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Bhardwaj, J.

Publications and source records attributed to Bhardwaj, J..

2 recordsLinked to original sources

Lepr Haploinsufficiency Accelerates Alzheimer-like Neurodegeneration via CDK5 Hyperactivation

Leptin signaling has neuroprotective effects and is increasingly linked to Alzheimers disease (AD). Beyond metabolism, leptin modulates {beta}-amyloid metabolism, tau phosphorylation, and synaptic plasticity. While homozygous Lepr mutations are well studied, the impact of heterozygous mutations on neurodegeneration is unclear. To assess partial Lepr loss, one-year-old db/+ mice were evaluated for metabolic, behavioral, and neuropathological changes. Tests included glucose tolerance, memory assays, A{beta}42 and tau levels, CDK5 activity, and transcriptomics. Human LEPR variants were curated and classified using ACMG guidelines. Aged db/+ mice showed metabolic dysfunction, cognitive deficits, and AD-like pathology. Compared to controls, db/+ mice had increased body weight, insulin resistance, memory impairments, elevated A{beta}42, tau hyperphosphorylation, CDK5 hyperactivation, and astrocyte activation. Transcriptomics revealed altered synaptic and mitochondrial pathways. Thirty-three pathogenic or likely pathogenic human LEPR variants were identified. Lepr haploinsufficiency contributes to age-related cognitive decline and AD-like pathology, suggesting it as a genetic risk factor and therapeutic target.

neuroscience↗

Exploring New Horizons:A Novel Cdk5 Inhibitor Restoring Cognitive Function and Alleviating Type 2 Diabetes.

Type 2 diabetes (T2D) is a metabolic disorder frequently associated with cognitive decline, making T2D patients susceptible to dementia. Often referred to as type 3 diabetes, Alzheimers disease (AD) shares a close association with hyperglycemia and insulin dysregulation. Despite this, anti-diabetic medications have proven beneficial in reducing cognitive impairment induced by T2D. Previous research, including our own, has highlighted the dysregulation of Cdk5 activity in both T2D and AD, with downstream consequences contributing to the progression of pathophysiological changes in both disorders. Therefore, targeting the kinase Cdk5 may offer a more effective approach to treating T2D and cognitive deterioration. In our study, we present evidence supporting Cdk5 as a significant mediator between T2D and cognitive decline. Through the screening of the KINACore library, we identified novel brain-penetrant Cdk5 inhibitors, BLINK11 and BLINK15. Our study further validated the efficacy of these inhibitors in a high-fat diet-induced T2D model, demonstrating their rescue effects on T2D pathogenesis, including blood glucose levels, obesity, and cognitive impairment as assessed through behavioral studies. Notably, BLINK11 emerges as a promising Cdk5 inhibitor for improving the T2D phenotype and addressing cognitive impairment in T2D conditions. Graphical abstract O_FIG O_LINKSMALLFIG WIDTH=200 HEIGHT=141 SRC="FIGDIR/small/615976v1_ufig1.gif" ALT="Figure 1"> View larger version (52K): org.highwire.dtl.DTLVardef@1f6267aorg.highwire.dtl.DTLVardef@1583c99org.highwire.dtl.DTLVardef@1f27603org.highwire.dtl.DTLVardef@121f02b_HPS_FORMAT_FIGEXP M_FIG C_FIG

pharmacology and toxicology↗