[1] |
Adeel M, Lee JY, Zain M, et al. Cryptic footprints of rare earth elements on natural resources and living organisms. Environ Int, 2019; 127, 785−800. |
[2] |
Wei BG, Li YH, Li HR, et al. Rare earth elements in human hair from a mining area of China. Ecotoxicol Environ Saf, 2013; 96, 118−23. |
[3] |
Gwenzi W, Mangori L, Danha C, et al. Sources, behaviour, and environmental and human health risks of high-technology rare earth elements as emerging contaminants. Sci Total Environ, 2018; 636, 299−313. doi: 10.1016/j.scitotenv.2018.04.235 |
[4] |
Gonzalez V, Vignati DAL, Leyval C, et al. Environmental fate and ecotoxicity of lanthanides: are they a uniform group beyond chemistry? Environ Int, 2014; 71, 148-57. |
[5] |
Hidayah NN, Abidin SZ. The evolution of mineral processing in extraction of rare earth elements using liquid-liquid extraction: a review. Miner Eng, 2018; 121, 146−57. |
[6] |
Pagano G, Aliberti F, Guida M, et al. Rare earth elements in human and animal health: state of art and research priorities. Environ Res, 2015; 142, 215−20. |
[7] |
Balaram V. Rare earth elements: a review of applications, occurrence, exploration, analysis, recycling, and environmental impact. Geosci Front, 2019; 10, 1285−303. |
[8] |
Migaszewski Z M, Gałuszka A. The characteristics, occurrence, and geochemical behavior of rare earth elements in the environment: a review. Crit Rev Environ Sci Technol, 2015; 45, 429−71. |
[9] |
Pagano G, Thomas PJ, Di Nunzio A, et al. Human exposures to rare earth elements: present knowledge and research prospects. Environ Res, 2019; 171, 493−500. |
[10] |
Yan Y, Chi HF, Liu JR, et al. Provenance and bioaccessibility of rare earth elements in atmospheric particles in areas impacted by the optoelectronic industry. Environ Pollut, 2020; 263, 114349. |
[11] |
Marzec-Wróblewska U, Kamiński P, Łakota P, et al. Determination of rare earth elements in human sperm and association with semen quality. Arch Environ Contam Toxicol, 2015; 69, 191−201. |
[12] |
Squadrone S, Brizio P, Stella C, et al. Rare earth elements in marine and terrestrial matrices of Northwestern Italy: implications for food safety and human health. Sci Total Environ, 2019; 660, 1383−91. |
[13] |
Dai YB, Sun S, Li Y, et al. Residual levels and health risk assessment of rare earth elements in Chinese resident diet: a market-based investigation. Sci Total Environ, 2022; 828, 154119. |
[14] |
Meryem B, Ji HB, Gao Y, et al. Distribution of rare earth elements in agricultural soil and human body (scalp hair and urine) near smelting and mining areas of Hezhang, China. J Rare Earths, 2016; 34, 1156−67. |
[15] |
Rodushkin I, Axelsson MD. Application of double focusing sector field ICP-MS for multielemental characterization of human hair and nails. Part II. A study of the inhabitants of northern Sweden. Sci Total Environ, 2000; 262, 21−36. |
[16] |
Bai Y, Long CM, Hu GP, et al. Association of blood chromium and rare earth elements with the risk of DNA damage in chromate exposed population. Environ Toxicol Pharmacol, 2019; 72, 103237. |
[17] |
Gaman L, Radoi MP, Delia CE, et al. Concentration of heavy metals and rare earth elements in patients with brain tumours: analysis in tumour tissue, non-tumour tissue, and blood. Int J Environ Health Res, 2021; 31, 741−54. |
[18] |
Poniedziałek B, Rzymski P, Pięt M, et al. Rare-earth elements in human colostrum milk. Environ Sci Pollut Res, 2017; 24, 26148−54. |
[19] |
de Angelis P, Miller RK, Darrah TH, et al. Elemental content of the placenta: a comparison between two high-risk obstetrical populations, adult women carrying multiples and adolescents carrying singletons. Environ Res, 2017; 158, 553−65. |
[20] |
Li MS, Zhuang LL, Zhang GH, et al. Association between exposure of light rare earth elements and outcomes of in vitro fertilization-embryo transfer in North China. Sci Total Environ, 2021; 762, 143106. |
[21] |
Chen J, Xiao HI, Qi T, et al. Rare earths exposure and male infertility: the injury mechanism study of rare earths on male mice and human sperm. Environ Sci Pollut Res, 2015; 22, 2076−86. |
[22] |
Adebayo OA, Akinloye O, Adaramoye OA. Cerium oxide nanoparticle elicits oxidative stress, endocrine imbalance and lowers sperm characteristics in testes of balb/c mice. Andrologia, 2018; 50, e12920. |
[23] |
Zhu ZY, Shen AY, Shen SD. Effect of rare earth on maturation and parthenogenetic activation of mouse oocytes. J China Public Health, 2005; 21, 281−2. (In Chinese) |
[24] |
ChenJX, Wang AL, An H, et al. Association between light rare earth elements in maternal plasma and the risk of spontaneous preterm birth: a nested case-control study from the Beijing birth cohort study. Environ Health, 2023; 22, 73. doi: 10.1186/s12940-023-01027-1 |
[25] |
Dong RH, Zhang H, Zhang MR, et al. Association between phthalate exposure and the use of plastic containers in shanghai adults. Biomed Environ Sci, 2017; 30, 727−36. |
[26] |
Liang, Rong, Wang, et al. Correlation between combined urinary metal exposure and grip strength under three statistical models: a cross-sectional study in rural Guangxi. Biomed Environ Sci, 2024; 37, 3−18. |
[27] |
Johnson CL, Paulose-Ram R, Ogden CL, et al. National health and nutrition examination survey: analytic guidelines, 1999-2010. Vital Health Stat 2, 2013; 1-24. |
[28] |
Evers JL. Female subfertility. Lancet, 2002; 360, 151−9. |
[29] |
Maheshwari A, Stofberg L, Bhattacharya S. Effect of overweight and obesity on assisted reproductive technology—a systematic review. Hum Reprod Update, 2007; 13, 433−44. doi: 10.1093/humupd/dmm017 |
[30] |
Badea M, Luzardo OP, González-Antuña A, et al. Body burden of toxic metals and rare earth elements in non-smokers, cigarette smokers and electronic cigarette users. Environ Res, 2018; 166, 269−75. |
[31] |
Egler EG, Niemeyer JC, Correia FV, et al. Effects of rare earth elements (REE) on terrestrial organisms: current status and future directions. Ecotoxicology, 2022; 31, 689−99. |
[32] |
Rodgers PJ, Irving-Rodgers HF. Formation of the ovarian follicular antrum and follicular fluid. Biol Reprod, 2010; 82, 1021−9. doi: 10.1095/biolreprod.109.082941 |
[33] |
Zhou H, Ohno N, Terada N, et al. Involvement of follicular basement membrane and vascular endothelium in blood-follicle barrier formation of mice revealed by 'in vivo cryotechnique'. Reproduction, 2007; 134, 307−17. |
[34] |
Shalgi R, Kraicer P, Rimon A, et al. Proteins of human follicular fluid: the blood-follicle barrier. Fertil Steril, 1973; 24, 429−34. |
[35] |
Silberstein T, Saphier O, Paz-Tal O, et al. Trace element concentrations in follicular fluid of small follicles differ from those in blood serum, and may represent long-term exposure. Fertil Steril, 2009; 91, 1771−4. |
[36] |
Revelli A, Piane LD, Casano S, et al. Follicular fluid content and oocyte quality: from single biochemical markers to metabolomics. Reprod Biol Endocrinol, 2009; 7, 40. |
[37] |
Oral R, Bustamante P, Warnau M, et al. Cytogenetic and developmental toxicity of cerium and lanthanum to sea urchin embryos. Chemosphere, 2010; 81, 194−8. |
[38] |
Trifuoggi M, Pagano G, Guida M, et al. Comparative toxicity of seven rare earth elements in sea urchin early life stages. Environ Sci Pollut Res, 2017; 24, 20803−10. |
[39] |
Cui J, Zhang ZY, Bai W, et al. Effects of rare earth elements La and Yb on the morphological and functional development of zebrafish embryos. J Environ Sci, 2012; 24, 209−13. |
[40] |
Wei J, Wang CR, Yin SJ, et al. Concentrations of rare earth elements in maternal serum during pregnancy and risk for fetal neural tube defects. Environ Int, 2020; 137, 105542. |
[41] |
Liu LJ, Wang LL, Ni WL, et al. Rare earth elements in umbilical cord and risk for orofacial clefts. Ecotoxicol Environ Saf, 2021; 207, 111284. |
[42] |
Hanana H, Kowalczyk J, André C, et al. Insights on the toxicity of selected rare earth elements in rainbow trout hepatocytes. Comp Biochem Physiol C: Toxicol Pharmacol, 2021; 248, 109097. |
[43] |
Pagano G, Guida M, Tommasi F, et al. Health effects and toxicity mechanisms of rare earth elements—Knowledge gaps and research prospects. Ecotoxicol Environ Saf, 2015; 115, 40−8. |