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人类胎盘处的药物相互作用:证据有哪些?

Drug Interactions at the Human Placenta: What is the Evidence?

作者信息

Rubinchik-Stern Miriam, Eyal Sara

机构信息

School of Pharmacy, Institute of Drug Research, The Hebrew University Jerusalem, Israel.

出版信息

Front Pharmacol. 2012 Jul 9;3:126. doi: 10.3389/fphar.2012.00126. eCollection 2012.

Abstract

Pregnant women (and their fetuses) are treated with a significant number of prescription and non-prescription medications. Interactions among those drugs may affect their efficacy and toxicity in both mother and fetus. Whereas interactions that result in altered drug concentrations in maternal plasma are detectable, those involving modulation of placental transfer mechanisms are rarely reflected by altered drug concentrations in maternal plasma. Therefore, they are often overlooked. Placental-mediated interactions are possible because the placenta is not only a passive diffusional barrier, but also expresses a variety of influx and efflux transporters and drug-metabolizing enzymes. Current data on placental-mediated drug interactions are limited. In rodents, pharmacological or genetic manipulations of placental transporters significantly affect fetal drug exposure. In contrast, studies in human placentae suggest that the magnitude of such interactions is modest in most cases. Nevertheless, under certain circumstances, such interactions may be of clinical significance. This review describes currently known mechanisms of placental-mediated drug interactions and the potential implications of such interactions in humans. Better understanding of those mechanisms is important for minimizing fetal toxicity from drugs while improving their efficacy when directed to treat the fetus.

摘要

孕妇(及其胎儿)会使用大量的处方药和非处方药。这些药物之间的相互作用可能会影响它们在母亲和胎儿体内的疗效和毒性。虽然导致母体血浆中药物浓度改变的相互作用是可以检测到的,但涉及胎盘转运机制调节的相互作用很少通过母体血浆中药物浓度的改变来反映。因此,它们常常被忽视。胎盘介导的相互作用是可能的,因为胎盘不仅是一个被动的扩散屏障,还表达多种摄取和外排转运体以及药物代谢酶。目前关于胎盘介导的药物相互作用的数据有限。在啮齿动物中,对胎盘转运体进行药理学或基因操作会显著影响胎儿的药物暴露。相比之下,对人类胎盘的研究表明,在大多数情况下,这种相互作用的程度较小。然而,在某些情况下,这种相互作用可能具有临床意义。本综述描述了目前已知的胎盘介导的药物相互作用机制以及此类相互作用对人类的潜在影响。更好地理解这些机制对于在提高药物治疗胎儿疗效的同时,将药物对胎儿的毒性降至最低非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7873/3391695/3aca7d6f6865/fphar-03-00126-g001.jpg

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