Skip to main content

Affordable in home care | starts at $28 per hr

408-854-1883 starts at $30 per hr home care

Neurons Anticipate Body’s Response to Food and Water

Summary: Findings provide a new insight into how the brain regulates food and water intake.

Source: BIDMC.

Using leading-edge technology, neuroscientists at Beth Israel Deaconess Medical Center (BIDMC) gained new insight into the brain circuitry that regulates water and food intake. In a new study, the team of researchers monitored the activity of the neurons that secrete a hormone in response to ingesting food and water. In their paper, published online today in Neuron, the researchers demonstrated that a subset of neurons starts to prepare the body for an influx of water in the seconds before drinking begins. These neurons help regulate intake by anticipating the effects of drinking from the “top down,” rather than taking cues from the body.

“This study supports the view that when we suddenly detect the availability of food or water, our body starts to prepare itself within seconds for the upcoming bout of eating or drinking,” said co-corresponding author, Mark Andermann, PhD, Assistant Professor of Medicine in the Division of Endocrinology, Diabetes and Metabolism at BIDMC. “We predict that deficits in this ‘top-down’ control could lead to overshoots in eating or drinking, with many negative consequences.”

Image shows neurons.

Andermann and colleagues, including co-corresponding author, Bradford B. Lowell, MD, PhD, a Professor of Medicine in the Division of Endocrinology, Diabetes and Metabolism at BIDMC, recorded the activity of neurons responsible for releasing the anti-diuretic hormone vasopressin in mice. Vasopressin plays a crucial role regulating the body’s relative concentration of water versus salt after eating or drinking, which could otherwise dramatically alter the mix.

“It’s critical to survival that the body has ways to prevent the water concentration outside of cells from changing,” said Lowell. “Anticipating the future consequences of ingesting water helps the body get a head-start on managing water balance. The form of rapid, top-down control of this process that we discovered is one important way of managing it.”

In their experiments, Andermann and Lowell watched as the activity of vasopressin-releasing neuron rapidly decreased – within seconds – when water was presented to water-restricted rodents, before they even drank it. In contrast, the sight and smell of food increased the activity in these neurons – again, within seconds – but only following food consumption. That difference in timing suggested that separate neural networks regulate these reactions to water and to food.

“This type of rapid regulation was not known to exist and has only been discovered in the last year for hunger neurons and for vasopressin neurons,” said Lowell. “It likely occurs for all forms of homeostatic control. It’s interesting to speculate whether there are individuals out there who have abnormalities in this kind of top-down control.”

“By the same token, we may one day learn that enhancing this top-down control might be a way of regulating meal size without interfering with baseline appetite or with the pleasure of taking the first bite of something delicious,” Andermann said, adding their high-tech methodology will allow them to further investigate the neurons directly “upstream” of the vasopressin neurons. “Because we can now monitor and manipulate the activity of specific sets of neurons, we’re getting closer to being able to directly test these hypotheses and working toward strategies to improve human health.”

ABOUT THIS NEUROSCIENCE RESEARCH ARTICLE

Study coauthors include Yael Mandelblat-Cerf, PhD; Angela Kim (undergrad); Christian R. Burgess, PhD; Siva Subramanian (undergrad); Bradford Lowell, PhD; and Mark Andermann, PhD, all of the Division of Endocrinology, Diabetes and Metabolism at BIDMC; and Bakhos A. Tannous, PhD, of the Department of Neurology at Massachusetts General Hospital.

Funding: This work was supported by a Charles A. King Trust Postdoctoral Fellowship; a Davis Family Foundation Postdoctoral Fellowship; grants from the National Institutes of Health (R01 DK075632, R01 DK096010, R01 DK089044, P30 DK046200, P30 DK05752, NIH R01 DK109930, DP2 DK105570); the Pew Scholars Program in the Biomedical Sciences; the Klarman Family Foundation, and the Smith Family Foundation.

Source: Jacqueline Mitchell – BIDMC
Image Source: NeuroscienceNews.com image is adapted from the BIDMC press release.
Original Research: Abstract for “Bidirectional Anticipation of Future Osmotic Challenges by Vasopressin Neurons” by Yael Mandelblat-Cerf, Angela Kim, Christian R. Burgess, Siva Subramanian, Bakhos A. Tannous, Bradford B. Lowell, Mark L. Andermann in Psychotherapy and Psychosomatics. Published online December 15 2016 doi:10.1016/j.neuron.2016.11.021


Abstract

Bidirectional Anticipation of Future Osmotic Challenges by Vasopressin Neurons

Highlights
•Recordings from vasopressin neuroendocrine motor neurons (VPpp) in behaving mice
•Feeding, but not cues predicting food, increase VPpp neuron activity within seconds
•Drinking and cues predicting water reduce VPpp neuron activity within seconds
•Drinking-related reductions in activity reach steady state prior to systemic feedback

Summary
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.

“Bidirectional Anticipation of Future Osmotic Challenges by Vasopressin Neurons” by Yael Mandelblat-Cerf, Angela Kim, Christian R. Burgess, Siva Subramanian, Bakhos A. Tannous, Bradford B. Lowell, Mark L. Andermann in Psychotherapy and Psychosomatics. Published online December 15 2016 doi:10.1016/j.neuron.2016.11.021

Published by connie dello buono

Connie Dello Buono is based in Sunnyvale California. Her first ebook is about women's health, Birthing Ways Healing Ways and her recent one is about cancer prevention, Curated Healing Ways. She had helped women have holistic childbirth as childbirth educator, founded Motherhealth, to serve seniors in the bay area with holistic caregivers and blogs at www.clubalthea.com with more than 10,000 health and finance related posts. Connie trains her own caregivers, which are the favorites of most bay area seniors who are home bound and alone. She is active in the rehab and nursing facilities, volunteering on music and movement for seniors. She is a member of Lion's club and offered scholarships to students in the Philippines. She is active at churchinsunnyvale.us and has Fridays Bible home study in Sunnyvale using the recovery version of the Bible , free at biblesforamerica.us She loves dancing and teaching and her courses can be found at https://teachclub.com/@thriveafter60 She is California Life Insurance licensed providing life insurance for older adults with health issues and helping women retire safely with income for life. at menloassetca.com , she helps with 401k rollover. 3 Benefit plans - Mortgage protection using term life insurance to pay for mortgage balance in event of death - Final Expense plan using Single Issue Whole Life Insurance, with cash back, disability benefit and guaranteed in the presence of health issues - Fixed Index Annuity retirement plan for safe, accessibility, less fees, less taxes, avoids probate as it goes directly to beneficiaries, rate of return with no downside market participation. She brings compassion and understanding to the needs of her clients, bringing holistic approach in health and life insurance. Her goal is to free families from worries especially during covid with caregivers and life insurance in the presence of health issues, especially for women. She can be reached at 408-854-1883 , motherhealth@gmail.com

Leave a Reply

This site uses Akismet to reduce spam. Learn how your comment data is processed.

Discover more from Affordable in home care | starts at $28 per hr

Subscribe now to keep reading and get access to the full archive.

Continue reading