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骨髓移植对X连锁低磷血症小鼠的影响。

The effects of bone marrow transplantation on X-linked hypophosphatemic mice.

作者信息

Miyamura T, Tanaka H, Inoue M, Ichinose Y, Seino Y

机构信息

Department of Pediatrics, Okayama University Medical School, Japan.

出版信息

J Bone Miner Res. 2000 Aug;15(8):1451-8. doi: 10.1359/jbmr.2000.15.8.1451.

Abstract

The genes responsible for X-linked hypophosphatemic (XLH) vitamin D-resistant rickets and the murine homolog, hypophosphatemic mice (Hyp), were identified as PHEX and Phex (phosphate-regulating gene with homology to endopeptidases on the X chromosome), respectively. However, the mechanism by which inactivating mutations of PHEX cause XLH remains unknown. We investigated the mechanisms by syngeneic bone marrow transplantation (BMT) from wild mice to Hyp mice. The expression of the Phex gene was detected in mouse BM cells. BMT introduced a chimerism in recipient Hyp mice and a significant increase in the serum phosphorus level. The renal sodium phosphate cotransporter gene expression was significantly increased. The effect of BMT on the serum phosphorus level depended on engraftment efficiencies, which represent the dosage of normal gene. Similarly, the serum alkaline phosphatase (ALP) activity was decreased and bone mineral density was increased. Furthermore, the renal expression of 25-hydroxyvitamin D3 24-hydroxylase, which is a key enzyme in the catabolic pathway and is increased in XLH/Hyp, was improved. From these results, we conclude that transplantation of normal BM cells improved abnormal bone mineral metabolism and deranged vitamin D metabolism in Hyp by replacing defective gene product(s) with normal gene product(s). This result may provide strong evidence for clinical application of BMT in metabolic bone disorders.

摘要

导致X连锁低磷血症(XLH)维生素D抵抗性佝偻病的基因以及小鼠同源基因低磷血症小鼠(Hyp)分别被鉴定为PHEX和Phex(与X染色体上的内肽酶具有同源性的磷酸盐调节基因)。然而,PHEX失活突变导致XLH的机制仍然未知。我们通过将野生小鼠的同基因骨髓移植(BMT)到Hyp小鼠中来研究其机制。在小鼠骨髓细胞中检测到Phex基因的表达。BMT在受体Hyp小鼠中引入了嵌合体,血清磷水平显著升高。肾钠磷共转运蛋白基因表达显著增加。BMT对血清磷水平的影响取决于植入效率,植入效率代表正常基因的剂量。同样,血清碱性磷酸酶(ALP)活性降低,骨矿物质密度增加。此外,25-羟基维生素D3 24-羟化酶的肾表达得到改善,该酶是分解代谢途径中的关键酶,在XLH/Hyp中升高。从这些结果中,我们得出结论,正常骨髓细胞的移植通过用正常基因产物替代缺陷基因产物,改善了Hyp中异常的骨矿物质代谢和紊乱的维生素D代谢。这一结果可能为BMT在代谢性骨病中的临床应用提供有力证据。

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