Key result
Noninvasive assessment using in vivo 1H magnetic resonance spectroscopy showed that glutamate and choline metabolites in the dorsal medulla correlate with spontaneous baroreflex sensitivity in rats.
Noninvasive assessment of neurochemical biomarkers using 1H-MRS in the dorsal medulla correlates with baroreflex sensitivity and autonomic balance in rat models.
Supports MRS for autonomic biomarkers in rat models; hypothesis-generating and leaves open human translation in hypertension.
Control of heart rate variability via modulation of sympathovagal balance is a key function of nucleus tractus solitarii and the dorsal motor nucleus of the vagus localized in the dorsomedial medulla oblongata. Normal blood pressure regulation involves precise balance of glutamate (Glu)-glutamine-gamma-aminobutyric acid transmitter systems, and angiotensin II modulates these transmitters to produce tonic suppression of reflex function. It is not known, however, whether other brain transmitters/metabolites are indicators of baroreflex function. This study establishes the concept that comprehensive baseline transmitter/metabolite profiles obtained using in vivo (1)H magnetic resonance spectroscopy in rats with well-characterized differences in resting blood pressure and baroreflex function can be used as indices of autonomic balance or baroreflex sensitivity. Transgenic rats with over-expression of renin [m(Ren2)27] or under-expression of glial-angiotensinogen (ASrAogen) were compared with Sprague-Dawley rats. Glu concentration in the dorsal medulla is significantly higher in ASrAogen rats compared with either Sprague-Dawley or (mRen2)27 rats. Glu levels and the ratio of Glu:glutamine correlated positively with indices of higher vagal tone consistent with the importance of these neurotransmitters in baroreflex function. Interestingly, the levels of choline-containing metabolites showed a significant positive correlation with spontaneous baroreflex sensitivity and a negative correlation with sympathetic tone. Thus, we demonstrate the concept that noninvasive assessment of neurochemical biomarkers may be used as an index of baroreflex sensitivity.
No takes yet. Share an insight, caveat, or question.
García‐Espinosa et al. (2010) studied Baroreflex function and resting blood pressure. Transgenic over-expression of renin or under-expression of glial-angiotensinogen vs. Sprague-Dawley rats was evaluated on Neurotransmitter and metabolite concentrations in the dorsal medulla. Noninvasive assessment using in vivo 1H magnetic resonance spectroscopy showed that glutamate and choline metabolites in the dorsal medulla correlate with spontaneous baroreflex sensitivity in rats.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: