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Kritzer, M. F.

Publications and source records attributed to Kritzer, M. F..

2 recordsLinked to original sources

Spontaneous object exploration in a recessive gene knockout model of Parkinson's disease: Development and progression of object recognition memory deficits in male Pink1-/- rats.

Cognitive impairments appear at or before motor signs in about one third of patients with Parkinsons disease (PD) and have a cumulative prevalence of roughly 80% overall. These deficits exact an unrelenting toll on patients quality and activities of daily life due in part to a lack of available treatments to ameliorate them. This study used three well-validated novel object recognition-based paradigms to explore the suitability of rats with knockout of the PTEN-induced putative kinase1 gene (Pink1) for investigating factors that induce cognitive decline in PD and for testing new ways to mitigate them. Longitudinal testing of rats from three to nine months of age revealed significant impairments in male Pink1-/- rats compared to wild type controls in Novel Object Recognition, Novel Object Location and Object-in-Place tasks. Task-specific differences in the progression of object discrimination/memory deficits across age were also seen. Finally, testing using an elevated plus maze, a tapered balance beam and a grip strength gauge showed that in all cases recognition memory deficits preceded potentially confounding impacts of gene knockout on affect or motor function. Taken together, these findings suggest that knockout of the Pink1 gene negatively impacts the brain circuits and/or neurochemical systems that support performance in object recognition tasks. Further investigations using Pink1-/-rats and object recognition memory tasks should provide new insights into the neural underpinnings of the visual recognition memory and visuospatial information processing deficits that are often seen in PD patients and accelerate the pace of discovery of better ways to treat them.

neuroscience↗

Task-specific effects of biological sex and sex hormones on object recognition memories in a 6-hydroxydopamine-lesion model of Parkinson's disease in adult male and female rats

Many patients with Parkinsons disease (PD) experience impairments in cognition and memory with few therapeutic options currently available to mitigate them. This has fueled interest in determining how factors including biological sex and sex hormones might modulate higher order function in PD. Previous studies have investigated this in female rats and in gonadally intact and gonadectomized males, with and without hormone replacement, that received bilateral neostriatal 6-hydroxydopamine (6-OHDA) lesions to model PD. Barnes maze and What Where When Episodic-like memory testing showed that 6-OHDA lesions disrupted spatial working and episodic memory functions in both sexes, and that in males, androgen-sensitive behaviors could be rescued in subjects where circulating androgen levels were diminished. Here we tested similar animal groups using the Novel Object Preference (NOP) and Object-in-Place (OiP) tasks. This revealed two entirely different patterns of sex and sex hormone influence. First, for both tasks, 6-ODHA lesions impaired object discrimination in males but not females. Further, for the NOP task, 6-OHDA lesions disrupted discrimination in males rats independently of hormone status. And finally, 6-OHDA lesions impaired OiP performance in males regardless of whether androgen levels were high or low but had no effect on discrimination in gonadectomized rats given 17{beta}-estradiol. Together with previous findings, these data identify the impacts of sex and sex hormones on cognition and memory in PD as behavioral task/behavioral domain specific. This specificity could explain why a cohesive clinical picture of endocrine impacts on higher order function in PD has remained elusive. HIGHLIGHTSO_LI6-OHDA lesions impair Novel Object performance in male but not female rats. C_LIO_LI6-OHDA lesions impair Object-in-Place performance in male but not female rats. C_LIO_LIGonadectomy has no effect on 6-OHDA-induced deficits in Novel Object Preference. C_LIO_LIEstrogen replacement prevents 6-OHDA-induced Object-in-Place deficits in males. C_LI

neuroscience↗