Cellular & molecular biology letters

Exendin-4 may prevent light-driven damage to eye cells through a specific cell signaling pathway

Updated

Abstract

Intraperitoneal injection of EX-4 significantly preserved retinal structure and function in Abca4Rdh8 mice after light exposure.

  • GLP-1R signaling was notably downregulated in retinal cells challenged with atRAL.
  • EX-4 reinstated the GLP-1R signaling pathway, suppressed caspase-3 activation, and reduced DNA damage.
  • Silencing GLP-1R or PKA catalytic subunits negated the protective effects of EX-4 in retinal cells.
  • Pharmacologic inhibition of the PKA/CREB1 pathway diminished the anti-apoptotic benefits of EX-4 in retinal cells exposed to atRAL.
  • EX-4 may provide cytoprotection against atRAL-induced retinal degeneration in conditions like dry AMD and STGD1.

Simplified

Full Text

Full text is available at the source.

Funding

Competing interests

Declarations. Ethics approval and consent to participate: All animal experiments were reviewed and approved by the Institutional Animal Care and Use Committee of Xiamen University School of Medicine (approval no. XMULAC20190021; 17 December 2019). The Local Ethics Committee confirms that all experiments were conducted in accordance with the ethical principles and guidelines of the International Council for Laboratory Animal Science (ICLAS). Consent for publication: Not applicable. Competing interests: The authors declare no competing interests.
PubMed

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