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大鼠母体血液中纳米金颗粒的大小依赖性转运及胎儿蓄积

Size dependent translocation and fetal accumulation of gold nanoparticles from maternal blood in the rat.

作者信息

Semmler-Behnke Manuela, Lipka Jens, Wenk Alexander, Hirn Stephanie, Schäffler Martin, Tian Furong, Schmid Günter, Oberdörster Günter, Kreyling Wolfgang G

机构信息

Institute of Lung Biology and Disease, Helmholtz Zentrum München - German Research Center for Environmental Health, 85764, Neuherberg/Munich, Germany.

Current address: Bavarian Health and Food Safety Authority, 85764, Oberschleissheim, Germany.

出版信息

Part Fibre Toxicol. 2014 Sep 10;11:33. doi: 10.1186/s12989-014-0033-9.

Abstract

BACKGROUND

There is evidence that nanoparticles (NP) cross epithelial and endothelial body barriers. We hypothesized that gold (Au) NP, once in the blood circulation of pregnant rats, will cross the placental barrier during pregnancy size-dependently and accumulate in the fetal organism by 1. transcellular transport across the hemochorial placenta, 2. transcellular transport across amniotic membranes 3. transport through ~20 nm wide transtrophoblastic channels in a size dependent manner. The three AuNP sizes used to test this hypothesis are either well below, or of similar size or well above the diameters of the transtrophoblastic channels.

METHODS

We intravenously injected monodisperse, negatively charged, radio-labelled 1.4 nm, 18 nm and 80 nm ¹⁹⁸AuNP at a mass dose of 5, 3 and 27 μg/rat, respectively, into pregnant rats on day 18 of gestation and in non-pregnant control rats and studied the biodistribution in a quantitative manner based on the radio-analysis of the stably labelled ¹⁹⁸AuNP after 24 hours.

RESULTS

We observed significant biokinetic differences between pregnant and non-pregnant rats. AuNP fractions in the uterus of pregnant rats were at least one order of magnitude higher for each particle size roughly proportional to the enlarged size and weight of the pregnant uterus. All three sizes of ¹⁹⁸AuNP were found in the placentas and amniotic fluids with 1.4 nm AuNP fractions being two orders of magnitude higher than those of the larger AuNP on a mass base. In the fetuses, only fractions of 0.0006 (30 ng) and 0.00004 (0.1 ng) of 1.4 nm and 18 nm AuNP, respectively, were detected, but no 80 nm AuNP (<0.000004 (<0.1 ng)). These data show that no AuNP entered the fetuses from amniotic fluids within 24 hours but indicate that AuNP translocation occurs across the placental tissues either through transtrophoblastic channels and/or via transcellular processes.

CONCLUSION

Our data suggest that the translocation of AuNP from maternal blood into the fetus is NP-size dependent which is due to mechanisms involving (1) transport through transtrophoblastic channels - also present in the human placenta - and/or (2) endocytotic and diffusive processes across the placental barrier.

摘要

背景

有证据表明纳米颗粒(NP)可穿过上皮和内皮身体屏障。我们推测,金(Au)纳米颗粒一旦进入怀孕大鼠的血液循环,在怀孕期间会根据尺寸大小穿过胎盘屏障,并通过以下方式在胎儿体内蓄积:1. 通过血绒毛膜胎盘进行跨细胞转运;2. 通过羊膜进行跨细胞转运;3. 以尺寸依赖的方式通过约20纳米宽的滋养层通道进行转运。用于验证这一假设的三种AuNP尺寸,要么远低于、要么与滋养层通道直径相似、要么远高于其直径。

方法

在妊娠第18天,我们分别以5、3和27微克/大鼠的质量剂量,将单分散、带负电荷、放射性标记的1.4纳米、18纳米和80纳米¹⁹⁸AuNP静脉注射到怀孕大鼠和未怀孕的对照大鼠体内,并在24小时后基于对稳定标记的¹⁹⁸AuNP的放射性分析,以定量方式研究其生物分布。

结果

我们观察到怀孕大鼠和未怀孕大鼠之间存在显著的生物动力学差异。怀孕大鼠子宫内的AuNP分数,对于每种粒径而言至少高出一个数量级,大致与怀孕子宫的增大尺寸和重量成正比。在胎盘和羊水中均发现了所有三种尺寸的¹⁹⁸AuNP,以质量为基础,1.4纳米AuNP的分数比更大尺寸的AuNP高出两个数量级。在胎儿中,仅分别检测到1.4纳米和18纳米AuNP的0.0006(30纳克)和0.00004(0.1纳克)的分数,但未检测到80纳米AuNP(<0.000004(<0.1纳克))。这些数据表明,在24小时内没有AuNP从羊水中进入胎儿体内,但表明AuNP通过滋养层通道和/或跨细胞过程在胎盘组织中发生了转运。

结论

我们的数据表明,AuNP从母体血液向胎儿的转运取决于NP的尺寸,这是由于涉及(1)通过滋养层通道(人类胎盘也存在)进行转运和/或(2)跨胎盘屏障的内吞和扩散过程的机制所致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2402/4445676/9c9996ec7213/s12989-014-0033-9-1.jpg

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