Institute of Experimental Endocrinology, Biomedical Research Center, Slovak Academy of Sciences, Bratislava, Slovakia.
Department of Toxicology, Faculty of Public Health, Slovak Medical University in Bratislava, Bratislava, Slovakia.
Endocr Regul. 2020 Jan 1;54(1):53-63. doi: 10.2478/enr-2020-0007.
Rapid development and widespread application of different types of nanoparticles (NPs) may result in increased exposure of humans and animals to NPs. Recently, reproductive toxicity due to NP exposure has become a major component of risk assessment. Current data have suggested that NPs may pose adverse effects on male and female reproductive health by altering normal testis and ovarian structure, and sex hormone levels. To detect possible alterations in steroidogenesis in adult and infantile rats following neonatal exposure to polymeric poly(ethylene glycol)-block-polylactide methyl ether (PEG-b-PLA) or titanium dioxide (TiO2) NPs, whole ovary cultures were used.
Newborn female Wistar rats were intraperitoneally (i.p.) injected daily with two different doses of PEG-b-PLA NPs (20 and 40 mg/kg body weight, b.w.) or TiO2 NPs (1% LD50 TiO2=59.2 µg/kg b.w. and 10% LD50 TiO2=592 µg/kg b.w.) from postnatal day 4 (PND 4) to PND 7. The ovaries were collected on PND73 and PND15 of PEG-b-PLA- and TiO2 NP-treated rats, respectively, and their corresponding control animals. Minced ovaries were cultured in vitro in the absence (basal conditions) or presence of gonadotropins (follicle-stimulating hormone, FSH and luteinizing hormone, LH) and insulin-like growth factor-1 (IGF-1) (stimulated conditions) for 6 days. At indicated time intervals, culture media were collected for steroid hormone (progesterone, estradiol) analysis by specific radioimmunoassay (RIA) and enzyme-linked immunosorbent assay (ELISA) kits.
Basal progesterone and estradiol secretion by ovaries from adult rats (PND73) were significantly decreased (p<0.01) in both PEG-b-PLA-treated groups after 3 days and 1 day of ex vivo ovary culture, respectively, compared with control group. With the presence of FSH/LH and IGF-1 in the culture medium, progesterone and estradiol production significantly increased (p<0.001) compared to basal levels. Stimulated progesterone production was significantly decreased (p<0.05) in PEG-b-PLA40-treated group after 3 days of culture compared with controls. After ex vivo culture of rat ovaries collected on PND15, basal progesterone and estradiol levels measured in the culture media did not differ between control and both TiO2 NP-treated groups. The ovaries from rats neonatally exposed to both doses of TiO2 NPs failed to respond to FSH/IGF stimulation in progesterone secretion at all time intervals.
The obtained results indicate that neonatal exposure to NPs in female rats may alter ovarian steroidogenic output (steroid hormone secretion) and thereby might subsequently induce perturbation of mammalian reproductive functions. Possible mechanisms (induction of oxidative stress, inflammation) of adverse effects of NPs on ovarian function should be further elucidated.
不同类型的纳米颗粒(NPs)的快速发展和广泛应用可能会导致人类和动物接触到更多的 NPs。最近,由于 NP 暴露而导致的生殖毒性已成为风险评估的主要组成部分。目前的数据表明,NPs 通过改变正常的睾丸和卵巢结构以及性激素水平,可能对男性和女性的生殖健康产生不良影响。为了检测新生大鼠接触聚乙二醇-嵌段-聚乳酸甲基醚(PEG-b-PLA)或二氧化钛(TiO2) NPs 后,成年和婴儿大鼠的类固醇生成是否可能发生变化,我们使用了整个卵巢培养物。
新生雌性 Wistar 大鼠于出生后第 4 天(PND4)至第 7 天(PND7)每天经腹腔(i.p.)注射两种不同剂量的 PEG-b-PLA NPs(20 和 40 mg/kg 体重,b.w.)或 TiO2 NPs(1%LD50 TiO2=59.2 µg/kg b.w.和 10%LD50 TiO2=592 µg/kg b.w.)。分别在 PEG-b-PLA 和 TiO2 NP 处理大鼠的 PND73 和 PND15 时收集卵巢,并收集相应的对照动物的卵巢。将卵巢组织切成小块,在体外无(基础条件)或存在促性腺激素(卵泡刺激素,FSH 和黄体生成素,LH)和胰岛素样生长因子-1(IGF-1)(刺激条件)的情况下培养 6 天。在指定的时间间隔内,通过特定放射免疫分析(RIA)和酶联免疫吸附测定(ELISA)试剂盒收集培养基中的类固醇激素(孕酮,雌二醇)进行分析。
与对照组相比,成年大鼠(PND73)卵巢在接受 PEG-b-PLA 处理后第 3 天和第 1 天的基础孕激素和雌二醇分泌分别显著降低(p<0.01)。在培养基中存在 FSH/LH 和 IGF-1 的情况下,与基础水平相比,孕酮和雌二醇的产生显著增加(p<0.001)。与对照组相比,PEG-b-PLA40 处理组在培养 3 天后,刺激产生的孕激素显著减少(p<0.05)。在对 PND15 大鼠的卵巢进行离体培养后,对照组和两种 TiO2 NP 处理组的培养基中基础孕酮和雌二醇水平无差异。新生大鼠接触两种剂量的 TiO2 NPs 后,卵巢对 FSH/IGF 刺激的孕激素分泌在所有时间点均无反应。
研究结果表明,新生雌性大鼠接触 NPs 可能会改变卵巢的甾体生成输出(类固醇激素分泌),从而可能随后引起哺乳动物生殖功能的紊乱。NPs 对卵巢功能的不良影响的可能机制(诱导氧化应激、炎症)应进一步阐明。