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Takako Saito

Publications and source records attributed to Takako Saito.

4 recordsLinked to original sources

Evaluation of anti-parvovirus B19 activity in sera by assay using quantitative polymerase chain reaction.

Human parvovirus B19 (B19) infects cells of erythroid lineage. Production of neutralizing antibodies (Abs) is indispensable for recovery from B19-related disease state. In this study, we used a convenient method to measure neutralizing activities in human sera by using a real-time quantitative PCR based assay. Erythroid cell line KU812Ep6 was incubated with test sera before infection with B19 virus. The copy number of B19-DNA in cultures was decreased in the presence of the sera from patients who recovered from acute B19 infection, whereas no decrease in B19-DNA was in cultures incubated with sera from healthy volunteers who had no B19 infection. The decrease in B19-DNA copy number was calculated and the inhibition percentage was expressed as neutralizing activity to B19. A clinical study showed that the levels of neutralizing ability were high in patients who recovered soon after acute B19 infection, but were low in some patients with a prolonged clinical course for recovery from B19 infection. This method is simple and convenient compared with methods described previously, showing its usefulness to evaluate the neutralizing activity to B19.

Animals↗

Lessons learned as a research assistant studying ambulatory blood pressure in elderly Japanese stroke patients.

The research assistant plays a critical part in research projects, yet there is little structured information about the role. The present paper describes the research assistant"s role and provides an example of the research assistant"s activities in nursing research. In this pilot study, 24 h ambulatory blood pressure monitoring was conducted on 15 elderly Japanese stroke patients in a hospital rehabilitation unit. The research assistant's involvement is described along the course of the study: pre-data collection; data collection and data processing. A research assistant needs to have good communication skills, a detail-oriented focus and an inquisitive nature.

Aged↗

Urinary excretion of aquaporin-2 water channel in diabetic ketoacidosis.

We studied the changes in plasma arginine vasopressin (AVP) and urinary excretion of aquaporin-2 (UAQP-2) water channel in 3 patients with diabetic ketoacidosis. They had marked hyperglycemia of 27.9 +/- 2.8 mmol/l (mean +/- SEM), and elevated hemoglobin A1c of 8.8 +/- 1.4%. Circulatory blood volume was decreased by approximately 25%, which was determined by the changes in hematocrit. Plasma AVP levels were elevated to 10.3 +/- 3.0 pmol/l and UAQP-2, 578 +/- 200 fmol/mg creatinine (normal, 153 +/- 28) at the hospitalization. When hyperglycemia was improved by the intravenous infusion of a small dose of insulin plus fluid administration, both plasma AVP and UAQP-2 promptly decreased to 1.2 +/- 0.2 pmol/l and 252 +/- 29 fmol/mg creatinine on day 7, respectively. These alterations were concomitant with the recovery of circulatory blood volume. In the present study, UAQP-2, in addition to plasma AVP, indicates circulatory blood volume depletion, and the changes in UAQP-2 estimates the AVP-dependent recovery of circulatory blood volume during the therapeutic period in the patients with diabetic ketoacidosis.

Adult↗

Decrease in urinary excretion of aquaporin-2 associated with impaired urinary concentrating ability in diabetic nephropathy.

Aquaporin-2 (AQP-2) is known to be expressed in the renal collecting duct cells and participates in urinary concentration in response to arginine vasopressin (AVP). The present study was undertaken to determine whether progression of renal dysfunction affects urinary excretion of AQP-2 in diabetic nephropathy. The study was composed of 8 control subjects and 14 patients with type 2 diabetes classified into two groups according to serum creatinine level (cut-off point; 1.5 mg/dl). After an 8-hour water deprivation, both urinary osmolality (U(osm)) and urinary excretion of AQP-2 significantly decreased in the diabetic patients with chronic renal failure as compared to the control subjects (p < 0.0001, p < 0.05, respectively). After a water load (10 ml/kg), no differences were found in plasma osmolality (P(osm)), AVP levels and U(osm), whereas urinary excretion of AQP-2 significantly decreased in the patients with chronic renal failure as compared to the control subjects (p < 0.05). These results indicate that the decreased urinary excretion of AQP-2 in diabetic nephropathy is due to the impaired cellular signaling of AVP in collecting duct cells, which may be partly involved in the urinary concentrating defect in renal failure.

Aquaporin 2↗