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PubMed · 8941255

Bone densitometry.

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1996-11-22. Bone densitometry.. https://pubmed.ncbi.nlm.nih.gov/8941255/

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Parathyroid hormone treatment can reverse corticosteroid-induced osteoporosis. Results of a randomized controlled clinical trial.

Corticosteroid-induced osteoporosis is the most common secondary cause of osteoporosis. We conducted a 12-mo, randomized clinical trial of human parathyroid hormone 1-34 (hPTH 1-34) in postmenopausal women (mean age was 63 yr) with osteoporosis who were taking corticosteroids and hormone replacement therapy. Response to the treatment was assessed with bone mineral density (BMD) measurements of the lumbar spine by quantitative computed tomography (QCT); BMD measurements of the lumbar spine, hip, and forearm by dual-energy x-ray absorptiometry (DXA); and biochemical markers of bone turnover. The mean (+/-SE) changes in BMD of the lumbar spine by QCT and DXA in the PTH group were 35+/-5.5% and 11+/-1.4%, respectively, compared with a relatively small change of 1.7+/-1.8% and 0+/-0.9% in the estrogen-only group. The differences in mean percentage between the groups at 1 yr were 33.5% for the lumbar spine by QCT (P < 0.001) and 9.8% for the lumbar spine by DXA (P < 0.001). The changes in the hip and forearm were not significantly different between or within the groups. During the first 3 mo of PTH treatment, markers of bone formation increased to nearly 150%, whereas markers of bone resorption increased only 100%, suggesting an early uncoupling of bone turnover in favor of formation. These results suggest that parathyroid hormone dramatically increases bone mass in the central skeleton of postmenopausal women with corticosteroid- induced osteoporosis who are taking hormone replacement.

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The effect of combined androgen blockade on bone turnover and bone mineral densities in men treated for prostate carcinoma: longitudinal evaluation and response to intermittent cyclic etidronate therapy.

BACKGROUND: Androgen receptor blocking agents have become an established form of therapy for men with disseminated prostate carcinoma. The purpose of this study was to evaluate markers of bone turnover and to measure bone mineral densities (BMD) in men with disseminated prostate carcinoma treated with combined androgen blockade prior to and after 6 months of intermittent cyclic etidronate therapy. METHODS: Twelve consecutive men with disseminated prostate carcinoma were evaluated at 0, 6, and 12 months after treatment with a long acting gonadotropin-releasing hormone agonist (goserelin acetate) and an androgen antagonist (flutamide). During the 6-12 month period, patients were treated with adjuvant intermittent cyclic etidronate therapy and calcium supplementation. Lumbar spine BMD was measured by spinal quantitative computed tomography (QCT) and femoral neck BMD by dual energy X-ray absorptiometry (DXA). RESULTS: Combined androgen blockade resulted in all men achieving serum free testosterone concentrations of <2.2 pmol/L (normal range, 38-114 pmol/ L). The mean serum prostate specific antigen activities decreased from 130.8+/-46 to 6.9+/-4.4 ng/mL (P < 0.05). Although serum calcium, parathyroid hormone, and 25-hydroxyvitamin D measurements remained unchanged, serum bone Gla-protein concentrations and urinary deoxypyridinolene excretion rates increased significantly (P < 0.01, respectively). Mean lumbar spine QCT decreased by 6.6+/-1.5% from 76.5 mg/cm3 (95% confidence interval [95% CI, 57-96 mg/cm3) to 73.9 mg/cm3 (95% CI, 55-93 mg/cm3) (P < 0.001) and mean femoral neck DXA decreased by 6.5+/-1.3% from 0.94 g/cm2 (95% CI, 0.81-1.07 g/cm2) to 0.91 g/cm2 (95% CI, 0.79-1.04 g/cm2) (P < 0.001). After treatment with adjuvant intermittent cyclic etidronate, mean lumbar spine QCT increased by 7.8+/-3.7% to a final value of 75 mg/cm3 (95% CI, 48.7-101 mg/cm3) (P=0.001 compared with the initial 6 months without intermittent cyclic etidronate therapy). Significant increases in BMD also were observed in the femoral neck and Ward's triangle. CONCLUSIONS: Androgen receptor blocking agents have an established role in the treatment of disseminated prostate carcinoma. However, combined androgen blockade in elderly men with disseminated prostate carcinoma results in high bone turnover with significant cancellous bone loss. The results of this study show that adjuvant therapy with intermittent cyclic etidronate may prevent these changes and decrease the risk of spinal fractures.

Absorptiometry, Photon

Vanadium K-edge x-ray absorption spectroscopy reveals species differences within the same ascidian genera. A comparison of whole blood from Ascidia nigra and Ascidia ceratodes.

Vanadium K-edge x-ray absorption spectroscopy (XAS) was used to examine whole blood preparations from the tunicates Ascidia nigra and Ascidia ceratodes. Each XAS spectrum exhibits a rising edge inflection near 5480 eV characteristic of vanadium(III) and an intensity maximum at 5484.0 eV. In A. ceratodes blood cells, intrinsic aquo-VSO4+ complex ion is indicated by an inflection feature at 5476 eV in the first derivative of the vanadium K-edge XAS spectrum, but this feature is notably absent from the first derivative of the vanadium K-edge spectrum of blood cells from A. nigra. A strong pre-edge feature at 5468.6 eV also uniquely distinguishes the vanadium K-edge XAS spectrum of A. nigra blood cells, implying that vanadyl ion represents approximately 25% of the endogenous vanadium. However, the energy position of the rising edge inflection of the vanadium K-edge XAS spectrum of A. nigra (5479.5 eV) is 1 eV lower than that of A. ceratodes (5480.5 eV), the reverse of any expected shift arising from the endogenous vanadyl ion. Thus, in contrast to A. ceratodes, a significant fraction of the blood cell vanadium(III) in A. nigra is apparently in a ligation environment substantially different from that provided by water. These novel species-related differences may have taxonomic significance.

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