Related Experiment Video
Updated: Mar 10, 2026

Monitoring the Effect of Osmotic Stress on Secretory Vesicles and Exocytosis
Published on: February 19, 2018
Bidirectional Anticipation of Future Osmotic Challenges by Vasopressin Neurons
Yael Mandelblat-Cerf1, Angela Kim2, Christian R Burgess1
1Division of Endocrinology, Diabetes, and Metabolism, Beth Israel Deaconess Medical Center, Boston, MA 02215, USA.
Abstract:
Ingestion of water and food are major hypo- and hyperosmotic challenges. To protect the body from osmotic stress, posterior pituitary-projecting, vasopressin-secreting neurons (VPpp neurons) counter osmotic perturbations by altering their release of vasopressin, which controls renal water excretion. Vasopressin levels begin to fall within minutes of water consumption, even prior to changes in blood osmolality. To ascertain the precise temporal dynamics by which water or food ingestion affect VPpp neuron activity, we directly recorded the spiking and calcium activity of genetically defined VPpp neurons. In states of elevated osmolality, water availability rapidly decreased VPpp neuron activity within seconds, beginning prior to water ingestion, upon presentation of water-predicting cues. In contrast, food availability following food restriction rapidly increased VPpp neuron activity within seconds, but only following feeding onset. These rapid and distinct changes in activity during drinking and feeding suggest diverse neural mechanisms underlying anticipatory regulation of VPpp neurons.
More Related Videos
Related Concept Videos
Hormonal Regulation
Endocrine Signaling
Regulation of Water Intake
Physiology of the Genitourinary System II: Tubular Reabsorption and Secretion
Formation of Concentrated Urine
Reabsorption and Secretion in the DCT and Collecting Duct
The distal...

