Wu S Y, Polk D H, Huang W S, Reviczky A, Wang K, Fisher D A
Nuclear Medicine Service, Veterans Administration Medical Center, Long Beach 90822.
Am J Physiol. 1993 Jul;265(1 Pt 1):E115-20. doi: 10.1152/ajpendo.1993.265.1.E115.
We recently showed that thyroxine sulfate (T4S) and 3,3',5-triiodothyronine sulfate (T3S) were major thyroid hormone metabolites in ovine fetuses and neonates. To further characterize the sulfation pathway in ovine fetuses, we measured 3,3',5'-triiodothyronine (rT3S) in serum and other body fluids in samples obtained from fetal (n = 23, 94-145 days of gestational age, term = 150 days), newborn (n = 6), and adult (n = 6) sheep. In addition, T3S, T4S, and rT3S levels were measured in tissue fluids and serum samples obtained from ovine fetuses 13 days after total thyroidectomy (Tx) conducted at gestational age of 110-113 days (n = 5). Sham-operated twin fetuses served as controls (n = 5). The relative order of mean rT3S concentration for various tissue fluids in fetuses were meconium > bile > serum > allantoic fluid > urine or amniotic fluid. Peak mean tissue fluid levels generally occurred at 110-130 days gestation. In hypothyroid fetuses, significant decreases in the mean serum concentrations of T4S and rT3S, but not T3S, were noted. The mean rT3S level also was decreased significantly in allantoic fluid, bile, and meconium, whereas T4S and T3S levels were reduced only in bile of the Tx fetuses. These data demonstrate that sulfation is a major pathway in thyroid hormone metabolism in both euthyroid and hypothyroid ovine fetuses.
我们最近发现,硫酸甲状腺素(T4S)和3,3',5-三碘甲腺原氨酸硫酸酯(T3S)是绵羊胎儿和新生儿体内主要的甲状腺激素代谢产物。为了进一步明确绵羊胎儿的硫酸化途径,我们测定了从胎儿(n = 23,胎龄94 - 145天,足月为150天)、新生羊(n = 6)和成年羊(n = 6)采集的样本中血清及其他体液中的3,3',5'-三碘甲腺原氨酸硫酸酯(rT3S)。此外,还测定了在孕110 - 113天进行全甲状腺切除术(Tx)后13天的绵羊胎儿的组织液和血清样本中的T3S、T4S和rT3S水平(n = 5)。假手术的双胎胎儿作为对照(n = 5)。胎儿各种组织液中rT3S平均浓度的相对顺序为胎粪>胆汁>血清>尿囊液>尿液或羊水。组织液平均水平峰值一般出现在孕110 - 130天。在甲状腺功能减退的胎儿中,T4S和rT3S的平均血清浓度显著降低,但T3S未降低。尿囊液、胆汁和胎粪中的rT3S平均水平也显著降低,而T4S和T3S水平仅在Tx胎儿的胆汁中降低。这些数据表明,硫酸化是甲状腺功能正常和甲状腺功能减退的绵羊胎儿甲状腺激素代谢的主要途径。