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2-萘酚在人胎盘中的经胎盘转运。

Transplacental transfer of 2-naphthol in human placenta.

作者信息

Mirghani Hisham, Osman Nawal, Dhanasekaran Subramanian, Elbiss Hassan M, Bekdache Gharid

机构信息

Department of Obstetrics and Gynecology, College of Medicine and Health Sciences, UAE University, P.O. Box 1766, Al Ain, United Arab Emirates.

Department of Pharmacology, College of Medicine and Health Sciences, UAE University, P.O.Box 1766, Al Ain, United Arab Emirates.

出版信息

Toxicol Rep. 2015 Jun 18;2:957-960. doi: 10.1016/j.toxrep.2015.05.011. eCollection 2015.

Abstract

OBJECTIVE

To determine the transfer of 2-naphthol (2-NPH) in fullterm human placental tissues.

METHODS

Six placentas were studied. The ex-vivo dual closed-loop human placental cotyledon perfusion model was used. 2-NPH was added to the perfusate in the maternal compartment. Samples were obtained from the maternal and fetal up to 360 min measuring.

RESULTS

The mean fetal weight was 2880 ± 304.2 g. Mean perfused cotyledon weight was 26.3 (±5.5) g. All unperfused placental tissue samples contained NPH with a mean level of 7.98 (±1.73) μg\g compared to a mean of 15.58 (±4.53) μg\g after 360 min perfusion. A rapid drop in maternal 2-NPH concentration was observed; from 5.54 μg\g in the first 15 min and 13.8 μg\g in 360 min. The fetal side increased from 0.65 μg\g in the initial 15 min to 1.5 μg\g in 360 min. The transfer rate of NPH was much lower than that of antipyrine.

CONCLUSION

2-NPH has the ability to rapidly across the placenta from the maternal to the fetal compartment within 15 min. The placenta seems to play a role in limiting the passage of 2-NPH in the fetal compartment.

摘要

目的

确定2-萘酚(2-NPH)在足月人胎盘组织中的转运情况。

方法

对六个胎盘进行研究。采用体外双闭环人胎盘小叶灌注模型。将2-NPH添加到母体腔室的灌注液中。在长达360分钟的测量过程中,从母体和胎儿处获取样本。

结果

胎儿平均体重为2880±304.2克。灌注小叶平均重量为26.3(±5.5)克。所有未灌注的胎盘组织样本均含有NPH,平均水平为7.98(±1.73)μg/g,而灌注360分钟后的平均水平为15.58(±4.53)μg/g。观察到母体2-NPH浓度迅速下降;最初15分钟时为5.54μg/g,360分钟时为13.8μg/g。胎儿侧从最初15分钟时的0.65μg/g增加到360分钟时的1.5μg/g。NPH的转运速率远低于安替比林。

结论

2-NPH能够在15分钟内迅速从母体穿过胎盘进入胎儿腔室。胎盘似乎在限制2-NPH进入胎儿腔室方面发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a265/5598455/8eb028cd5ad4/gr1.jpg

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