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Kang, J. C.

Publications and source records attributed to Kang, J. C..

2 recordsLinked to original sources

Gut Microbiota Signatures of Brain and Peripheral gamma-amino butyric acid (GABA) in Healthy Adult Males

Gamma-aminobutyric acid (GABA), the principal inhibitory neurotransmitter in the mature human nervous system, plays a central role in neurodevelopment, emotion regulation, and sensory processing. Many psychiatric drugs act on the GABAergic system, highlighting its importance for healthy brain function. Individual differences in brain and circulating GABA levels have traditionally been attributed to genetic variation. However, several gut bacteria produce neuroactive compounds, including GABA, raising the possibility that microbial variation influences peripheral and central GABA levels and related measures in humans. This relationship remains largely unexplored. In a cross-sectional study of 251 healthy adults, we investigated associations between gut microbiota composition, central and peripheral GABA, and associated features. Brain GABA was quantified using magnetic resonance spectroscopy, blood GABA using enzyme-linked immunosorbent assays, and gut microbiota profiles using absolute and relative abundance measures derived from Flow Cytometry Fluorescent In Situ Hybridisation and 16S rRNA gene sequencing. Motor cortex GABA+ levels were positively associated with greater numbers of Bacteroides/Prevotella bacteria. A similar association was observed for blood GABA, which was additionally associated with greater numbers of lactic acid bacteria, Eubacterium rectale/Clostridium coccoides, and Clostridium histolyticum groups, and with predicted microbial gene pathways involved in GABA, propionate, and butyrate biosynthesis. No association was observed between brain and blood GABA concentrations. These findings provide new evidence for relationships between gut bacterial groups and central and peripheral GABA pools, supporting future longitudinal studies of causal links between gut microbiota and host GABA levels, as well as the potential for future intervention studies to influence GABAergic processing.

neuroscience↗

Transcutaneous auricular vagus nerve stimulation enhances emotional bias towards happiness in healthy young adults: A comparative study of electrical and ultrasound stimulation

Transcutaneous auricular vagus nerve stimulation (taVNS) is an emerging neuromodulation technique demonstrating promise in emotional regulation. This study investigated the acute effects of both electrical (E-taVNS) and ultrasound (U-taVNS) modalities on emotional bias using a facial emotion categorization task in healthy young adults. Fifty-nine participants underwent a single-blind, sham-controlled, within-subject design, with emotional bias assessed at pre-, during-, and post-stimulation phases. Our findings revealed that both E-taVNS and U-taVNS significantly enhanced emotional bias scores, shifting the perception of neutral and ambiguous faces towards positive interpretations and reducing negative emotional bias. No significant differences in efficacy were observed between the two stimulation modalities. Furthermore, individual differences in interoceptive awareness were found to be associated with the observed taVNS effects. These results suggest that both electrical and ultrasound taVNS can acutely modulate emotional regulation, highlighting the potential of taVNS as a non-invasive, well-tolerated alternative for interventions targeting emotional bias and mood disorders. HighlightsO_LItaVNS reduces negative emotional bias toward ambiguous stimuli. C_LIO_LIBoth electrical and ultrasound taVNS shifted emotional bias toward more positive interpretations of ambiguous facial expressions. C_LIO_LIUltrasound taVNS (U-taVNS) demonstrated comparable efficacy to electrical taVNS (E-taVNS). C_LIO_LIThe subscale of the Multidimensional Assessment of Interoceptive Awareness predicted individual variability in taVNS-induced emotional bias change. C_LI

neuroscience↗