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Pagan, O. R.

Publications and source records attributed to Pagan, O. R..

2 recordsLinked to original sources

Influence of microbiome on withdrawal-like behavior in Planaria

The microbiome of animals can influence health status, disease susceptibility and can also influence host behavior. This study investigates the effect of microbiome alteration on animal behavior using the planarian model system. For this, Girardia tigrina (Brown Planaria) and Phagocata gracilis (Black Planaria) were investigated. These flatworms possess a primitive nervous system and exhibit similar addictive and withdrawal behaviors to mammals. Here we tested the hypothesis that alteration of planarian microbiome using the broad-spectrum antibiotics kanamycin and ampicillin could influence the worms behavior and withdrawal response to nicotine. After antibiotic treatment period of seven days, the behavior and withdrawal response of four groups of brown and black planaria was analyzed by recording the worms motility on a 1 cm2 grid. Results support the hypothesis as treatment significantly altered behavior in black worms. The microbiomes of antibiotic treated planaria were analyzed using conventional culture techniques, microscopy and metagenomic methods. Alpha proteobacteria including Sphingomonadaceae were detected in both Brown and Black planarians. This study suggests chemotherapeutic alteration of an animals microbiome can influence motility behavior and withdrawal responses to addictive substance and sheds light on the species composition of Planarian microbiomes.

microbiology↗

Schild analysis of the interaction between parthenolide and cocaine on their effects onplanarian motility suggests an orthosteric relationship.

The freshwater planarian is an emerging animal model in neuropharmacology due to its close parallels with the nervous system of vertebrates. Cocaine is a naturally occurring compound and an abused drug, as well as the founding member of the local anesthetic family. Sesquiterpene lactones of the parthenolide class are naturally occurring products that act as behavioral and physiological antagonists of cocaine in planarians and rats, respectively. One of the best-characterized planarian behaviors induced by various compounds is the change in locomotor velocity. Previous work from our laboratory showed that both parthenolide and cocaine reduced planarian motility and that parthenolide reversed the cocaine-induced motility decrease at concentrations where parthenolide does not affect the movement of the worms. However, the exact mechanism of the cocaine/parthenolide antagonism is unknown. Here, we report the results of a Schild analysis to explore the parthenolide/cocaine relationship in the planarian Girardia tigrina. The Schild slopes of the {Delta} parthenolide {+/-} cocaine and {Delta} cocaine {+/-} parthenolide were -0.33 and -0.43, respectively. These slopes were not statistically different from each other, and both were statistically different from -1, suggesting an allosteric relationship between these two compounds. To the best of our knowledge, this is the first study aimed at studying the mechanism of action of the antagonism between cocaine and parthenolide.

pharmacology and toxicology↗