Wiley Bevin, Batabyal Anuradha, Lukowiak Ken
Hotchkiss Brain Institute, Cumming School of Medicine, University of Calgary, 3330 Hospital Drive NW, Calgary, AB, T2N 4N1, Canada.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2022 Mar;208(2):267-277. doi: 10.1007/s00359-021-01528-9. Epub 2021 Dec 2.
Fluoride occurs naturally in the terrestrial and aquatic environment and is a major component in tea. Prolonged fluoride exposure alters metabolic activity in several aquatic invertebrates. For the first time, we investigated the effects of fluoride on cognition in the pond snail Lymnaea stagnalis as it is capable of a higher form of associative learning called configural learning. We first showed suppressive effects of black tea and fluoride on feeding (i.e., rasping) behavior. We then investigated how fluoride may alter cognition by introducing fluoride (1.86 mg/L) before, during, after, a day before and a week before the snails underwent the configural learning training procedure. Our results show that any 45-min exposure to fluoride (before, during or after a configural learning training procedure) blocks configural learning memory formation in Lymnaea and these effects are long-lasting. One week after a fluoride exposure, snails are still unable to form a configural learning memory and this result is upheld when the snails are exposed to a lower concentration of fluoride, one which is naturally occurring in ponds that a wild strain of Lymnaea can be found (0.3 mg/L). Thus, fluoride obstructs configural learning memory formation in a fluoride-naïve, inbred strain of Lymnaea.
氟化物自然存在于陆地和水生环境中,是茶叶中的主要成分。长期接触氟化物会改变几种水生无脊椎动物的代谢活动。我们首次研究了氟化物对静水椎实螺认知的影响,因为它能够进行一种更高形式的联想学习,即构型学习。我们首先展示了红茶和氟化物对摄食(即锉食)行为的抑制作用。然后,我们通过在蜗牛进行构型学习训练程序之前、期间、之后、前一天和前一周引入氟化物(1.86毫克/升),研究氟化物如何改变认知。我们的结果表明,在构型学习训练程序之前、期间或之后任何45分钟的氟化物暴露都会阻碍静水椎实螺构型学习记忆的形成,而且这些影响是持久的。氟化物暴露一周后,蜗牛仍然无法形成构型学习记忆,当蜗牛暴露于较低浓度的氟化物(静水椎实螺野生菌株所在池塘中天然存在的浓度,即0.3毫克/升)时,这一结果仍然成立。因此,氟化物会阻碍未接触过氟化物的近交系静水椎实螺构型学习记忆的形成。