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Kayoko Kitatani

Publications and source records attributed to Kayoko Kitatani.

5 recordsLinked to original sources

Clinical usefulness of measurements of urinary deoxypyridinoline (DPD) in patients with postmenopausal osteoporosis receiving intermittent cyclical etidronate: advantage of free form of DPD over total DPD in predicting treatment efficacy.

Deoxypyridinoline (DPD) in urine, which reflects systemic bone resorption, is considered useful for assessing the effects of osteoporosis treatment. However, there are various methods of measuring DPD in urine but have been few comparative studies of the effectiveness of these methods. In this study, we investigated 94 postmenopausal women (63 patients administered with intermittent cyclical etidronate (ICE), and 31 control patients) focusing on total DPD and free DPD, measured by high-performance liquid chromatography (HPLC) and enzyme-linked immunosorbent assay (ELISA), respectively. For other metabolic bone markers, i.e., tartrate-resistant acid phosphatase (TRAP), bone-specific alkaline phosphatase (BAP), and osteocalcin (OC), we also investigated the ability of these markers to predict increases in bone mineral density (BMD), by employing receiver operating characteristic (ROC) analysis in relation to increasing BMD following ICE therapy, and we determined the usefulness of the different metabolic bone markers, using the signal-noise ratio derived from the mean significant change (MSC), which is double the day-to-day coefficient of variation in healthy volunteers. In the same way, we defined a significant change in BMD as double the mean change in BMD for 6 months after the initiation of observation in the control group, and we used this value as the cutoff value for ROC analysis. It was found that the assessment of urinary DPD was useful for assessing the treatment efficacy of ICE, and the assessment of changes at week 12 of therapy was most effective. In order to recognize changes in metabolic bone markers when the MSC is considered as the cutoff value, it is useful to assess the change in total DPD by HPLC. However, in order to predict increases in BMD 6 months or more after the initiation of ICE, it seems more effective to measure free DPD by ELISA. We conclude, therefore, that the measurement of free DPD by ELISA is more useful, especially when treatment efficacy of ICE is clinically predicted in individual patients with osteoporosis.

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Vitamin K(2) (menaquinone 4) reduces serum undercarboxylated osteocalcin level as early as 2 weeks in elderly women with established osteoporosis.

Twenty elderly osteoporotic women with vertebral fracture(s) were randomly allocated to two groups; women in the MK(4) group received calcium with menaquinone 4 (MK(4)) at a dose of 45 mg/day for 2 weeks, and women in the control group received calcium alone for the same period. Serum intact osteocalcin (OC) and undercarboxylated osteocalcin (uc-OC) levels were measured by immunoradiometric assay and enzyme immunoassay, respectively, at baseline and on the 7th and 14th days following the start of the treatment. There were no differences in the baseline data including age, weight, phylloquinone, menaquinone 4, menaquinone 7, OC, and uc-OC levels between the MK(4) group and the control group. Administration of MK(4) significantly raised the MK(4) level from 0.20 +/- 0.10 (mean +/- SE) pg/ml to 15.09 +/- 5.62 pg/ml ( P < 0.04), and reduced serum uc-OC levels from 2.80 +/- 0.93 ng/ml to 1.76 +/- 0.56 ng/ml ( P < 0.05) at the end of the study, respectively. No significant changes in these levels were observed in the control group. Serum OC levels were stable during the period in both groups. In this randomized prospective study, the MK(4) group shows a reduction in the serum uc-OC level within 2 weeks without any significant change in OC, suggesting that the uc-OC is changed to carboxylated OC. This early effect of MK(4) on bone metabolism may be estimated by the measurement of serum uc-OC in elderly osteoporotic women with vertebral fractures.

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Clinical usefulness of the serum N-terminal propeptide of type I collagen as a marker of bone formation in hemodialysis patients.

BACKGROUND: An intact collagen I amino-terminal propeptide (PINP) assay has been developed as a useful assay for bone formation. The present study was performed to investigate the clinical usefulness of serum PINP as a bone-formation marker in hemodialysis (HD) patients. METHODS: PINP and other bone-formation markers, ie, bone alkaline phosphatase (BAP) and intact osteocalcin (OC), were determined in serum samples collected from 209 HD patients. RESULTS: Serum PINP levels, in contrast to serum BAP and OC levels, did not change significantly during a single HD session (P = 0.069; n = 14). There were significant positive correlations between serum PINP and BAP (r = 0.723; P < 0.001) and OC values (r = 0.739; P < 0.001), as well as intact parathyroid hormone (r = 0.652; P < 0.001) and bone-resorption marker values: deoxypyridinoline (DPD; r = 0.823; P < 0.001), pyridinoline (PYD; r = 0.735; P < 0.001), and beta-crosslaps (r = 0.705; P < 0.001). Serum PINP values correlated significantly more strongly than serum BAP values with all bone-resorption markers. Serum PINP values significantly correlated negatively with annual changes in bone mineral density (BMD) in the distal third of the radius (r = -0.286; P < 0.001). When subjects were divided into tertiles according to degree of bone loss, subjects with greater bone loss had significantly greater serum PINP, BAP, and OC levels, although PINP and OC provided greater discrimination than BAP. PINP-PYD and PINP-DPD ratios, indices of osteoblast function not confounded by enhanced bone resorption, significantly positively correlated with annual BMD changes in the distal third of the radius (PINP-PYD ratio, P = 0.008; PINP-DPD, P = 0.015). CONCLUSION: Serum PINP may provide a better marker of osteoblast function in HD patients and thus be clinically useful for predicting radius bone loss.

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[Effect of alfacalcidol on bone and calcium metabolism in elderly women].

Oral administration of active vitamin D3 can reduce the loss of bone mass and the incidence of fractures in patients with osteoporosis in Japan. We conducted a prospective study to confirm the effects of 1 alpha(OH)D3 (Alfacalcidol, Alfarol Chugai Tokyo) on bone and calcium metabolism in elderly women with osteoporosis. Enrolled in the present study were 16 elderly osteoporosis women aged 72.6 +/- 4.5 years to whom 1 microgram of 1 alpha(OH)D3 was administered daily. Fasting blood and urine were obtained at baseline, 1 week, 4 weeks, 12 weeks and 24 weeks after the treatment. Monitored parameters were vitamin D metabolites, intact-PTH, bone alkaline phosphatase (BAP), osteocalcin (OC), deoxypyridinoline (DPD) and pyridiuium crosslinked type I collagen telopeptides (CTx). Serum 1 alpha, 25(OH)2D and PTH levels were significantly increased (p < 0.01) and decreased (p < 0.05), respectively at 1 week after commencing administration. There was a significant decrease of DPD (p < 0.05) at 12 weeks after commencing administration compared to the baseline levels. Serum levels of BAP and OC were found elevated at 1 week, and decreased at 12 weeks. In conclusion, the present study clinically confirmed that 1 alpha(OH)D3 stimulates bone formation in vitro. Long-term administration of 1 alpha(OH)D3 indirectly suppressed bone resorption through the suppression of parathyroid function in the elderly.

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