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A Window to the Gut’s Brain

Summary: Researchers have developed a new system that allows for real time viewing of the enteric nervous system, and could provide a new way to identify gastrointestinal disorders.

Source: Duke University.

Real-time view of enteric nervous system provides new way to study gastrointestinal disorders.

Duke researchers have developed a system that allows real-time optical and electrical observations of the gut’s nervous system in a live animal.

And if you weren’t aware that the gut had its own nervous system, don’t worry, you’re not alone.

“The first time I ever heard of the enteric nervous system was two years ago, and I was like ‘What’s that?’” said Xiling Shen, associate professor of biomedical engineering at Duke University and author of the study appearing June 7 in Nature Communications. “Even with neurobiologists, their only exposure to it is typically something like a half-page in a textbook. But it’s actually very important.”

Consisting of five times more neurons than the spinal cord and often termed as a “second brain,” the enteric nervous system is a mesh-like sheath of neurons that controls the gastrointestinal tract. It regulates how food moves through the digestive system and communicates potential problems to the immune system. And while it has a direct line to both the brain and spinal cord, the enteric system has the ability to direct the organs under its control independent of either system.

Image shows ens.

Despite its importance, however, very little is known about the enteric nervous system, such as how it responds to medications or what can go wrong with it to cause disease.

“About one-quarter of the world’s population is affected by a functional gastrointestinal disorder,” Shen said. “You’ve probably heard of the term functional GI disorder, which encompasses diseases like irritable bowel syndrome, constipation and incontinence. If you look at the physiology in these diseases, the gut looks fine. It’s the nerves that are somehow malfunctioning. And the reason the term includes so many diseases is because we really don’t have any idea what’s going on with those nerves.”

Shen is looking to change that by literally installing an observation window.

In the new study, Shen implanted a transparent window made of tough borosilicate glass into the skin over the stomachs of mice. With no skull or bone structures to anchor the window, he needed to devise a 3D-printed surgical insert for stabilization. The device prevents the intestines from moving too much while maintaining normal digestive functions, allowing researchers to look at the same spot over multiple days.

Being the first to get a live look at the enteric nervous system, Shen was not about to waste the view. Because the gut can be a busy, noisy environment, he devised a system to record both electrical and optical activity at the same time — also a first for the field.
The experiment uses transgenic mice with nerves that light up with a green hue when firing. By using a transparent graphene sensor to obtain electrical signals from the nerves, Shen gained an unobstructed view of the neural activity.

uke biomedical engineer Xiling Shen has created the first system that allows direct observation of the neurons that make up the enteric nervous system — your gut’s brain. Genetic alterations make the neurons in this rat’s gut glow green when they fire. This video shows one of the first views of the enteric nervous system in action.

The optical signal gives spatial resolution, allowing researchers to tell which neuron is firing. The electrical signal provides time resolution, which pins down the exact waveform of the firing neurons. Shen said the enteric nervous system is now ready to be explored.

“So much is known about the brain and spinal cord because we can open them up, look at them, record the neural activities and map their behaviors,” said Shen. “Now we can start doing the same for the gut.

We can see how it reacts to different drugs, neurotransmitters or diseases. We have even artificially activated individual neurons in the gut with light, which nobody has ever done before. This innovation will help us understand this ‘dark’ nervous system that we currently have completely no idea about.”

ABOUT THIS NEUROLOGY RESEARCH ARTICLE

Funding: This research was supported by the DARPA Electrical Prescriptions Program (N66001-15-2-4059) and the National Institutes of Health (R01GM114254).

Source: Ken Kingery – Duke University
Image Source: This NeuroscienceNews.com image is credited to Cheng Fang.
Video Source: Video is credited to Duke Engineering.
Original Research: Full open access research for “Simultaneous optical and electrical in vivo analysis of the enteric nervous system” by Nikolai Rakhilin, Bradley Barth, Jiahn Choi, Nini L. Muñoz, Subhash Kulkarni, Jason S. Jones, David M. Small, Yu-Ting Cheng, Yingqiu Cao, Colleen LaVinka, Edwin Kan, Xinzand& Xiling Shen in Nature Communications. Published online June 7 2016 doi:10.1038/ncomms11800

CITE THIS NEUROSCIENCENEWS.COM ARTICLE
Duke University. “A Window to the Gut’s Brain.” NeuroscienceNews. NeuroscienceNews, 7 June 2016.
<http://neurosciencenews.com/ens-gastrointestinal-disorders-4396/&gt;.

Abstract

Simultaneous optical and electrical in vivo analysis of the enteric nervous system

The enteric nervous system (ENS) is a major division of the nervous system and vital to the gastrointestinal (GI) tract and its communication with the rest of the body. Unlike the brain and spinal cord, relatively little is known about the ENS in part because of the inability to directly monitor its activity in live animals. Here, we integrate a transparent graphene sensor with a customized abdominal window for simultaneous optical and electrical recording of the ENS in vivo. The implanted device captures ENS responses to neurotransmitters, drugs and optogenetic manipulation in real time.

“Simultaneous optical and electrical in vivo analysis of the enteric nervous system” by Nikolai Rakhilin, Bradley Barth, Jiahn Choi, Nini L. Muñoz, Subhash Kulkarni, Jason S. Jones, David M. Small, Yu-Ting Cheng, Yingqiu Cao, Colleen LaVinka, Edwin Kan, Xinzand& Xiling Shen in Nature Communications. Published online June 7 2016 doi:10.1038/ncomms11800

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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

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