4.7 Article

Acute administration of the olive constituent, oleuropein, combined with ischemic postconditioning increases myocardial protection by modulating oxidative defense

期刊

FREE RADICAL BIOLOGY AND MEDICINE
卷 166, 期 -, 页码 18-32

出版社

ELSEVIER SCIENCE INC
DOI: 10.1016/j.freeradbiomed.2021.02.011

关键词

Cardioprotection; Inflammation; Ischemia-reperfusion injury; Oleuropein; Postconditioning; Antioxidant defense systems

资金

  1. COST (European Cooperation in Science and Technology) [EU- CAR-DIOPROTECTION CA16225]
  2. Kleon Tsetis Foundation Scientific Research Culture
  3. European Union (ERDF)
  4. Greek national funds through the Operational Program Competitiveness, Entrepreneurship and Innovation, under the call RESEARCH - CREATE - INNOVATE [5048539]
  5. Greek national funds through the Operational Program PlantUP-GR [5002803]
  6. ELPEN Pharmaceuticals
  7. British Heart Foundation [CS/14/3/31002]
  8. Duke-NUS Signature Research Programme - Ministry of Health
  9. Singapore Ministry of Health's National Medical Research Council under its Clinician Scientist-Senior Investigator scheme [NMRC/CSA-SI/0011/2017]
  10. Collaborative Centre Grant scheme [NMRC/CGAug16C006]

向作者/读者索取更多资源

Oleuropein demonstrates cardioprotective effects against ischemia reperfusion injury by reducing infarct size, possibly through activating antioxidant defense genes via the Nrf-2 axis. Additionally, oleuropein enhances the cardioprotective manifestation of ischemic postconditioning, showing a synergistic effect in experimental models of IRI.
Oleuropein, one of the main polyphenolic constituents of olive, is cardioprotective against ischemia reperfusion injury (IRI). We aimed to assess the cardioprotection afforded by acute administration of oleuropein and to evaluate the underlying mechanism. Importantly, since antioxidant therapies have yielded inconclusive results in attenuating IRI-induced damage on top of conditioning strategies, we investigated whether oleuropein could enhance or imbed the cardioprotective manifestation of ischemic postconditioning (PostC). Oleuropein, given during ischemia as a single intravenous bolus dose reduced the infarct size compared to the control group both in rabbits and mice subjected to myocardial IRI. None of the inhibitors of the cardioprotective pathways, L-NAME, wortmannin and AG490, influence its infarct size limiting effects. Combined oleuropein and PostC cause further limitation of infarct size in comparison with PostC alone in both animal models. Oleuropein did not inhibit the calcium induced mitochondrial permeability transition pore opening in isolated mitochondria and did not increase cGMP production. To provide further insights to the different cardioprotective mechanism of oleuropein, we sought to characterize its anti-inflammatory potential in vivo. Oleuropein, PostC and their combination reduce inflammatory monocytes infiltration into the heart and the circulating monocyte cell population. Oleuropein's mechanism of action involves a direct protective effect on cardiomyocytes since it significantly increased their viability following simulated IRI as compared to non-treated cells. Oleuropein confers additive cardioprotection on top of PostC, via increasing the expression of the transcription factor Nrf-2 and its downstream targets in vivo. In conclusion, acute oleuropein administration during ischemia in combination with PostC provides robust and synergistic cardioprotection in experimental models of IRI by inducing antioxidant defense genes through Nrf-2 axis and independently of the classic cardioprotective signaling pathways (RISK, cGMP/PKG, SAFE).

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