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除了母体磷酸盐负荷存在的情况外,小鼠胎儿血清磷的设定独立于成纤维细胞生长因子23(FGF23)和甲状旁腺激素(PTH)。

Murine Fetal Serum Phosphorus is Set Independent of FGF23 and PTH, Except in the Presence of Maternal Phosphate Loading.

作者信息

Sellars K Berit, Ryan Brittany A, Hartery Sarah A, Kirby Beth J, Kovacs Christopher S

机构信息

Faculty of Medicine - Endocrinology, Memorial University of Newfoundland, St. John's, NL, Canada.

出版信息

Endocrinology. 2021 Jan 1;162(1). doi: 10.1210/endocr/bqaa202.

Abstract

Fibroblast growth factor 23 (FGF23) appears to play no role until after birth, given unaltered phosphate and bone metabolism in Fgf23- and Klotho-null fetuses. However, in those studies maternal serum phosphorus was normal. We studied whether maternal phosphate loading alters fetal serum phosphorus and invokes a fetal FGF23 or parathyroid hormone (PTH) response. C57BL/6 wild-type (WT) female mice received low (0.3%), normal (0.7%), or high (1.65%) phosphate diets beginning 1 week prior to mating to WT males. Fgf23+/- female mice received the normal or high-phosphate diets 1 week before mating to Fgf23+/- males. One day before expected birth, we harvested maternal and fetal blood, intact fetuses, placentas, and fetal kidneys. Increasing phosphate intake in WT resulted in progressively higher maternal serum phosphorus and FGF23 during pregnancy, while PTH remained undetectable. Fetal serum phosphorus was independent of the maternal phosphorus and PTH remained low, but FGF23 showed a small nonsignificant increase with high maternal serum phosphorus. There were no differences in fetal ash weight and mineral content, or placental gene expression. High phosphate intake in Fgf23+/- mice also increased maternal serum phosphorus and FGF23, but there was no change in PTH. WT fetuses remained unaffected by maternal high-phosphate intake, while Fgf23-null fetuses became hyperphosphatemic but had no change in PTH, skeletal ash weight or mineral content. In conclusion, fetal phosphate metabolism is generally regulated independently of maternal serum phosphorus and fetal FGF23 or PTH. However, maternal phosphate loading reveals that fetal FGF23 can defend against the development of fetal hyperphosphatemia.

摘要

鉴于Fgf23基因和Klotho基因缺失的胎儿磷酸盐代谢和骨骼代谢未改变,成纤维细胞生长因子23(FGF23)似乎在出生后才发挥作用。然而,在这些研究中,母鼠血清磷水平正常。我们研究了母体磷酸盐负荷是否会改变胎儿血清磷水平,并引发胎儿FGF23或甲状旁腺激素(PTH)反应。C57BL/6野生型(WT)雌性小鼠在与WT雄性小鼠交配前1周开始分别接受低(0.3%)、正常(0.7%)或高(1.65%)磷饮食。Fgf23+/-雌性小鼠在与Fgf23+/-雄性小鼠交配前1周接受正常或高磷饮食。在预计分娩前一天,我们采集了母鼠和胎儿的血液、完整胎儿、胎盘及胎儿肾脏。WT小鼠孕期磷摄入量增加导致母鼠血清磷和FGF23水平逐渐升高,而PTH仍检测不到。胎儿血清磷水平与母鼠磷水平无关,PTH仍维持在低水平,但母鼠血清磷水平高时FGF23有小幅但无统计学意义的升高。胎儿骨灰重量、矿物质含量或胎盘基因表达无差异。Fgf23+/-小鼠高磷摄入也使母鼠血清磷和FGF23升高,但PTH无变化。WT胎儿不受母鼠高磷摄入影响,而Fgf23基因缺失的胎儿出现高磷血症,但PTH、骨骼骨灰重量或矿物质含量无变化。总之,胎儿磷酸盐代谢通常独立于母鼠血清磷以及胎儿FGF23或PTH进行调节。然而,母体磷酸盐负荷表明胎儿FGF23可抵御胎儿高磷血症的发生。

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