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Biology subjects

Liu, M. Q.

Publications and source records attributed to Liu, M. Q..

2 recordsLinked to original sources

A Novel Operant Conditioning Task to Assess Motivation to Exercise in Rats

Voluntary physical activity is a highly motivated behavior with important implications for physical and mental health, yet the neural and endocrine mechanisms underlying motivation to exercise remain poorly understood. In contrast, motivation for sugar/palatable foods, drugs, and sex has been extensively characterized using operant paradigms. Here, we describe a novel progressive ratio operant task to measure motivation to run, independent of running ability. Using female Long Evans rats, which exhibit robust voluntary running behavior, we validated this paradigm by applying a manipulation well known to enhance the motivation to run: calorie restriction. Calorie-restricted animals exhibited increased operant responding to gain access to a running wheel, thus demonstrating heightened motivation for exercise. More specifically, calorie-restricted rats completed more ratios, reached a higher breakpoint in the progressive ratio task, ran more, and spent more time in the operant chamber. We did not observe any effects of calorie restriction on the estrous cycle or steroids (e.g. corticosterone, testosterone) in the blood or brain. Importantly, our task dissociates the motivational drive for physical activity from the ability to perform the physical activity itself, providing a new paradigm for studying the neural and endocrine mechanisms that regulate exercise motivation.

animal behavior and cognition↗

Estrogen profiling in blood and brain: effects of season and an aggressive interaction in a songbird

Neuroestrogens are synthesized in the brain and regulate social behavior and cognition. In the song sparrow (Melospiza melodia), 17{beta}-estradiol (17{beta}-E2) promotes aggression, even during the non-breeding season, when circulating 17{beta}-E2 levels are low. Measuring estrogens is challenging due to their low concentrations and the limited sensitivity of many existing assays. Moreover, estrogens other than 17{beta}-E2 are often overlooked. Here, we developed a method for simultaneous measurement of eleven estrogens that is highly specific, sensitive, accurate, and precise. We used liquid chromatography tandem mass spectrometry (LC-MS/MS) with derivatization of estrogens by 1,2-dimethylimidazole-5-sulfonyl-chloride (DMIS) to enhance sensitivity. We included four 13C-labeled internal standards, which corrected for matrix effects when measuring catecholestrogens and methoxyestrogens. This method greatly improves upon our prior protocol, which could measure only four estrogens and included only one deuterated internal standard. Then, the new method was applied to samples from male song sparrows exposed to either a simulated territorial intrusion (STI) or a control condition during the breeding season or non-breeding season. Only estrone and 17{beta}-E2 were present in blood and brain, while the other nine estrogens in the panel were non-detectable. As expected, there was large regional variation in neuroestrogen levels and very low estrogen levels in blood. There was large seasonal variation, and estrogen levels were lower in the non-breeding season. Despite robust aggressive responses to the STI, estrogen levels did not differ between STI and control subjects in either season. In sum, our novel method enables ultrasensitive measurement of eleven estrogens and will be useful for studies of songbirds and other animals.

neuroscience↗