Wu Jui-Pin, Lee Hui-Ling, Li Mei-Hui
Environmental Toxicology Laboratory, Department of Geography, National Taiwan University, 1, Section 4, Roosevelt Road, Taipei, 106, Taiwan.
Arch Environ Contam Toxicol. 2014 Nov;67(4):639-50. doi: 10.1007/s00244-014-0056-0. Epub 2014 Jul 5.
Although freshwater planarians are evolutionarily primitive, they are some of the simplest bilateral animals possessing integrated neural networks similar to those in vertebrates. We attempted to develop planarian Dugesia japonica as a model for investigating the neurotoxicity of environmental pollutants such as cadmium (Cd). This study was therefore designed to study the effects of Cd on the locomotor activity, neurobehavior, and neurological enzymes of D. japonica. After planarians were exposed to Cd at high concentrations, altered neurobehavior was observed that exhibited concentration-dependent patterns. Morphological alterations in Cd-treated planarians included irregular shape, body elongation, screw-like hyperkinesia, and bridge-like position. To study the direct effects of Cd on neurological enzymes, tissue homogenates of planarians were incubated in vitro with Cd before their activity was measured. Results showed that acetylcholinesterase (AChE), adenosine triphosphatase (ATPase), and monoamine oxidase A (MAO-A) activities were inhibited in a concentration-dependent manner. MAO-B activity was significantly induced by Cd at low concentrations and inhibited at high concentrations. Changes in the in vivo activity of AChE and ATPase were also found after planarians were treated with Cd at a sublethal concentration (5.56 μM). These observations indicate that neurotransmission systems in planarians are disturbed after Cd exposure.
尽管淡水涡虫在进化上较为原始,但它们是一些最简单的两侧对称动物,拥有与脊椎动物相似的整合神经网络。我们试图将日本三角涡虫开发为一种模型,用于研究镉(Cd)等环境污染物的神经毒性。因此,本研究旨在探讨镉对日本三角涡虫运动活性、神经行为和神经酶的影响。在将涡虫暴露于高浓度镉之后,观察到神经行为发生改变,并呈现出浓度依赖性模式。经镉处理的涡虫的形态学改变包括形状不规则、身体伸长、螺旋状运动亢进和桥状姿势。为了研究镉对神经酶的直接影响,在测量涡虫组织匀浆活性之前,先将其与镉在体外进行孵育。结果表明,乙酰胆碱酯酶(AChE)、三磷酸腺苷酶(ATPase)和单胺氧化酶A(MAO-A)的活性受到浓度依赖性抑制。MAO-B的活性在低浓度镉处理时显著诱导,而在高浓度时受到抑制。在用亚致死浓度(5.56 μM)的镉处理涡虫后,还发现了AChE和ATPase体内活性的变化。这些观察结果表明,镉暴露后涡虫的神经传递系统受到干扰。