肠道钙转移和碱性磷酸酶活性与维生素D和葡萄糖日粮的关系。

Y Dupuis, S Tardivel, A Ranivosoa, P Fournier
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引用次数: 9

摘要

断奶后4周,大鼠分别饲喂不含钙利用因子(D)和添加胆骨化醇(+D)或山梨糖醇(S)的饲粮。D组血钙水平降低,血和骨碱性磷酸酶活性升高。+D组、S组这些参数均正常。采用外翻环或原位结扎环,测量了CaCl2 + 45Ca溶液在十二指肠、空肠和回肠中的钙转移。测定了这些区域的碱性磷酸酶活性。对于三种饲粮和肠道的所有区域,钙转移与磷酸酶活性之间存在良好的相关性。十二指肠高于回肠或空肠,+D组回肠高于-D和S组,但差异不显著。与S组和+D组正常的血液和骨骼碱性磷酸酶水平相比,S组的低水平有时甚至低于D组。在钙溶液中进行钙转移测定的实验中,在大鼠S中发现的磷酸酶活性和钙转移的低值与同时存在钙和碳水化合物的实验中发现的低值之间也存在差异。在后者中,观察到肠道磷酸酶活性水平的增强,以及肠道钙转移的显着(尽管延迟)增加。发病潜伏期和快速抵消让人想起碳水化合物诱导细菌酶。
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Intestinal calcium transfer and alkaline phosphatase activity in relation with vitamin D and glucide diet.

For four weeks after weaning, rats were fed either on a diet without any calcium utilization factors (-D) or on the same diet with cholecalciferol (+D) or sorbitol (S). In the -D group, blood calcium levels decreased whilst alkaline phosphatase activities in blood and bone were increased. For +D and S groups, these parameters were normal. Using everted or in situ ligatured loops, calcium transfer from a CaCl2 + 45Ca solution was measured in the duodenum, the jejunum and in the ileum. Alkaline phosphatase activity from these regions was also measured. For the three diets and for all regions of the intestine, there was a good correlation between calcium transfer and phosphatase activity. These values were higher in the duodenum than in the ileum or jejunum, and also higher in the ileum in the +D group than in the -D and S groups although this was not significant. These low levels in the S group which were, sometimes, even lower than those seen in the -D group contrasted with blood and bone levels of alkaline phosphatase, which were normal for the S and +D groups. There was also a discrepancy between the low values found for both phosphatase activity and calcium transfer in rats S in the experiments where the calcium transfer assay was carried out in calcium solution and those found in experiments were both calcium and carbohydrate were present. In the latter, enhanced levels of intestinal phosphatase activity were observed, as well as a marked, albeit delayed, increase in intestinal calcium transfer. Onset latency and rapid offset are reminiscent of induction of bacterial enzymes by carbohydrates.

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