Deleterious functional consequences of perfluoroalkyl substances accumulation into the myelin sheath

再髓鞘化 髓鞘 全氟辛烷 内分泌学 化学 内科学 中枢神经系统 生物 医学 磺酸盐 有机化学
作者
Lucile Butruille,P. Jubin,Elodie Martin,Marie‐Stéphane Aigrot,Marie Lhomme,Jean‐Baptiste Fini,Barbara Demeneix,Bruno Stankoff,Catherine Lubetzki,Bernard Zalc,Sylvie Remaud
出处
期刊:Environment International [Elsevier]
卷期号:180: 108211-108211 被引量:9
标识
DOI:10.1016/j.envint.2023.108211
摘要

Exposure to persistent organic pollutants during the perinatal period is of particular concern because of the potential increased risk of neurological disorders in adulthood. Here we questioned whether exposure to perfluorooctanoic acid (PFOA) and perfluorooctane sulfonate (PFOS) could alter myelin formation and regeneration. First, we show that PFOS, and to a lesser extent PFOA, accumulated into the myelin sheath of postnatal day 21 (p21) mice, whose mothers were exposed to either PFOA or PFOS (20 mg/L) via drinking water during late gestation and lactation, suggesting that accumulation of PFOS into the myelin could interfere with myelin formation and function. In fact, PFOS, but not PFOA, disrupted the generation of oligodendrocytes, the myelin-forming cells of the central nervous system, derived from neural stem cells localised in the subventricular zone of p21 exposed animals. Then, cerebellar slices were transiently demyelinated using lysophosphatidylcholine and remyelination was quantified in the presence of either PFOA or PFOS. Only PFOS impaired remyelination, a deleterious effect rescued by adding thyroid hormone (TH). Similarly to our observation in the mouse, we also showed that PFOS altered remyelination in Xenopus laevis using the Tg(Mbp:GFP-ntr) model of conditional demyelination and measuring, then, the number of oligodendrocytes. The functional consequences of PFOS-impaired remyelination were shown by its effects using a battery of behavioural tests. In sum, our data demonstrate that perinatal PFOS exposure disrupts oligodendrogenesis and myelin function through modulation of TH action. PFOS exposure may exacerbate genetic and environmental susceptibilities underlying myelin disorders, the most frequent being multiple sclerosis.

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