Biomedical subjects
Kalle Hoppu
Publications and source records attributed to Kalle Hoppu.
Cyclosporine A monitoring--how to account for twice and three times daily dosing.
Cyclosporine A (CsA) dose-interval pharmacokinetic profiles, performed 1-4 years post-transplantation, were collected from 74 renal transplanted children. Forty patients were on three times daily dosing (t.i.d.) and 34 on twice daily dosing (b.i.d.). Regression models for prediction of area under the curve (AUC) using 1-3 concentration time points as independent variables were developed. With similar weight-adjusted single doses (mg kg(-1)) of CsA, t.i.d. dosing resulted in a trough-concentration (C0) similar to that from b.i.d. dosing, but a 30% lower 2 h post-dose concentration (C2). For b.i.d. dosing the relationship between C0 and AUC was poor (r2=0.23) and the prediction error was large (5.8+/-33.5%). For t.i.d. dosing the relationship was better (r2=0.79), but prediction error was still large (4.5+/-24.9%). For C2 relationships were similar to those for the b.i.d. (r2=0.59) and t.i.d. (r2=0.63) groups, but explained modestly the variations of AUC (prediction error=2.6+/-16.8% b.i.d., 4.8+/-23.2% t.i.d.). Both C0 and C2 are useful monitoring methods when CsA is administered t.i.d. If the aim is similar specified daily drug exposure, the target C2 should be roughly 30% smaller in t.i.d. dosing than in b.i.d. dosing and the target C0 could be similar. The prediction error of AUC can be large in individual patients when using single time-point determinations, however. The use of multiple time points reduces the variation, but is less feasible.
First report of saxitoxin in Finnish lakes and possible associated effects on human health.
This study is the first report of saxitoxin in cyanobacterial blooms in Finland. Bloom samples (n = 50) were collected from Finnish freshwater sites during summer months of 2002 and 2003. These samples were screened for the presence of paralytic shellfish toxins (PSTs) using the Jellett rapid PSP screening test. Samples testing positive for PSTs (n = 7) were further analyzed with saxiphilin- and voltage-gated sodium channel [(3)H]-STX-binding radioreceptor assays and liquid chromatography using fluorescence and mass spectrometric analysis. The results indicated that saxitoxin (STX) was the only PST analogue in the samples and that it was present in high concentrations, as much as 1 mg L(-1). Microscopic analysis revealed that 95%-100% of the phytoplankton in the positive samples consisted of Anabaena lemmermannii. The trophic status of lakes in which STX-containing blooms were found varied from oligotrophic to hypertrophic. All the lakes had high nitrogen-to-phosphorus ratios. In some instances, samples had been collected from sites where swimmers had reported adverse health effects, and in three such cases, reported adverse health effects were associated with sites from which samples testing positive for STX had been received. Symptoms of fever, eye irritation, abdominal pains, and skin rash were reported in children aged 2-10 years after exposure to the water. These were not the adverse human symptoms typical of STX poisoning; rather, they represented acute effects often reported following recreational exposure to cyanobacterial blooms.
Out-of-hospital administration of activated charcoal by emergency medical services.
STUDY OBJECTIVE: We assess the feasibility of activated charcoal provided by emergency medical services (EMS). METHODS: This was a 12-month follow-up study on the feasibility of a newly introduced protocol to administer activated charcoal by EMS to acutely poisoned patients before arrival at the hospital. Administration of activated charcoal (50 g or 1 g/kg orally or by nasogastric tube) was considered in 2,047 patients with acute poisoning. Main outcome measures were success rate and elapsed times in and adverse effects of administering charcoal. RESULTS: Activated charcoal was considered to be an indication for 722 patients (35% of the study population) and was administered to 555 patients. Median elapsed time from poison ingestion to activated charcoal administration was 88 minutes, and median time from activated charcoal administration to hospital arrival was 20 minutes. Activated charcoal was not given to 101 (15.4%) patients, although considered indicated, because of patient refusal (n=72), inability to ingest a charcoal mixture (n=23), technical problems (n=4), or recommendation by the hospital after telephone consultation (n=2). Charcoal caused no reported adverse effects. CONCLUSION: Out-of-hospital activated charcoal administration by EMS is feasible, even in severe poisonings. Adverse events were rare.
[Mushroom poisoning].
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Nasal sumatriptan is effective in treatment of migraine attacks in children: A randomized trial.
OBJECTIVE: To investigate the efficacy of nasal sumatriptan in migraine attacks of children and adolescents. METHODS: A double-blind, placebo-controlled, two-way crossover trial was conducted in three hospital outpatient departments, with 8 to 17 year olds diagnosed with migraine serving as subjects (International Headache Society 1988). A single dose of sumatriptan nasal spray and a matching placebo were administered at home during two attacks. The sumatriptan dose was 10 mg for a body weight of 20 to 39 kg and 20 mg for those with a body weight of >/==" BORDER="0">40 kg. The primary efficacy endpoint was headache relief by two grades on a 5-grade face scale at 2 hours. RESULTS: Eighty-three patients used both treatments and 11 only the first. At 2 hours, the primary endpoint was reached nearly twice as often after sumatriptan (n = 53/83; 64%) as after placebo (n = 32/83; 39%) (p = 0.003). Already at 1 hour, headache relief was seen more often after sumatriptan (n = 42/83; 51%) than after placebo (n = 24/83; 29%) (p = 0.014). The difference was even more obvious in patients who received the 20-mg dose as well as in the intention-to-treat analyses (n = 94). Other endpoints, including child's preference and using rescue medication, also favored sumatriptan. The most common adverse effect was a bad taste after sumatriptan, reported in 29% (n = 26/90) of the attacks. No serious adverse effects were observed. CONCLUSION: Nasal sumatriptan is an effective and well-tolerated treatment for migraine attacks in children over 8 years of age.
[Importance of being prepared for epidemic poisoning by chemicals].
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[Household chemicals causing sudden poisoning].
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[Antidotes and other treatment of poisoning--what,where,when].
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Focusing on changing clinical practice to enhance rational prescribing--collaboration and networking enable comprehensive approaches.
Most western societies are enhancing rational pharmacotherapy to get best value for the constantly increasing expenditure on drugs. Government bodies and the medical profession took joint responsibility for the education programme for rational prescribing, launched in Finland at the end of the 1990s. The goals were to enhance critical thinking, and when appropriate, change prescribing behaviour. Various approaches that included evidence-based continuing medical education (CME), implementing clinical guidelines, delivering information, and providing prescribing feedback were used simultaneously. The commitment of the stakeholders and participants has been strong and the approaches have succeeded even though there is no clear outcome measure. The Government has recently decided to continue and widen the process, which started as a pilot programme, on a tight budget.
Predictive value of pretransplantation cyclosporine pharmacokinetic studies on initial post-transplantation dosing in pediatric kidney allograft recipients.
Despite the introduction of a variety of new immunosuppressive agents, cyclosporine A (CsA) has maintained a strong position in pediatric transplantation (Tx). Post-Tx dosing with CsA is a challenging task because of the narrow therapeutic window of the drug, the great individual variability of metabolism and the lack of consensus about the optimal dosage and targeted blood concentration. Sufficient administration of CsA may be protective against acute rejections and other early complications after Tx, which is crucial for the long-term survival of the graft. Individual doses based on pre-Tx pharmacokinetic studies might be helpful in achieving optimal early concentrations of CsA. To asses the usefulness of pharmacokinetic studies, we retrospectively compared the post-Tx doses administered with the individually predicted doses between 1988 and 1998. Multiple regression of data on 65 de novo renal transplant recipients, 1.1-15.5 yr old, was used to analyze the significance of the predicted dose, trough blood concentration of CsA (B-CsA), serum creatinine and age at the time of Tx in explaining the doses used during the first three post-Tx weeks. Patients were grouped according to age (<2, 2-8 and >8 yr), according to the predicted dose (within or outside +/-25% of age-group average), and according to the oral formulation of CsA. Standard dosing scheme was simulated by using age-specific average doses in the place of the individual predicted doses. Administered doses of CsA were high [averaging 22.6 (504), 20.7 (484), and 12.4 mg/kg/d (329 mg/m2/d) for patients <2, 2-8, and >8 yr old] but the average B-CsA remained in the target range of 250-450 microg/L. The predicted dose and age were significant parameters in explaining the administered doses during the first 3 wk after Tx. B-CsA and S-creatinine were non-significant. The predicted doses were used to initiate the dosing of CsA after Tx (R2 = 0.70) and adjustments to dosing were made during the next weeks (R2 = 0.59, 0.52). Multiple regression model showed better fit for 60% of our patients, who had atypical predicted doses (R2 = 0.74, 0.60, 0.64 for first, second and third post-Tx weeks, respectively), most remarkably in patients <2 yr of age, than for the study population as a whole. A simulated standard dose was not able to explain the administered doses of CsA. In conclusion, pre-Tx pharmacokinetic studies are valuable for determining individual post-Tx starting doses, especially for those patients who need high or low doses of CsA. Individual dosing led to relatively high initial CsA doses, which could be significant for the long-term survival of the graft.
Comparing pharmacokinetics of amoxicillin given twice or three times per day to children older than 3 months with pneumonia.
For children with ambulatory pneumonia, the World Health Organization (WHO) recommends oral amoxicillin (15 mg/kg of body weight/dose) thrice daily (t.i.d.) or oral cotrimoxazole (4 mg of trimethoprim/kg/dose) twice daily (b.i.d.). The more frequent amoxicillin dosing may lead to compliance problems. To compare the pharmacokinetics and levels of amoxicillin in plasma in the current WHO acute respiratory infection recommendations with the 25-mg/kg/dose b.i.d. regimen, we performed a two-group parallel study of 66 children ages 3 to 59 months with pneumonia. Amoxicillin was given orally at 25 mg/kg/dose b.i.d. or 15 mg/kg/dose t.i.d. Amoxicillin concentrations were determined by high-performance liquid chromatography after the first dose on days 1 and 3. After the first dose on day 1, the mean area under the concentration-time curve (AUC) for amoxicillin after the 25-mg/kg dose was 54.7 versus 24.9 micro g. h/ml after the 15-mg/kg dose. After the first dose on day 3, the mean AUC was 44.1 versus 28.5 micro g. h/ml. All but two children had plasma amoxicillin concentrations above 0.5 micro g/ml for >50% of the dose interval on both days. Six children on day 1 and five children on day 3 had concentrations above 1.0 micro g/ml for <50% of the dose interval. On day 1, 16 of 27 children in the b.i.d. group and 11 of 26 children in the t.i.d. group had concentrations that were above 2.0 micro g/ml for <50% of the dose interval, and on day 3, 18 of 31 children in the b.i.d. group and 8 of 31 children in the t.i.d. group had concentrations that were above 2.0 micro g/ml for <50% of the dose interval. Amoxicillin b.i.d. is a feasible alternative for t.i.d. dosing. To lengthen the time above the MIC at higher concentration levels, a 30- to 40-mg/kg/dose b.i.d. should be considered instead of the 25 mg/kg/dose used in this study.
[Treatment of paracetamol intoxication. Correctly given antidote treatment will prevent liver damage].
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