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Roberts, E. R.

Publications and source records attributed to Roberts, E. R..

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Alterations in odor hedonics in the Tg6799 Alzheimer's disease mouse model and the influence of sex

Olfactory impairments, including deficits in odor detection, discrimination, recognition, and changes in odor hedonics are reported in the early stages of Alzheimers disease (AD). Rodent models of AD display deficits in odor learning, detection, and discrimination - recapitulating the clinical condition. However, the impact of familial AD genetic mutations on odor hedonics is unknown. We tested 2-, 4-, and 6-months old 5XFAD (Tg6799) mice in the five-port odor multiple-choice task designed to assay a variety of odor-guided behaviors, including odor preferences/hedonics. We found that 5XFAD mice investigated odors longer than controls, an effect that was driven by 6-months old mice. Interestingly, this effect was carried by females in the 5XFAD group, who investigated odors longer than age-matched males. Upon examining behavior directed towards individual odors to test for aberrant odor preferences, we uncovered that 5XFAD females at several ages displayed heightened preferences towards some of the odors, indicating aberrant hedonics. We observed no impairments in the ability to engage in the task in 5XFAD mice. Taken together, 5XFAD mice, particularly 5XFAD females, displayed prolonged odor investigation behavior and enhanced preferences to certain odors. The data provide insight into hedonic alterations which may occur in AD mouse models, and how these are influenced by biological sex.

neuroscience

α-Synuclein perturbs in vivo neural activity following seeding in the olfactory bulb

BACKGROUNDParkinsons disease (PD) neuropathology is characterized by intraneuronal protein aggregates composed of misfolded -Synuclein (-Syn), as well as degeneration of substantia nigra dopamine neurons. Deficits in olfactory perception and aggregation of -Syn in the olfactory bulb (OB) are observed during early stages of PD, and have been associated with the PD prodrome, before onset of the classic motor deficits. -Syn fibrils injected into the OB of mice cause progressive propagation of -Syn pathology throughout the olfactory system and are coupled to olfactory perceptual deficits. OBJECTIVEWe hypothesized that accumulation of pathogenic -Syn in the OB impairs neural activity in the olfactory system. METHODSTo address this, we monitored spontaneous and odor-evoked local field potential dynamics in awake wild type mice simultaneously in the OB and piriform cortex (PCX) one, two, and three months following injection of pathogenic preformed -Syn fibrils in the OB. RESULTSWe detected -Syn pathology in both the OB and PCX. We also observed that -Syn fibril injections influenced odor-evoked activity in the OB. In particular, -Syn fibril-injected mice displayed aberrantly high odor-evoked power in the beta spectral range. A similar change in activity was not detected in the PCX, despite high levels of -Syn pathology. CONCLUSIONSTogether, this work provides evidence that synucleinopathy impacts in vivo neural activity in the olfactory system at the network-level.

neuroscience