Search bioRxiv⌕ Search

Biology subjects

Bondarenko, A.

Publications and source records attributed to Bondarenko, A..

2 recordsLinked to original sources

Enhanced purinergic signaling in the paraventricular hypothalamus induces hyperphagic obesity and insulin resistance

Body energy homeostasis is tightly regulated by hypothalamic neural circuits. However, their remodeling upon metabolic challenges remains incompletely characterized, thus complicating the development of safe medications against the surge of metabolic diseases. Oxytocin (OXT) neurons in the paraventricular nucleus of the hypothalamus (PVH) are one of the key effectors regulating energy balance. In this work, we report that high-fat diet (HFD) feeding in mice evokes spatiotemporally selective ATP release from astrocytes (Inflares) in the PVH, accompanied by the expression of hematopoietic lineage-specific ADP/ATP receptor P2Y12 on local OXT (PVHOXT) neurons. Strikingly, increased purinergic signaling leads to impaired responsiveness of PVHOXT neurons accompanied by hyperphagic obesity and insulin resistance in mice. Conversely, loss of P2Y12 in PVHOXT neurons attenuates metabolic phenotypes, illustrating that such remodeling is both necessary and sufficient to induce metabolic phenotypes. Inflares were also induced by hyperglycemia, while emergence of P2Y12 on OXT neurons of patients with diabetes mellitus suggests an evolutionary conserved purinergic response to various metabolic challenges and its potential as a drug target. Accordingly, nasal administration of clinically approved doses of P2Y12 inhibitors counteracts obesity in mice and non-human primates, paving the way for application of these compounds in patients with metabolic disorders.

neuroscience↗

Brain Electrical Bioactivity Informational Specifics in Relation to Behavioural and Cognitive Functions in Children with Learning Difficulties

AnnotationThe current paper performs a comprehensive assessment of electroencephalogram (EEG) parameters and features of cognitive functions of the brain in children of preschool (6-7) and primary school age (7-8) years with learning difficulties are considered. Spectral and coherent EEG analysis is conducted as well as particularities of gamified orientation in the maze. Spectral analysis of the EEG in children with learning difficulties revealed a speed decrease in the formation of almost all indicators of alpha activity and an increase in the power of slow-wave activity in the EEG, which was more pronounced in the left hemisphere of the brain. EEG coherence analysis revealed early differences in the spatial organization of the coherence function both in EEG rhythms and the cerebral hemispheres. A high level of motor activity in the maze, fragmented perception, unstable attention, low volume of operational memory, and poor optimization of skills in mastering a new space in children with learning difficulties correlated with indicators of age-related neurophysiological immaturity in terms of EEG.

bioinformatics↗