Skip to content
  • Saturday, 22 August 2026
  • 11:26 pm
  • Follow Us
Lab DB
  • Home
  • About Us
    • About Us
    • Affiliate Disclosure
    • Cookie Policy
    • Disclaimer
    • Privacy Policy
    • DMCA
    • Terms of Service
  • Contact Us
  • FAQ
  • Home
  • MIT Researchers Discover Exercise-Induced Biochemical and Physical Cues Accelerate Nerve Growth and Maturation
Stem Cell & Regenerative Medicine

MIT Researchers Discover Exercise-Induced Biochemical and Physical Cues Accelerate Nerve Growth and Maturation

Dwi Wanna Jul 24, 2026 0

In a series of groundbreaking experiments that bridge the gap between mechanical engineering and neurobiology, researchers at the Massachusetts Institute…

Read More
Stem Cell & Regenerative Medicine

MIT Engineers Reveal How Muscle Exercise Directly Stimulates Nerve Growth Through Biochemical and Physical Cues

Dwi Wanna May 19, 2026 0

In a breakthrough that redefines the biological understanding of the relationship between the muscular and nervous systems, engineers at the…

Read More
Immune System Response in the Brain Identified as Primary Cause for Early Olfactory Loss in Alzheimer’s DiseaseADA Conference Unveils Groundbreaking GLP-1 Advances Amidst Controversy Over Scientific DissentSamsung Biologics to Acquire PolyPeptide Group for SFr1.46 Billion, Expanding Peptide Therapeutics and CDMO CapabilitiesUnveiling the Secrets of Peroxisome Growth Control: A Crucial Mechanism for Early Plant Life and Beyond
Japan’s FY26 NHI Drug Price Revision: Deeper Dive into Mechanisms and Market ImpactMEDVi Under Scrutiny: AI-Powered Telehealth Startup Faces FDA Warnings, Deceptive Marketing Allegations, and Multiple Lawsuits Despite Meteoric GrowthLLMOps in 2026: The 10 Tools Every Team Must HaveThe Most Favored Nation (MFN) Policy’s Unforeseen Ripple Effect: European Pharmaceutical Launches and Withdrawals Plummet
Remepy, a startup that pairs drugs with AI-driven apps, clears a Phase IIa test in Parkinson’sKing’s College London Researchers Identify Potential Breakthrough Alzheimer’s Treatment Through Repurposed Spinal Cord Injury Drug KCL-286Living Plastics That Self-Destruct: Scientists Engineer Microbe-Embedded Polymers for Complete and Rapid DecompositionSanofi Discontinues Amlitelimab Development in Atopic Dermatitis, Citing Lack of Meaningful Differentiation
YOU MAY HAVE MISSED
Laboratory Automation & Robotics
Remepy, a startup that pairs drugs with AI-driven apps, clears a Phase IIa test in Parkinson’s
Lana Keisha Jul 25, 2026
Neuroscience & Brain Research
King’s College London Researchers Identify Potential Breakthrough Alzheimer’s Treatment Through Repurposed Spinal Cord Injury Drug KCL-286
Rifan Muazin Jul 25, 2026
Advanced Materials Science
Living Plastics That Self-Destruct: Scientists Engineer Microbe-Embedded Polymers for Complete and Rapid Decomposition
Nila Kartika Wati Jul 25, 2026
Pharmaceutical R&D
Sanofi Discontinues Amlitelimab Development in Atopic Dermatitis, Citing Lack of Meaningful Differentiation
Teuku Ryan Jul 25, 2026

Copyright © 2025 | Powered by WordPress | News Gadgets by ThemeArile

  • Home
  • About Us
    • About Us
    • Affiliate Disclosure
    • Cookie Policy
    • Disclaimer
    • Privacy Policy
    • DMCA
    • Terms of Service
  • Contact Us
  • FAQ