Literature DB >> 11723049

Convergence of pre- and postsynaptic influences on glucosensing neurons in the ventromedial hypothalamic nucleus.

Z Song1, B E Levin, J J McArdle, N Bakhos, V H Routh.   

Abstract

Glucosensing neurons in the ventromedial hypothalamic nucleus (VMN) were studied using visually guided slice-patch recording techniques in brain slices from 14- to 21-day-old male Sprague-Dawley rats. Whole-cell current-clamp recordings were made as extracellular glucose levels were increased (from 2.5 to 5 or 10 mmol/l) or decreased (from 2.5 to 0.1 mmol/l). Using these physiological conditions to define glucosensing neurons, two subtypes of VMN glucosensing neurons were directly responsive to alterations in extracellular glucose levels. Another three subtypes were not directly glucose-sensing themselves, but rather were presynaptically modulated by changes in extracellular glucose. Of the VMN neurons, 14% were directly inhibited by decreases in extracellular glucose (glucose-excited [GE]), and 3% were directly excited by decreases in extracellular glucose (glucose-inhibited [GI]). An additional 14% were presynaptically excited by decreased glucose (PED neurons). The other two subtypes of glucosensing neurons were either presynaptically inhibited (PIR; 11%) or excited (PER; 8%) when extracellular glucose was raised to > 2.5 mmol/l. GE neurons sensed decreased glucose via an ATP-sensitive K(+) (K(ATP)) channel. The inhibitory effect of increased glucose on PIR neurons appears to be mediated by a presynaptic gamma-aminobutyric acid-ergic glucosensing neuron that probably originates outside the VMN. Finally, all types of glucosensing neurons were both fewer in number and showed abnormal responses to glucose in a rodent model of diet-induced obesity and type 2 diabetes.

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Year:  2001        PMID: 11723049     DOI: 10.2337/diabetes.50.12.2673

Source DB:  PubMed          Journal:  Diabetes        ISSN: 0012-1797            Impact factor:   9.461


  106 in total

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2.  Essential and sex-specific effects of mGluR5 in ventromedial hypothalamus regulating estrogen signaling and glucose balance.

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Review 3.  Neuroendocrine responses to hypoglycemia.

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Review 4.  K+ channels stimulated by glucose: a new energy-sensing pathway.

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5.  Alpha2delta-1 in SF1+ Neurons of the Ventromedial Hypothalamus Is an Essential Regulator of Glucose and Lipid Homeostasis.

Authors:  Jennifer A Felsted; Cheng-Hao Chien; Dongqing Wang; Micaella Panessiti; Dominique Ameroso; Andrew Greenberg; Guoping Feng; Dong Kong; Maribel Rios
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6.  Membrane potential dye imaging of ventromedial hypothalamus neurons from adult mice to study glucose sensing.

Authors:  Reema P Vazirani; Xavier Fioramonti; Vanessa H Routh
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7.  Silencing of ventromedial hypothalamic neurons by glucose-stimulated K(+) currents.

Authors:  Rhiannan H Williams; Denis Burdakov
Journal:  Pflugers Arch       Date:  2009-02-24       Impact factor: 3.657

8.  Ventromedial hypothalamic glucose sensing and glucose homeostasis vary throughout the estrous cycle.

Authors:  Ammy M Santiago; Deborah J Clegg; Vanessa H Routh
Journal:  Physiol Behav       Date:  2016-09-22

9.  The response of glucose-excited neurones in the ventromedial hypothalamus to decreased glucose is enhanced in a murine model of type 2 diabetes mellitus.

Authors:  V E Cotero; B B Zhang; V H Routh
Journal:  J Neuroendocrinol       Date:  2009-12-04       Impact factor: 3.627

Review 10.  Hypothalamic AMPK: a canonical regulator of whole-body energy balance.

Authors:  Miguel López; Rubén Nogueiras; Manuel Tena-Sempere; Carlos Diéguez
Journal:  Nat Rev Endocrinol       Date:  2016-05-20       Impact factor: 43.330

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