MedXY
Not signed in Sign in / Register
Skip to content
medxy logo Medxy AI
  • Specialties
    • Allergy & Immunology
    • Anesthesiology
    • Cardiology
    • Critical Care
    • Dermatology
    • Diabetes & Endocrinology
    • Emergency Medicine
    • Family Medicine & Nutrition
    • Gastroenterology
    • General Surgery
    • Hematology-Oncology
    • HIV/AIDS
    • Infectious Diseases
    • Internal Medicine
    • Nephrology
    • Neurology
    • Nursing & care
    • OB/GYN & Women’s Health
    • Oncology
    • Ophthalmology
    • Orthopedics
    • Otorhinolaryngology
    • Pathology & Lab Medicine
    • Pediatrics
    • Plastic Surgery
    • Psychiatry
    • Public Health
    • Radiology
    • Respiratory
    • Rheumatology
    • Urology
  • Clinical Updates
  • Medical News
  • iDoctor
  • Specialties
    • Allergy & Immunology
    • Anesthesiology
    • Cardiology
    • Critical Care
    • Dermatology
    • Diabetes & Endocrinology
    • Emergency Medicine
    • Family Medicine & Nutrition
    • Gastroenterology
    • General Surgery
    • Hematology-Oncology
    • HIV/AIDS
    • Infectious Diseases
    • Internal Medicine
    • Nephrology
    • Neurology
    • Nursing & care
    • OB/GYN & Women’s Health
    • Oncology
    • Ophthalmology
    • Orthopedics
    • Otorhinolaryngology
    • Pathology & Lab Medicine
    • Pediatrics
    • Plastic Surgery
    • Psychiatry
    • Public Health
    • Radiology
    • Respiratory
    • Rheumatology
    • Urology
  • Clinical Updates
  • Medical News
  • iDoctor
  • facebook.com
  • twitter.com
  • t.me
  • instagram.com
  • youtube.com
Subscribe

enteric nervous system

  • Home
  • enteric nervous system
Subtype-Specific Enteric Neuronal Activation in IBS: Linking Faecal Proteases and Immune Signatures
Posted inGastroenterology news

Subtype-Specific Enteric Neuronal Activation in IBS: Linking Faecal Proteases and Immune Signatures

Posted by By MedXY 08/06/2026
This study elucidates how faecal proteases and immune proteins distinctly activate enteric neurons in IBS subtypes, revealing subtype-specific pathological mechanisms and potential diagnostic biomarkers, highlighting novel therapeutic targets for IBS management.
Read More
Decoding the Gut-Brain Axis: How Early Life Stress Shapes Gut Motility and Pain Through Neural Pathways
Posted inGastroenterology news Pediatrics

Decoding the Gut-Brain Axis: How Early Life Stress Shapes Gut Motility and Pain Through Neural Pathways

Posted by By MedXY 07/05/2026
Early life stress disrupts gut motility and pain regulation via enteric and sympathetic nervous system alterations, with human pediatric data confirming its clinical relevance and suggesting novel therapeutic targets.
Read More
  • Reevaluating Sentinel Lymph Node Biopsy in Older Women with cT2N0 HR+/HER2- Breast Cancer: Limited Impact on Treatment Decisions
  • Immunotherapy-Induced Endocrine Dysfunction in Gynecologic Oncology: Clinical Insights from a Retrospective Cohort Study
  • Serum GLP-1 as a Novel Biomarker for Endometrial Cancer Detection in Obese Women
  • Ten Years of Uterus Transplantation in the US: Surgical Success, Reproductive Milestones, and Child Development Outcomes
  • Improving Pregnancy Outcomes Through Enhanced Prenatal Care Data and Metrics: A Comprehensive Evidence Synthesis
  • About us
  • Contact us
  • MedXY story
  • Privacy Policy
  • Subscribe Now!
  • 账号

  • English
  • 日本語
  • Tiếng Việt
  • 中文

Alzheimer's disease artificial intelligence atrial fibrillation biomarkers breast cancer Cardiology cardiovascular disease cardiovascular risk chronic kidney disease clinical trial clinical trials critical care diabetes epidemiology GLP-1 receptor agonists heart failure hepatocellular carcinoma Hypertension immunotherapy inflammation MASLD mental health Mortality multiple myeloma myocardial infarction nutrition obesity older adults oncology Pediatrics precision medicine Pregnancy prognosis public health quality of life randomized clinical trial randomized controlled trial risk stratification semaglutide SGLT2 inhibitors stroke targeted therapy type 1 diabetes type 2 diabetes weight loss

Your health, we care

Copyright 2026 — Medxy AI. All rights reserved.
Scroll to Top