Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0040425 (tonsillitis)
1,594 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

A newly developed cephalosporin, cefixime (CFIX), was evaluated clinically in 35 pediatric patients. A pharmacokinetic study was also performed with 11 patients. CFIX was administered as granules. The pharmacokinetic study was conducted in 11 patients, each of 6 patients was given CFIX at a dose of 3 mg/kg and each of the remaining patients was given CFIX at 6 mg/kg. Serum concentrations of CFIX were measured at 2, 4, 6, 8 and 12 hours after dosing. Urinary concentrations of CFIX were measured for periods of 0-6 and 6-12 hours after dosing. CFIX was assayed by the disk method using E. coli ATCC 39188 as the test organism. The clinical evaluation was conducted in 35 children including 5 patients of acute tonsillitis, 10 of acute lacunar tonsillitis, 1 of purulent lymphadenitis, 1 of scarlet fever, 8 of acute bronchitis, 5 of pneumonia, 3 of urinary tract infections and 1 of paratyphoid B. One additional patient was included only in the evaluation of safety since he was suffering from Mycoplasma pneumonia. the patients were from 4 months to 8 years 2 months old and 11 of them were inpatients. Daily doses were from 6.0 to 13.5 mg/kg. After CFIX administration in doses of 3 mg/kg and 6 mg/kg, peak serum concentrations were 1.75 and 3.36 micrograms/ml, half-lives were 2.65 and 2.86 hours and urinary excretions rates up to 12 hours after dosing were 16.1 and 12.4%, respectively. Serum concentrations were dose dependent and the half-life was fairly long compared with other known oral cephalosporins. Clinical efficacies of CFIX in 34 patients were "excellent" in 25 children, "good" in 8 and "poor" in 1 with effectiveness rate of 97.1%. Twenty-two strains of causative organisms, including 6 strains of S. aureus, 3 of S. pyogenes, 2 of S. pneumoniae, 3 of E. coli, 5 of H. influenzae, 2 of H. parainfluenzae and 1 of S. paratyphi B, were isolated. After treatment all strains except 2 strains of S. aureus (one was unknown and the other was decreased), 1 strain of S. pneumoniae (unknown) and 1 strain of H. influenzae (unknown) were successfully eradicated but S. paratyphi B was proved again in feces 9 days after treatment. No adverse reaction was observed. Among 18 children who went through laboratory test, however, an elevation of eosinophile and elevations of GOT and GPT were observed in 2 children and 1 child, respectively.
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PMID:[Clinical studies of cefixime granules in pediatrics]. 376 35

C-reactive protein (CRP) is a sensitive and non-specific inflammatory marker. The serum level of CRP starts to rise 6-12 hours after the start of an inflammatory stimulus. Sequential CRP measurements will have greater diagnostic value than a single measurement, and changes of the CRP values often reflect the clinical course. In use in general practice the diagnostic value of CRP is found to be high in adults with pneumonia, sinusitis and tonsillitis, however it is found to be low regarding otitis and pneumonia in children. As to urinary tract infections and salpingitis the value is still undefined. Measurement of CRP is an important diagnostic test but the analysis should not stand by itself but be evaluated together with the patient's history and clinical examination.
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PMID:[C-reactive protein and infections in general practice]. 1083 78

OBJECTIVE: To determine ASO titer profile by establishing ARF differential diagnoses of other diseases with high levels of ASO antibodies. METHODS: We investigated 78 patients with ARF at onset and follow-up, 22 with isolated chorea at onset, 45 with recurrent oropharyngeal tonsillitis, and 23 with recent flare of juvenile idiopathic arthritis. We tested ASO with automated particle-enhanced immunonephelometric assay (Behring(R)-Germany). The ASO (IU/ml) titers were assessed at the following time intervals: 0-7 days, 1-2 weeks, 2-4 weeks, 1-2 months, 2-4 months, 4-6 months, 6-12 months, 1-2 years, 2-3 years, 3-4 years, and 4-5 years after onset of ARF. RESULTS: ASO titers in patients diagnosed with ARF had a significant increase up to the 2-4-month time interval (P<0.0001). Baseline levels were observed afterwards in patients under regular penicillin prophylaxis. The levels of ASO in ARF were also significantly higher than in patients with isolated chorea, recurrent oropharyngeal infections or juvenile idiopathic arthritis (P=0.0025), when age-matched samples of these groups were compared. The testacute;s sensitivity was 73.3% and the specificity was 57.6%, and it was calculated taking into account the upper limit of normality at 320 IU/ml, as well as the established diagnosis of ARF. The testacute;s specificity and positive predictive value increased with rising or higher titers, being higher with titers above 960 UI/ml. CONCLUSION: This reappraisal of ASO profile in ARF patients indicates a remarkable response during the acute phase, and that points to the extent to which ASO levels may differentiate ARF from other diseases with high levels of ASO antibodies, as coincidental but unrelated streptococcal infection or chronic arthritis flareup.
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PMID:[Antistreptolysin O titer profile in acute rheumatic fever diagnosis] 1464

Recurrent pharyngo-tonsillar infections caused by group A beta-hemolytic streptococci (GABHS) occur frequently in young children, and the treatment of these infections contributes substantially to the total current requirement for antibiotic prescribing. Our study goal was to assess through a retrospective observational analysis whether the administration of the oral probiotic, Streptococcus salivarius K12 (SsK12), could reduce the occurrence of GABHS pharyngo-tonsillar infections in children who had a recent history of recurrent episodes of these infections. Twelve primary care pediatricians identified, through their databases, a total of 130 children who had experienced recurrent GABHS pharyngo-tonsillar infections over a period of at least 6-12 months prior to their inclusion in the study. Of these children, 76 then undertook a 90-day program requiring once-a-day dosing with a commercially available (Bactoblis) lozenge containing SsK12. No probiotic supplement was given to the remaining 54 (control) children. Each subject was monitored for the occurrence of GABHS pharyngo-tonsillitis and also for acute otitis media, bronchitis, sinusitis, and bronchopneumonia for at least 12 months following their entry to the study. Even 9 months after the use of SsK12 had been stopped, the probability of new GABHS infections was significantly lower (P>0.001) when compared to the period before dosing commenced. When compared to the untreated children, those taking SsK12 appear to have had significantly fewer GABHS infections both during the 90-day period of prophylaxis and during the following 9 months (P<0.001). These observations are supportive of the use of probiotic SsK12 for the control of recurrent GABHS pharyngo-tonsillar infections in children, and as an associated benefit, the use of this probiotic could lead to reduced antibiotic consumption. Follow-up controlled prospective studies should now be initiated in order to further establish the efficacy of this newly emerging prophylactic strategy.
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PMID:Reduction of group A beta-hemolytic streptococcus pharyngo-tonsillar infections associated with use of the oral probiotic Streptococcus salivarius K12: a retrospective observational study. 2685 79