首页> 美国卫生研究院文献>Dermatology Research and Practice >Antenatal Corticosteroids and Postnatal Fluid Restriction Produce Differential Effects on AQP3 Expression Water Handling and Barrier Function in Perinatal Rat Epidermis
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Antenatal Corticosteroids and Postnatal Fluid Restriction Produce Differential Effects on AQP3 Expression Water Handling and Barrier Function in Perinatal Rat Epidermis

机译:产前皮质类固醇和产后体液限制对围产期大鼠表皮中AQP3表达水处理和屏障功能的影响不同

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摘要

Loss of water through the immature skin can lead to hypothermia and dehydration in preterm infants. The water and glycerol channel aquaglyceroporin-3 (AQP3) is abundant in fetal epidermis and might influence epidermal water handling and transepidermal water flux around birth. To investigate the role of AQP3 in immature skin, we measured in vivo transepidermal water transport and AQP3 expression in rat pups exposed to clinically relevant fluid homeostasis perturbations. Preterm (E18) rat pups were studied after antenatal corticosteroid exposure (ANS), and neonatal (P1) rat pups after an 18 h fast. Transepidermal water loss (TEWL) and skin hydration were determined, AQP3 mRNA was quantified by RT-PCR, and in-situ hybridization and immunocytochemistry were applied to map AQP3 expression. ANS resulted in an improved skin barrier (lower TEWL and skin hydration), while AQP3 mRNA and protein increased. Fasting led to loss of barrier integrity along with an increase in skin hydration. These alterations were not paralleled by any changes in AQP3. To conclude, antenatal corticosteroids and early postnatal fluid restriction produce differential effects on skin barrier function and epidermal AQP3 expression in the rat. In perinatal rats, AQP3 does not directly determine net water transport through the skin.
机译:未成熟皮肤流失的水分会导致早产儿体温过低和脱水。胎儿表皮中的水和甘油通道aquaglyceroporin-3(AQP3)丰富,可能会影响出生时的表皮水分处理和表皮水分通量。为了研究AQP3在未成熟皮肤中的作用,我们测量了暴露于临床相关的流体稳态扰动的幼鼠体内的表皮水运输和AQP3表达。在产前皮质类固醇暴露(ANS)后研究早产(E18)大鼠幼崽,禁食18小时后对新生(P1)大鼠幼崽进行研究。测定经皮失水(TEWL)和皮肤水合作用,通过RT-PCR定量AQP3 mRNA,并应用原位杂交和免疫细胞化学方法绘制AQP3表达图。 ANS导致改善的皮肤屏障(较低的TEWL和皮肤水合作用),而AQP3 mRNA和蛋白质增加。空腹导致屏障完整性的丧失以及皮肤水合作用的增加。这些更改与AQP3中的任何更改均不相符。总之,产前皮质类固醇和产后早期液体限制对大鼠的皮肤屏障功能和表皮AQP3表达产生不同的影响。在围生期大鼠中,AQP3不能直接确定通过皮肤的净水输送。

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