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Venkiteswaran, K.

Publications and source records attributed to Venkiteswaran, K..

2 recordsLinked to original sources

A novel rat model of body first subtype of Parkinsons disease

The recent growing evidence support the existence of two subtypes of Parkinsons disease (PD), a body first and brain first subtype owing to variability in the disease site of onset as well as disease progression. Animal models which could replicate the specific differences of these subtypes are important to explore the pathophysiology as well as to evaluate novel treatment options. Here, we describe an animal model of body first PD subtype developed using repeated low dose exposure of environmental neurotoxin Paraquat (P) and Lectin (L) to characterize its PD-like manifestations. We administered P+L (P+L, p.o.) daily to rats for 90 days. These animals underwent motor and non-motor behavioral tests at various time intervals. After 21 weeks, post-mortem histopathological analysis was performed to assess neurodegeneration. Onset of motor deficits initiated unilaterally from week 4 of P+L followed by gradual progression towards bilateral symptoms that were levodopa responsive. This model also replicates non motor features including cognitive deficits in tests like Novel Object Recognition Test and Y maze as well as sleep abnormalities. The histopathology showed nigrostriatal dopaminergic degeneration and proteinase K resistant S129 alpha-synucleinopathy both in the gut and the brain. The replication of both progressive motor and non-motor features in this rat model corroborates body first subtype of PD therefore making it an attractive option for testing neuroprotective experimental therapeutics and avenue to understand pathophysiological mechanisms.

neuroscience↗

Rigorous Validation of Paw Preference Using Three Complementary Behavioral Assays in Sprague Dawley Rats

Paw preference, or handedness, is a widely studied behavioral trait used to assess lateralization and motor function in rodents. This study aimed to determine the consistency and reliability of three commonly used behavioral tests to rigorously assess paw preference: the Collins Test, the Staircase Test, and the Pawedness Trait Test. Thirty Sprague Dawley rats (12-48 weeks; 20 females, 10 males) were subjected to all three behavioral tests. Paw uses were recorded, and the laterality index was calculated for each test. Additional cohorts of younger rats (6-9 weeks; 45 females, 45 males) and older rats (12-48 weeks; 38 females, 45 males) were tested to assess the effects of age and sex on paw preference. ANOVA, Fleiss and pairwise Cohens Kappa were used for statistical analysis. All three tests yielded comparable measures of paw preference (ANOVA, p = 0.801). Substantial inter-test agreement was demonstrated by Fleiss kappa ({kappa} = 0.761, p = 3.93 x 10{square}12). Paw preference did not significantly vary by age or sex, and the distribution of left, right, and ambidextrous preference categories aligned with existing literature. The Collins, Staircase, and Pawedness Trait Tests provide consistent, reliable assessments of paw preference in Sprague Dawley rats. These validated behavioral assays can serve as essential tools for preclinical research, including but not limited to models of motor asymmetry observed in stroke, cerebral palsy, traumatic brain injury, and language lateralization, as well as neurodegenerative diseases. HighlightsO_LIRigorously validated paw preference in Sprague Dawley rats using three commonly used behavioral tests. C_LIO_LIDemonstrated strong inter-test agreement across Collins, Staircase, and PaTRaT ({kappa} = 0.761) C_LIO_LIShowed that paw preference remains stable across age and sex in large cohorts C_LIO_LIApplied standardized LI thresholds to enable cross-test comparability C_LI

neuroscience↗