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Biomedical subjects

H Sakata

Publications and source records attributed to H Sakata.

At least 199 records · Page 11Linked to original sources

[Clinical and pharmacokinetic evaluation of a +rokitamycin dry syrup in children].

Twenty five children were treated with rokitamycin (RKM) and its clinical efficacy and side effects were evaluated. Ages of the patients ranged from 13 days to 10 years. Doses of RKM ranged 17.1-39.3 mg/kg/day for 2.3 to 17.7 days. Twenty four patients including 8 Mycoplasma pneumonia, 5 bronchopneumonia, 6 bronchitis, 2 streptococcosis, 1 otitis media, 1 tonsillitis and 1 Chlamydia conjunctivitis were evaluated for clinical efficacy. Results were excellent in 7, good in 12, fair in 4, and poor in 1 patient. One patient was excluded from the evaluation, because the patient was treated with erythromycin before entering this study. Out of the 25 patients, 3 cases showed eosinophilia, 2 cases showed elevated GOT and GPT but no adverse clinical signs due to RKM were observed. The pharmacokinetics of RKM was studied in 5 patients whose ages ranged from 8 to 12 years. Plasma peak concentrations of RKM in 2 patients were 0.14 and 0.16 micrograms/ml at 30 minutes after doses of 5 mg/kg. Peak concentrations in 3 patients ranged from 0.32 to 1.02 micrograms/ml after doses of 10 mg/kg. Portions of the drug excreted into urine within 6 hours were 0.49 and 1.03% in 2 patients each of whom was given doses of 5 mg/kg, and ranged from 1.16 to 1.30% in 3 patients, each given 10 mg/kg. Metabolic products in urine within 4 hours after doses of 5 to 10 mg/kg were studied in 4 patients. Leucomycin A7 and leucomycin V accounted for almost 90% of all the related compounds excreted.

Administration, Oral↗

[Ceftriaxone in neonates and young infants; clinical efficacy, pharmacokinetic evaluation and effect on intestinal bacterial flora].

Twenty-two newborn and young infants, including 13 premature infants, were treated with ceftriaxone (CTRX) and the clinical efficacy and side effects were evaluated. Ages of the patients ranged from 0 to 106 days, and their body weights from 1.19 to 3.92 kg. Dose levels were 15 to 23 mg/kg every 12 to 24 hours for 2 to 13.5 days. Eighteen infants with sepsis and 1 infant with purulent coxitis were considered to have responded to the CTRX treatment. The results were excellent in 13 and good in 6 patients. The drug was well tolerated, although diarrhea occurred in 2 patients, eosinophilia in 6 patients, slightly elevated serum concentrations of transaminases in 2 patients and thrombocytosis in 1 among the 22 patients. The pharmacokinetic studies on CTRX were done in 8 patients including 3 premature infants. The ages ranged from 3 to 50 days, and body weight from 2.20 to 3.94 kg. Plasma concentrations 30 minutes after single 10 mg/kg intravenous bolus injection in two 4- to 5-day-old premature neonates were 48.4 and 50.0 micrograms/ml and those at 6 hours were 22.7 and 23.4 micrograms/ml, respectively. In 2 mature neonates, plasma levels were 42.2 and 39.1 micrograms/ml at 30 minutes and 23.4 and 26.6 micrograms/ml at 6 hours after single 20 mg/kg doses. In four 12- to 50-day-old patients, plasma concentrations ranged from 35.9 to 175.0 micrograms/ml at 30 minutes and from 21.9 to 32.8 micrograms/ml at 6 hours after multiple doses of 20 mg/kg intravenous bolus injection. The plasma half-lives of the drug ranged from 6.6 to 16.8 hours in these 8 patients. Excretion rates of this drug into urine within 12 hours were 21.4 to 63.4% in 7 patients. Urine concentrations of the drug in 34 samples collected at various times from the 7 patients ranged from 28.3 to 469.0 micrograms/ml. The cerebrospinal fluid level at 2 hours after a dose was 3.33 micrograms/ml on the 5th day of treatment in 1 patient with sepsis receiving 18 mg/kg of the drug every 12 hours. Its level at 3 hours after a dose was 6.07 micrograms/ml on the 6th day of treatment in another patient with aseptic meningitis receiving 20 mg/kg every 12 hours. The influence of CTRX on the fecal flora was studied in 3 patients receiving 20 mg/kg X 2/day. The characteristic pattern observed during the drug administration was the disappearance of Bifidobacterium and Enterobacteriaceae, the preservation of Streptococcus and Staphylococcus, and the increase in Candida.(ABSTRACT TRUNCATED AT 400 WORDS)

Birth Weight↗

Immunological studies on herpetic keratitis: effect of IL-2 on HSV-specific CTL.

The effect of interleukin 2 (IL-2) on cytotoxic T lymphocytes (CTL) was examined in mice with corneal infection of herpes simplex virus (HSV). The corneas of the mice were inoculated with HSV after scratching the corneal epithelium. Ten days after the inoculation, CTL were induced in vitro from spleen cells of the mice. IL-2 was added for the initiation of CTL induction. CTL induced without IL-2 served as controls. After the culture, viable cells were counted and cytotoxicity of CTL was measured by 3H-proline releasing assay. IL-2 promoted proliferation of HSV specific CTL without increasing the cytotoxicity of HSV specific CTL.

Animals↗

Effect of bone marrow mononuclear phagocytes on the bone matrix-induced bone formation in rats.

Experimental ulnar bone defects in rats were grafted with freshly isolated whole bone marrow cells; bone marrow mononuclear phagocytes (macrophages); or both types of marrow cell preparations in combination with demineralized bone matrix gelatin (BMG). In the absence of BMG, the osteogenic performance of the marrow cell preparations was superior to that of the macrophages. In the presence of BMG (composite grafts), their osteogenic potential was nearly identical and significantly improved the level of bone formation stimulated by implants of BMG alone. The results encourage speculation and further research on sequential activities of bone marrow monocyte-macrophage (osteoclast) lineages and marrow stromal (osteoprogenitor) cell in bone morphogenetic protein (BMP)-induced regeneration.

Animals↗

Parietal cortical neurons responding to rotary movement of visual stimulus in space.

We found in the posterior parietal association cortex (area 7a) of alert monkeys a group of neurons that were specifically sensitive to the rotation of a visual stimulus (N = 21). They responded to rotation of a stimulus in a particular direction much better than to the linear movement in any direction, regardless of shape or orientation of the stimulus. Responses were relatively independent of stimulus position within relatively large receptive fields. The majority of these neurons (N = 13) responded to rotation in depth either in the saggital, horizontal or diagonal plane rather than in the frontoparallel plane. These neurons were localized in a small region on the anterior bank of the superior temporal sulcus and may be related directly to the perception of rotation of visual objects in space.

Animals↗

Development of erosive gastritis in a canine model of esophageal varices.

We designed a reproducible canine model of esophageal varices, based on the concept of a regional hyperdynamic state in the upper stomach. Arterialization of the left gastric vein concomitant with the distal splenorenal shunt led to a stable hyperdynamic state and reproducible esophageal varices occurred. In the long-term follow-up of these dogs with varices, the erosive gastritis seen in the upper stomach clearly resembled clinically observed lesions. Hemodynamic and morphological studies revealed that gastric mucosa of these animals was in an ischemic state, even though there was a remarkable increase in blood flow in the submucosal area. It is suggested that the decrease in mucosal blood flow, as induced by the hyperdynamic state caused erosive gastritis.

Animals↗

The effect of antimicrobial agents on fecal flora of children.

Influences of antibiotics on the fecal flora in children were studied for oral ampicillin, penicillin V, erythromycin, cefaclor, and gentamicin and for intravenous ampicillin, methicillin, cefpiramide, and ceftazidime. All antibiotics affected the normal flora, although the quality and quantity of the changes were variable. No substantial differences were noted between the oral and intravenous use of ampicillin with regard to its effect on the flora. Three penicillins, ampicillin, penicillin V, and methicillin, caused remarkable changes. The characteristic pattern observed was the considerable suppression of Bifidobacterium, Streptococcus, and Lactobacillus species. Although enterobacteria did not significantly change in number, Klebsiella spp. frequently replaced Escherichia coli. In patients given erythromycin and cefaclor, the reduction in the number of Bifidobacterium spp. was 1 log10 and that of members of the family Enterobacteriaceae was 3 log10. Gentamicin administered orally caused a drastic change, including a remarkable decline of E. coli to less than 2 log10/g of feces. Cefpiramide, a parenteral expanded-spectrum cephalosporin, suppressed normal flora so markedly that almost all species of organisms were eradicated, and the active growth of yeasts was promoted (2.6 log10 increase). Ceftazidime caused similar changes as cefpiramide, but the changes were less extensive. Yeasts increased after treatment with most antibiotic groups. This increase was particularly prominent in patients given oral penicillins and expanded-spectrum cephalosporins.

Administration, Oral↗

[Clinical and pharmacokinetic evaluation of imipenem/cilastatin sodium in children].

Nineteen episodes of infection in 17 children (one had 3 episodes) were treated with imipenem/cilastatin sodium (MK-0787/MK-0791), and the clinical efficacy and side effects were evaluated. The ages of patients ranged from 1 month to 8 years 1 month and their body weights ranged from 3.9 to 25.2 kg. The MK-0787/MK-0791 was administered intravenously by a 30-60 minutes infusion, in doses ranging from 8-42 mg/8-42 mg/kg every 6 to 12 hours for 3 to 40.5 days. Among 18 episodes in 16 patients (one patient proved to have rubella meningoencephalitis and was excluded from evaluation of the clinical efficacy) with bacterial infections including sepsis, pneumonia, acute suppurative thyroiditis and urinary tract infections, the results were excellent in 10, good in 5, fair in 2, and poor in 1 episode. Some side effects were noted; among all 19 episodes in the 17 patients diarrhea was noted in 3, rash in 1, slightly elevated serum transaminases in 1 and thrombocytosis in 1 episode. Pharmacokinetic studies were done in 7 patients whose ages ranged from 3 years 2 months to 13 years 1 month. Plasma concentrations of MK-0787 in 2 children were 19.6 and 20.0 micrograms/ml at 15 minutes and 5.6 and 2.1 micrograms/ml at 2 hours after a 10 mg/10 mg/kg intravenous 30-minute drip infusion of MK-0787/MK-0791. Plasma half-lives of MK-0787 were 1.52 and 0.74 hour, and total urinary recoveries were 54.6 and 71.4% during 0-6 hours. After a 20 mg/20 mg/kg intravenous 30-minute drip infusion into 2 other children, plasma concentrations of MK-0787 were 46.8 and 44.0 micrograms/ml at 15 minutes and 7.8 and 7.4 micrograms/ml at 2 hours. Plasma half-lives were 0.82 and 0.83 hour, and total urinary recoveries were 110.2 and 80.5% during 0-6 hours. Plasma concentrations of MK-0787 were less than 0.2, 0.2 and 1.2 micrograms/ml just before the next doses in 3 patients given 11-20 mg/11-20 mg/kg of MK-0787/MK-0791 every 6-8 hours. The time course of the plasma levels and urinary excretion in these patients were similar to those noted in the previous 4 patients following a single dose. Plasma concentrations of MK-0787 in a girl were 0.3 micrograms/ml just before the next dose and 8.2 micrograms/ml at 2 hours after multiple doses of 14 mg/14 mg/kg every 6 hours for 3 days and then 28 mg/28 mg/kg every 6 hours for 35 days.(ABSTRACT TRUNCATED AT 400 WORDS)

Bacterial Infections↗

[Clinical and pharmacokinetic evaluation of cefotiam in neonates and young infants].

Seven neonates and young infants were treated with cefotiam (CTM) in doses ranging from 8-25.6 mg/kg every 6 to 24 hours for 1 to 14 days, and the clinical efficacy and side effects were evaluated. Among 5 infants with bacterial infections including bacteremia, perianal abscess, pneumonia, urinary tract infection and probable sepsis and meningitis, clinical responses were excellent in 1 and good in 4 patients. In the 7 patients, no side effect attributable to CTM was observed. Serum concentrations of CTM were measured in 5 patients administered with 10 to 20 mg/kg of CTM by bolus intravenous injection. Peak serum concentrations of 21.9 to 38.0 micrograms/ml were noted in samples taken at 15 minutes after injection. Serum half-lives of the drug were 2.35 hours in 2 day-old neonate, 0.72 to 0.85 hours in 3 infants of 25 to 37 days, and 8.46 hours in an 18 day-old neonate with renal insufficiency.

Bacterial Infections↗

[Bacteriological, pharmacokinetic and clinical evaluations of ceftriaxone in the pediatric field. Pediatric study group of ceftriaxone].

UNLABELLED: Ceftriaxone (CTRX), a new injectable cephem antibiotic agent, was evaluated bacteriologically and clinically for its efficacy and safety in the pediatric field by a study group organized with pediatricians from all over the country. The following are a summary of the results of the evaluation. Antibacterial effects: The inhibition of growth was attained for over 90% of strains of K. pneumoniae, H. influenzae and Salmonella spp. at the concentration of 0.10 micrograms/ml and of strains of S. pneumoniae and E. coli at the concentration of 2.0 micrograms/ml. The CTRX was proved to have excellent antibacterial effects. Absorption and excretion: Thirty minutes after one shot intravenous administration with 10, 20, 40 and 50 mg/kg of CTRX, its serum levels were 73, 124, 169 and 190 micrograms/ml, respectively, a clear tendency of dose-response relationship being noticed. The serum levels decreased only gradually and stayed as high as 10 to 20 micrograms/ml even after 12 hours. The half-lives of the drug were 5.5, 6.3, 6.0 and 4.7 hours for the 4 different dose levels, respectively. Following the intravenous injection with 10, 20 and 40 mg/kg, the urinary excretion rates were 55, 52 and 54%, respectively. Following the one shot intravenous administration or by the drip infusion for 30 minutes with about 50 mg/kg, CTRX levels in the cerebrospinal fluid ranged from 1 to 20.3 micrograms/ml in case of purulent meningitis (5 to 10 micrograms/ml in most cases). CLINICAL RESULTS: A total of 322 cases was enrolled. The efficacy of CTRX was evaluated in 295 cases out of the 322, excluding drop-outs and the cases which did not meet the protocols. The clinical efficacy rate was 94% of 191 cases where the causative bacteria were identified, CTRX being "excellent" in 108 cases and "effective" in 72. In the remaining 104 cases where the causative bacteria were not identified, the efficacy rate was 92%, CTRX being "excellent" in 42 cases and "effective" in 54. Furthermore, the efficacy rate was 89% of 18 cases infected with more than one kind of bacteria. The drug showed "excellent" or better effectiveness in 88% of 75 cases which had not responded to other antibiotics. Bacteriologically, 174 out of 216 strains (93%) which were judged to be causative bacteria disappeared with the use of CTRX. Eighty-five percent of 53 strains which had not responded to other antibiotics disappeared by the CTRX treatment.(ABSTRACT TRUNCATED AT 400 WORDS)

Adolescent↗

[A pharmacokinetic and clinical evaluation of ceftazidime in neonates and premature infants. A study of ceftazidime in the perinatal co-research group].

Ceftazidime (CAZ) was evaluated for its pharmacokinetics and clinical usefulness in neonates and premature infants. The results obtained were summarized below. Following intravenous injection of CAZ 10 or 20 mg/kg to neonates and premature infants, dose response was observed in serum concentrations ranging from 5.1 to 21.9 micrograms/ml at 6 hours after the injection. The serum half-life tended to be longer in premature infants than in neonates; the half-life being longer for an infant with lower day-age. Urinary recovery rates during the first 6 hours after single administrations of 10 mg/kg of CAZ tended to be higher in neonates than in premature infants, and higher rates were observed in older infants. However, no noticeable difference was observed after the administration of CAZ 20 mg/kg. Clinical efficacy was evaluated in 99 neonates and 55 premature infants (156 infections), daily doses ranging from 21.1 to 246.4 mg/kg. Out of 105 cases of common infections, mainly 44 cases with causative organisms identified (including 17 of sepsis, 7 of pneumonia, 4 of purulent meningitis, 11 of urinary tract infections) were examined for the clinical efficacy. The efficacy of CAZ was excellent in 21, good in 18, fair in 1 and poor in 4, with the efficacy rate of 88.6%. In the remaining 61 cases, i.e., 37 with causative organisms unknown and 24 with signs of intrauterine infections, the efficacy rate was 95.1%. Other than these cases, additional 51 cases were given CAZ solely for prophylaxis of infections, and the results were found satisfactory. On the whole, clinical efficacy rate of CAZ was 94.9% in 156 cases. Out of the 44 cases examined for bacteriological responses, 38 were evaluated as 'eradicated', 3 'persisted' and 3 'unknown' with eradication rate of 92.7%. Replacement of organisms (superinfection) was observed in 3 cases. Out of 179 cases in which adverse effects were assessable, adverse effects were observed in a total of 4 cases (2.2%), i.e., 3 cases of diarrhea (1.7%) and 1 case of rash (0.6%), and abnormal laboratory findings were observed in a total of 14 cases (7.8%), i.e., increase in eosinophiles count in 8 (4.5%), elevation of GOT in 3 (1.7%), increase in platelet, elevation of GOT . GPT, and elevation of GOT . GPT . BUN in 1 case each (0.6%). None of them were severe and they were transient. Elevations of bilirubin and cases of positive PIVKA II associated with CAZ were not observed.(ABSTRACT TRUNCATED AT 400 WORDS)

Bacterial Infections↗

[Clinical and pharmacokinetic evaluation of ceftazidime in neonates and young infants].

Seventeen newborn and young infants including 6 premature infants were treated with ceftazidime (CAZ) and the clinical efficacy and side effects were evaluated. Ages of the patients ranged from zero to 55 days, and their body weights ranged from 1.35 to 3.87 kg. Doses of CAZ ranged 10-50 mg/kg every 6 to 12 hours for 3 to 14 days. Twelve infants with infections including meningitis, sepsis, pneumonia and urinary tract infections, were considered to have responded to the CAZ treatment. Among them, results were excellent in 2, good in 9 and fair in 1 patient. The drug was well tolerated, but 1 had diarrhea and 3 patients had eosinophilia among the 17 patients. The pharmacokinetics of CAZ was studied in 22 patients including 11 premature infants. Their ages ranged from 1 to 60 days, and body weights ranged from 0.85 to 3.96 kg. Serum concentrations in 7 patients ranged from 24.2-38.5 micrograms/ml at 30 minutes after single doses of 10 mg/kg intravenous bolus injections and 4.36-12.4 micrograms/ml at 6 hours. Mean elimination half-lives of the drug were 3.20 hours in 2 patients under 7 days of age and 2.31 hours in 5 patients from 7 days of age or older. In 8 patients, serum concentrations ranged 32.6-57.9 micrograms/ml at 30 minutes and 8.10-20.7 micrograms/ml at 6 hours after single doses of 20 mg/kg. Elimination half-lives were 3.53 hours in 4 patients under 7 days of age and 2.79 hours in 4 patients from 7 days of age or older.(ABSTRACT TRUNCATED AT 250 WORDS)

Bacterial Infections↗