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器官培养中的胎鼠骨骼:骨骼生长和骨骼萎缩对45钙和3H-四环素相对损失的影响。

Fetal rat bone in organ culture: effect of bone growth and bone atrophy on the comparative losses of 45Ca and 3H-tetracycline.

作者信息

Chen T L, Klein L

出版信息

Calcif Tissue Res. 1978 Aug 18;25(3):255-63. doi: 10.1007/BF02010779.

Abstract

Fetal rat bones were cultured in either growth-inducing or resorption-inducing media to study mineral losses during bone growth and atrophy in vitro. Whole radii and ulnae from 19-day-old fetal rats, prelabeled with 45Ca and/or 3H-tetracycline, were cultured intact or cut, and then digested by collagenase to obtain the calcified portion of the bones. Three- to five-fold more 3H-tetracycline than 45Ca was lost from the calcified portion when the bones were cultured for 4 days in growth-inducing media. Similar small amounts of 45Ca were lost from live and killed bones, but more 3H-tetracycline was lost from live bones than from killed bones. More 3H-tetracycline was released into the growth medium with a low concentration of calcium (0.5 mM) than when the calcium concentration was high (1.0 mM); no significant difference was seen in the release of 45Ca into the medium at different calcium concentrations. Larger amounts of both isotopes were lost when the prelabeled bones were cultured in resorption-inducing media than in growth-inducing media. When parathyroid hormone stimulated bone resorption in a resorption-inducing medium, equal proportions of both isotopes and bone collagen were lost. Greater losses of 3H-tetracycline than of 45Ca suggest that 45Ca was conserved locally during the resorption that accompanies bone growth, but not during resorption that accompanies bone atrophy.

摘要

将胎鼠骨骼培养于促生长或促吸收培养基中,以研究体外骨骼生长和萎缩过程中的矿物质流失情况。对19日龄胎鼠的完整桡骨和尺骨预先用45Ca和/或3H-四环素标记,然后将其完整或切断培养,再用胶原酶消化以获取骨骼的钙化部分。当骨骼在促生长培养基中培养4天时,钙化部分流失的3H-四环素比45Ca多3至5倍。活骨和处死骨流失的45Ca量相似,但活骨流失的3H-四环素比处死骨多。与钙浓度高(1.0 mM)时相比,钙浓度低(0.5 mM)的生长培养基中释放的3H-四环素更多;不同钙浓度下45Ca向培养基中的释放无显著差异。与在促生长培养基中培养相比,预先标记的骨骼在促吸收培养基中培养时两种同位素的流失量都更大。当甲状旁腺激素在促吸收培养基中刺激骨吸收时,两种同位素和骨胶原的流失比例相等。3H-四环素的流失量比45Ca大,这表明在骨骼生长伴随的吸收过程中,45Ca在局部得到了保留,但在骨骼萎缩伴随的吸收过程中则没有。

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