Glycyrrhizic Acid Inhibits High-Mobility Group Box-1 and Homocysteine-Induced Vascular Dysfunction

Laura Kate Gadanec1, Ulf Andersson2, Vasso Apostolopoulos1,3

  • 1Institute of Health and Sport, Victoria University, Melbourne, VIC 3030, Australia.

Nutrients
|July 29, 2023
PubMed

Insights

Hyperhomocysteinemia (HHcy) worsens cardiovascular health by increasing high-mobility group box-1 (HMGB-1). Inhibiting HMGB-1 with glycyrrhizic acid (Glyz) improved vascular function in rabbits, suggesting a potential therapy for HHcy-related cardiovascular diseases.

Area of Science:

  • Cardiovascular Science
  • Molecular Biology
  • Pharmacology

Background:

  • Hyperhomocysteinemia (HHcy) is linked to adverse cardiovascular outcomes.
  • High-mobility group box-1 (HMGB-1) is implicated in HHcy-induced vascular dysfunction and inflammation.
  • Targeting HMGB-1 presents a potential therapeutic strategy for HHcy-related cardiovascular pathologies.

Purpose of the Study:

  • To investigate the role of HMGB-1 in acute HHcy and HHcy-induced atherogenesis.
  • To determine if glycyrrhizic acid (Glyz) can ameliorate HHcy-induced vascular dysfunction by inhibiting HMGB-1.

Main Methods:

  • Male New Zealand White rabbits were fed a standard or atherogenic diet for 4 weeks.
  • Homocysteine (Hcy) or recombinant human HMGB-1 (rhHMGB-1) was used to induce acute HHcy in aortic rings.
  • Vascular function was assessed via isometric tension analysis and acetylcholine-induced relaxation; HMGB-1 levels and inflammatory markers were quantified.

Main Results:

  • HHcy and atherogenic diet significantly increased HMGB-1 levels in serum and aortic tissue.
  • Hcy, rhHMGB-1, and atherogenic diet impaired vascular relaxation, an effect reversed by Glyz.
  • Glyz treatment normalized HMGB-1 expression and reduced markers of vascular dysfunction, cell stress, and inflammation.

Conclusions:

  • HMGB-1 plays a critical role in HHcy-induced vascular dysfunction and inflammation.
  • Inhibition of HMGB-1 with glycyrrhizic acid demonstrates therapeutic potential for cardiovascular diseases associated with HHcy.

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