BMC neuroscience

Diabetes drugs liraglutide and lixisenatide can enter the brain and boost new nerve cell growth

Updated

Abstract

Both liraglutide and lixisenatide successfully crossed the blood brain barrier.

  • Lixisenatide crossed the blood brain barrier at all tested doses (2.5, 25, or 250 nmol/kg) within 30 minutes, and at 2.5-25 nmol/kg after 3 hours.
  • Liraglutide crossed the blood brain barrier at doses of 25 and 250 nmol/kg, but not at 2.5 nmol/kg within 30 minutes, and only at 250 nmol/kg after 3 hours.
  • Both drugs enhanced levels of cAMP in the brain, with lixisenatide demonstrating greater effectiveness.
  • Lixisenatide also promoted in the brain, indicating potential neuroprotective effects.

Simplified

Key numbers

1.8×
Increase in Cell Proliferation
Measured by BrdU analysis after lixisenatide treatment.
1.7×
Increase in Young Neurons
Determined by Double Cortin analysis following lixisenatide administration.
2.5 nmol/kg bw
Lixisenatide Detection
Detected in brain tissue 30 min post-injection.

Full Text

What this is

  • Liraglutide and lixisenatide are used for treating type 2 diabetes.
  • This study investigates their ability to cross the blood-brain barrier (BBB) and their effects on .
  • Both drugs show potential neuroprotective effects, which may be beneficial for Alzheimer's disease treatment.

Essence

  • Liraglutide and lixisenatide cross the blood-brain barrier and enhance in the brain, indicating potential therapeutic effects for neurodegenerative diseases.

Key takeaways

  • Both liraglutide and lixisenatide cross the blood-brain barrier, with lixisenatide showing detectable levels even at the lowest dose of 2.5 nmol/kg body weight.
  • Lixisenatide enhances , demonstrated by a 1.8× increase in cell proliferation and a 1.7× increase in young neurons compared to controls.
  • Liraglutide showed significant increases in brain cAMP levels, indicating effective GLP-1 receptor activation, although it required higher doses compared to lixisenatide.

Caveats

  • The study primarily uses animal models, which may not fully translate to human physiology or responses.
  • Variability in drug levels at higher doses suggests potential regulation of transport across the BBB, which may complicate dosing strategies.

Definitions

  • GLP-1 receptor agonists: Drugs that mimic the action of the GLP-1 hormone, enhancing insulin signaling and glucose control.
  • neurogenesis: The process of generating new neurons in the brain, crucial for memory and learning.

Simplified

What Lands in Your Inbox Each Week:

  • 📚7 fresh studies
  • 📝plain-language summaries
  • direct links to original studies
  • 🏅top journal indicators
  • 📅weekly delivery
  • 🧘‍♂️always free