6 (p = .53). Patients with ARDS had significantly (p < .02) increased activation of NF-kappa B in alveolar macrophages compared with patients without the syndrome. There was no evidence of increased activation of the transcriptional factors activating protein-1, serum protein-1, NF-IL6, or cyclic adenosine monophosphate responsive element binding protein in alveolar macrophages from ARDS vs. control patients. CONCLUSIONS: These experiments demonstrated increased in vivo activation of the nuclear transcriptional regulatory factor NF-kappa B (but not NF-IL6, cyclic adenosine monophosphate responsive element binding protein, activating protein-1, or serum protein-1) in alveolar macrophages from patients with ARDS. Because binding sequences for NF-kappa B are present in the enhancer/promoter sequences of multiple proinflammatory cytokines, activation of NF-kappa B may contribute to the increased expression of multiple cytokines in the lung in the setting of established ARDS.

Adult↗

Efficacies of cefotaxime and ceftriaxone in a mouse model of pneumonia induced by two penicillin- and cephalosporin-resistant strains of Streptococcus pneumoniae.

We previously demonstrated the efficacy of ceftriaxone (CRO), at 50 mg/kg of body weight every 12 h, against a highly penicillin-resistant (MIC, 4 micrograms/ml) Streptococcus pneumoniae strain with low-level resistance to CRO (MIC, 0.5 microgram/ml) in a leukopenic-mouse pneumonia model (P. Moine, E. Vallée, E. Azoulay-Dupuis, P. Bourget, J.-P. Bédos, J. Bauchet, and J.-J. Pocidalo, Antimicrob. Agents Chemother. 38:1953-1958, 1994). In the present study, we assessed the activity of CRO versus those of cefotaxime (CTX) and amoxicillin (AMO) against two highly penicillin- and cephalosporin-resistant S. pneumoniae strains (P40422 and P40984) (MICs of 2 and 8 for penicillin, 2 and 4 for AMO, and 4 and 8 for CRO or CTX, respectively). Against both strains, a greater than an 80% cumulative survival rate was observed with CRO at a dose of 100 or 200 mg/kg every 12 h (dose/MIC ratio, 25). With CTX, a high dosage of 400 mg/kg (dose/MIC ratio, 100 or 50) administered every 8 h (TID) was needed to protect 66 and 75% of the animals, respectively, with no statistically significant differences versus CRO. Against the P40422 strain, CRO (100 mg/kg) produced the greatest bactericidal effect, from the 8th to the 24th hour after a single injection (1.8-log-unit reduction over 24 h), and the fastest bacterial pulmonary clearance during treatment; with CTX, only multiple injections at a high dosage, i.e., 400 mg/kg TID, demonstrated a significant bactericidal effect. AMO in a high dosage, 400 mg/kg (dose/MIC ratio, 200) TID, showed good activity only against the P40422 strain. Despite the identical MICs of CTX and CRO, the longer time (3.6 to 4.6 h) that serum CRO concentrations remained above the MICs for the pathogens at a dose of 100 mg/kg resulted in greater efficacy versus CTX against highly penicillin- and cephalosporin-resistant S. pneumoniae strains.

Amoxicillin↗

Amoxicillin dose-effect relationship with Streptococcus pneumoniae in a mouse pneumonia model and roles of in vitro penicillin susceptibilities, autolysis, and tolerance properties of the strains.

We used a mouse model of pneumococcal pneumonia to assess the bactericidal effect of increasing doses of amoxicillin (AMX) against clinical strains with various susceptibilities to penicillin. Twelve strains that exhibited similar virulence in mice were selected. Three were penicillin susceptible (PS) (penicillin and AMX MICs = 0.01 to 0.03 microgram/ml), three were intermediately resistant (PIR) (penicillin and AMX MICs = 0.5 to 1 microgram/ml), and six were penicillin resistant (PR) (penicillin and AMX MICs = 1 to 8 micrograms/ml). Leukopenic Swiss mice were infected intratracheally with 10(7) CFU of each strain. Treatment was initiated 3 h after infection and consisted of a single subcutaneous injection of AMX at doses ranging from 2.5 to 10 mg/kg (PS strains), 5 to 100 (PIR strains), and 25 to 3,000 (PR strains). Bacterial killing kinetics were recorded in the lungs over 9 h. The maximal log CFU reduction (Emax) was observed 3 h postinjection. The relation between Emax and log10(dose/MIC) showed two populations. With seven strains (the three PS, the three PIR, and one of the six PR [MICs, penicillin/AMX = 4/1]) a good correlation was observed between Emax and log10(dose/MIC) (r = 0.772; P < 0.02). A bactericidal effect equal to 3.5 log10 CFU was observed at a log10(dose/MIC) = 2. At this ratio, with the five other PR strains, Emax varied from 0.4 to 1.6 log10 CFU. In brain heart infusion medium containing AMX at 50 times the relevant MIC, these five PR strains were tolerant in vitro. Treatment failure with AMX was found in vivo, with tolerant, highly resistant strains.

Amoxicillin↗

Synergy between amoxicillin and gentamicin in combination against a highly penicillin-resistant and -tolerant strain of Streptococcus pneumoniae in a mouse pneumonia model.

In vivo synergy with beta-lactam antibiotics and aminoglycosides has been studied only with penicillin-susceptible Streptococcus pneumoniae strains. We evaluated the interaction between amoxicillin (AMX) and gentamicin (GEN) on the basis of in vitro checkerboard and time-kill curves and of findings in a mouse model of acute bacteremic pneumonia due to a highly penicillin-resistant and -tolerant S. pneumoniae strain of serotype 19 (penicillin and AMX MICs of 4 micrograms/ml; gentamicin MIC of 16 micrograms/ml). Checkerboard results at 18 h of incubation showed indifference. With regard to AMX alone, in vitro time-kill curves demonstrated synergy between AMX (1 microgram/ml) and GEN (16 micrograms/ml) at 5 and 8 h of incubation and for AMX (16 micrograms/ml) in combination with GEN (16 micrograms/ml) at 3, 5, and 8 h of incubation. In leukopenic mice, pulmonary killing curves after a single drug injection demonstrated that AMX (100 mg/kg of body weight) with GEN (16 mg/kg) was more effective than AMX alone (P = 10(-4). With repeated-dose treatment, a synergy was apparent at 8 h after four injections with AMX (100 mg/kg) in combination with GEN (8 or 16 mg/kg) (P < or = 0.05). The cumulative survival rate with AMX (100 mg/kg) every 8 h, combined with GEN (4 or 8 mg/kg) every 8, 12, or 24 h, was better than with AMX alone. Combined use of AMX and GEN may be a valuable therapeutic alternative for pneumococcal pneumonia due to highly penicillin-resistant S. pneumoniae strains.

Amoxicillin↗

Identification of variable length polyadenosine tract at the dystrophin locus.

We report the characterization of a length polymorphism in the human dystrophin gene, consisting of single-base pair increments in a polyadenosine tract located near the 3' end of exon 68. Using Single Strand Conformation Analysis (SSCA), three length alleles could be identified (10,182 + 13A9/10/11). This class of 1-bp length variant is rare among known intronic gene sequences, and has been described only once in the dystrophin gene. Furthermore, the high polymorphic content (0.56) of this novel marker and its distal localization in the 3' end of the coding sequence make it suitable for diagnostic purposes.

Alleles↗

Severe community-acquired pneumococcal pneumonia. The French Study Group of Community-Acquired Pneumonia in ICU.

Streptococcus pneumoniae is the most frequent pathogen of severe community-acquired pneumonia (CAP) necessitating hospitalization. The main objective of this multicentre prospective study was to determine the value of clinical, biological, and radiological features for predicting pneumococcal etiology and to define prognostic factors. Streptococcus pneumoniae was isolated in 43/132 patients (33%) with CAP requiring ICU treatment. The mean age of the patients with pneumococcal pneumonia was 55 +/- 17 (SD) yrs and 34 were male. On admission, 14 patients with pneumococcal pneumonia were in shock, 24 were mentally confused, and 27 required mechanical ventilation during their hospitalization. Among the clinical, biological, and radiological features, fever > 39 degrees C, pleuritic chest pain, lobar distribution or alveolar consolidation, and an increase in immature granulocytes > or = 5% of WBC were more frequent in pneumococcal pneumonia than in other etiologies. Mortality was 35%. Fatal outcome was significantly related to the presence of impaired alertness, septic shock, mechanical ventilation, acute renal failure, and bacteremic pneumonia.

Adult↗

In vivo efficacy of a broad-spectrum cephalosporin, ceftriaxone, against penicillin-susceptible and -resistant strains of Streptococcus pneumoniae in a mouse pneumonia model.

The increasing emergence of penicillin-resistant (Pr) strains of Streptococcus pneumoniae could pose a therapeutic problem in the next few years. Ceftriaxone (CRO), a broad-spectrum cephalosporin, exhibits a smaller increase in MICs against Pr S. pneumoniae strains than amoxicillin (AMO) (usually referred as to the "gold standard" therapy for pneumococcal infections). Therefore, we compared their respective efficacies in a leukopenic Swiss mouse model of pneumococcal pneumonia. Infection was induced with two serotype 19 strains: a penicillin-susceptible (Ps) strain (MICs of < 0.01 for penicillin, 0.03 for AMO, and 0.03 for CRO) and a Pr strain (MICs of 4 for penicillin, 2 for AMO, and 0.5 for CRO). Untreated mice died within 2 or 3 days. Against the Ps strain, the minimal protective dose (two subcutaneous injections at 12-h intervals for 3 days) for both CRO and AMO was 5 mg/kg of body weight (87% survivors). Ten-fold-increased doses of CRO (50 mg/kg) gave similar protection (75% survivors) against the Pr strain, whereas 20- and 40-fold-increased doses of AMO protected 0 and 34% of the animals, respectively, against the Ps strain. CRO had a marked and prolonged antibacterial effect in the lungs (2.7-log-unit reduction of CFU in 24 h after a single 50-mg/kg injection) against the Pr strain in comparison with AMO. A standard dosage of 50 mg of CRO per kg in mice resulted in peak levels in serum and protein binding comparable to those observed with 1 g given intravenously in humans. This dosage remained effective against a highly Pr S. pneumoniae strain in this model. The microbiological activity and pharmacodynamic and pharmacokinetic properties of CRO (time during which concentrations exceed the MIC for the test pathogen [delta t MIC], > or less than 8 h; and peak/MIC ratio, >90 for free active drug) accounted for its efficacy relative to AMO (50 mg/kg: delta t MIC, <2; peak/MIC ratio, <25) against the highly Pr S. pneumoniae strain used in this study.

Amoxicillin↗

Severe community-acquired pneumonia. Etiology, epidemiology, and prognosis factors. French Study Group for Community-Acquired Pneumonia in the Intensive Care Unit.

A prospective study of 132 patients with severe community-acquired pneumonia (CAP) treated in the ICU was carried out to determine the causative agents, the value of the clinical, biological, and radiologic features in predicting the etiology, and to define prognostic factors. The study group included 98 men and 34 women (mean age: 58 +/- 18 years). The most frequent underlying condition was COPD (51 patients, 39 percent). On admission, 35 patients were in shock, 71 were mentally confused, and 81 (61 percent) required mechanical ventilation during their hospitalization. The clinical, laboratory, and radiologic parameters were of little value for predicting the etiology in patients with severe CAP. An etiologic diagnosis was made in 95 (72 percent) patients. The most frequent pathogens were Streptococcus pneumoniae (43 cases [45 percent]), Gram-negative bacilli (14 cases [15 percent]), and Haemophilus influenzae (14 cases [15 percent]) Mortality was 24 percent. It was significantly associated with a age more than 60 years, septic shock, impairment of alertness, mechanical ventilation requirement, bacteremic pneumonia, and S pneumoniae or Enterobacteriaceae as the causes of the pneumonia. Recommendations for antibiotic chemotherapy in patients with severe CAP admitted to the ICU are included.

Community-Acquired Infections↗