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J C Krakauer

Publications and source records attributed to J C Krakauer.

7 recordsLinked to original sources

Bone loss and bone turnover in diabetes.

There have been conflicting reports about the effect of diabetes on bone density. In 1978, we studied 109 patients, 46 with type I and 63 with type II diabetes; approximately 12 years later we restudied 35 of the 66 surviving patients. In the original study, radial bone density did not differ significantly between patients with either type of diabetes but was significantly lower than in nondiabetic control subjects. In eight osteopenic patients, bone formation rate and other histological indexes of osteoblast recruitment and function were markedly depressed compared with those in nondiabetic control subjects. In patients remeasured approximately 2.5 years (41 patients) and approximately 12.5 years (35 patients) after baseline, bone loss had continued at the expected rate in patients with type I diabetes, with maintenance of the same deficit, but was slower than expected in patients with type II diabetes, such that the initial deficit had been completely corrected. In six of the eight patients who had undergone bone biopsy, one with type I and five with type II diabetes, the mean bone mineral density z-score of the spine and femoral neck approximately 12 years later was > 0 and in one subject was significantly higher than normal at both sites. Based on these data and on previous studies, we propose that in patients with diabetes, low bone formation retards bone accumulation during growth, metabolic effects of poor glycemic control lead to increased bone resorption and bone loss in young adults, and low bone turnover retards age-related bone loss.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Borderline-low serum thyrotropin level is correlated with increased fasting urinary hydroxyproline excretion.

BACKGROUND: Recent studies suggest that even mildly supraphysiologic thyroid hormonal status accelerates bone loss. In hyperthyroidism, increased bone resorption is the predominant mechanism for bone loss. We postulated that the changes in thyroid hormone status as reflected by low-normal and minimally subnormal serum thyrotropin level would have an effect on bone turnover and could be detected by a simple, noninvasive marker of bone resorption, fasting urinary total hydroxyproline-creatinine excretion (THP/Cr). METHODS: We retrospectively identified ambulatory patients with a restricted range of diagnoses who had had measurements of thyrotropin and THP/Cr performed within +/- 21 days. RESULTS: Of the 86 patients, 47 had thyrotropin levels greater than 1.0 mU/L. In these patients, no correlation was evident for thyrotropin and THP/Cr. Of the other 39 patients, 11 had suppressed thyrotropin levels (less than 0.1 mU/L) and showed clearly elevated values for THP/Cr, as expected from previous studies of hyperthyroidism. For 28 patients with thyrotropin in the borderline and low-normal range of 0.1 to 1.0 mU/L, a significant negative correlation with THP/Cr was found. The THP/Cr was positively correlated with serum alkaline phosphatase level, as expected with increased bone turnover. CONCLUSIONS: These results add further support to the hypothesis that even a minimal excess of thyroid hormones increases bone turnover and may contribute to accelerated bone loss.

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