1.Neural Gastric Electrical Stimulation: Future Prospects in Managing GastricEmptying Disorders
Jonathan SIVAKUMAR ; John B FURNESS ; David B GRAYDEN ; James FALLON ; Jeremy COTTRELL ; Cuong Phu DUONG
Journal of Neurogastroenterology and Motility 2026;32(1):19-29
Neural gastric electrical stimulation (NGES) is a multi-channel high-energy gastrointestinal stimulation technique that directly activates cholinergic motor neurons to evoke contractions that improve gastric emptying. NGES stimulation superimposes on spontaneous electromechanical activity to generate coordinated propagating contractions. In contrast, the most commonly applied form of gastric electrical stimulation (Enterra), employs paired pulses that stimulate vagal afferent pathways to reduce symptoms of nausea and vomiting, but does not enhance emptying. This review examines the evolution and implementation of NGES, focusing on its potential role as a treatment option to enhance gastric propulsion in gastroparesis and delayed gastric conduit emptying. While initial acute animal studies have shown promising results, continued development of the technology and refinement of stimulation protocols through chronic experiments remains essential for successful clinical translation.
2.Surgical Intervention to Rescue Hirschsprung Disease in a Rat Model.
Lincon A STAMP ; Florian OBERMAYR ; Louise PONTELL ; Heather M YOUNG ; Dan XIE ; David H CROAKER ; Zan Min SONG ; John B FURNESS
Journal of Neurogastroenterology and Motility 2015;21(4):552-559
BACKGROUND/AIMS: Rats with a spontaneous null mutation in endothelin receptor type B or Ednrb (sl/sl; spotting lethal) lack enteric neurons in the distal bowel and usually die within the first week after birth. This early postnatal lethality limits their use for examining the potential of cell therapy to treat Hirschsprung disease, and for studies of the influence of EDNRB on the mature CNS and vascular systems. METHODS: We have developed a surgical intervention to prolong the life of the spotting lethal sl/sl rat, in which we perform a colostomy on postnatal (P) day 4-6 rats to avoid the fatal obstruction caused by the lack of colonic enteric neurons. RESULTS: The stomas remained patent and functional and the rats matured normally following surgery. Weight gains were comparable between control and Hirschsprung phenotype (sl/sl) rats, which were followed until 4 weeks after surgery (5 weeks old). We confirmed the absence of enteric neurons in the distal colon of rats whose lives were saved by the surgical intervention. CONCLUSIONS: This study provides a novel approach for studying EDNRB signalling in multiple organ systems in mature rats, including an animal model to study the efficacy of cell therapy to treat Hirschsprung disease.
Animals
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Cell- and Tissue-Based Therapy
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Colon
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Colostomy
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Enteric Nervous System
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Female
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Hirschsprung Disease*
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Metrorrhagia
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Models, Animal*
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Neurons
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Parturition
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Phenotype
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Rats*
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Receptors, Endothelin
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Weight Gain

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