Investigation regarding the physiological effects of cobalt on physiological functions in Drosophila, crayfish, and crab: Behavioral, cardiac, neural, and synaptic properties

IF 3.9 3区 环境科学与生态学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jaycie E. Gard , Kaitlyn E. Brock , Elizabeth R. Elliott , Alaina C. Taul , Jeremy Nadolski , Jiwoo Kim , Shelby McCubbin , Jordon Hecht , Remy Ronen , Sonya M. Bierbower , Jayden P. Alcorn , Nikitha Dharanipragada , Tessa F. Hall , Ashley B. Hamlet , Zohaib Iqbal , Sarah R. Johnson , Jai Kumar Joshi , Stephen J. McComis , Ryson E. Neeley , Alex W. Racheneur , Robin L. Cooper
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Abstract

Cobalt, a metallic element found naturally in the earth's crust, is essential to survival. It is the active center of cobalamins such as vitamin B12 and is also a micronutrient for bacteria, algae, and fungi. The effects of cobalt (II) chloride (CoCl2), the inorganic form of cobalt, are dependent on the dosage. High dosage or chronic exposure to CoCl2 can have negative effects, such as carcinogenic properties, intoxication, and “beer drinker's cardiomyopathy.” This investigation was designed to test the effects of acute, high-concentration in cobalt exposure on physiological functions in Drosophila, crayfish, and crab, particularly in terms of behavioral, cardiac, neural, and synaptic properties. When exposed to 1 mM of CoCl2, decreased neural transmission was observed at the neuromuscular junction (NMJ) of both crayfish and Drosophila larvae. Within the crayfish proprioceptive organ, no conclusive changes in activity were observed due to the high variability among individuals, but activity was observed to increase in the crab proprioceptive organ after 10 min immersion the CoCl2. In larval Drosophila, heart rate decreased to near-cessation, though the in-situ preparations were able to recover regular heart rates after sufficient saline rinsing. Systemic injections of CoCl2 into crayfish hemolymph produced no significant effects on heart rate or tail flip response. In larval Drosophila that consumed food tainted with CoCl2, no effects were observed on behavior, mouth hook movements, or body wall movements; however, this led to adults bearing a slightly decreased lifespan, which indicates that 1 mM CoCl2 has differing effects by tissue and organism.

Abstract Image

钴对果蝇、小龙虾和螃蟹生理功能影响的研究:行为、心脏、神经和突触特性
钴是地壳中天然存在的一种金属元素,对人类的生存至关重要。它是维生素B12等钴胺素的活性中心,也是细菌、藻类和真菌的微量营养素。钴的无机形式氯化钴(CoCl2)的作用取决于剂量。高剂量或长期暴露于CoCl2会产生负面影响,如致癌、中毒和“啤酒饮用者心肌病”。本研究旨在测试急性高浓度钴暴露对果蝇、小龙虾和螃蟹生理功能的影响,特别是在行为、心脏、神经和突触特性方面。当暴露于1 mM的CoCl2时,小龙虾和果蝇幼虫神经肌肉连接处(NMJ)的神经传递均下降。在小龙虾本体感觉器官内,由于个体之间的高度差异,没有观察到活性的决定性变化,但在CoCl2浸泡10分钟后,观察到螃蟹本体感觉器官的活性增加。在果蝇幼虫中,心率下降到接近停止,尽管原位制剂能够在充分的生理盐水冲洗后恢复正常心率。将CoCl2全身注射到小龙虾的血淋巴中,对小龙虾的心率和翻尾反应没有显著影响。在食用了被CoCl2污染的食物的果蝇幼虫中,没有观察到对行为、嘴钩运动或体壁运动的影响;然而,这导致成年人的寿命略有下降,这表明1毫米CoCl2对组织和生物体的影响不同。
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来源期刊
CiteScore
7.50
自引率
5.10%
发文量
206
审稿时长
30 days
期刊介绍: Part C: Toxicology and Pharmacology. This journal is concerned with chemical and drug action at different levels of organization, biotransformation of xenobiotics, mechanisms of toxicity, including reactive oxygen species and carcinogenesis, endocrine disruptors, natural products chemistry, and signal transduction with a molecular approach to these fields.
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