Protective Effects of Hydroxytyrosol Mediated by Pentraxin-3 and Trpm2 on Lung Damage

The Protective Effect of Hydroxytyrosol

Authors

DOI:

https://doi.org/10.5281/zenodo.10019760

Keywords:

Myocardial Infarction, lung, Hydroxytyrosol, PTX3, TRPM2.

Abstract

Aim: The role of Pentraxin-3 (PTX3) and Transient Receptor Potential (TRP) Melastatin-Like Subfamily Member 2 (TRPM2) in its protective impacts on the lungs in MI by administering Hydroxytyrosol (HT) to rats before Myocardial Infarction (MI) were investigated in the study.

Materials and Methods: The rats were divided into 4 Groups (n=7) (Control, MI 6th-hour, MI 7th-day, MI+HT 7th-day), and 200mg/kg Isoproterenol (ISO) was given subcutaneously to the rats to induce MI. The rats were given fluid containing HT 4 ml/kg/day orally for 6 weeks before MI. PTX3 and TRPM2 levels in the lung tissues were evaluated immunohistochemically.

Results: PTX3 and TRPM2 expression was detected in the lung tissue. PTX3 and TRPM2 levels increased especially on the 7th day following MI, and declined significantly on the 7th day following HT administration before MI.

Conclusion: It was concluded in the present study that HT may exert its protective impacts on the lungs in MI through PTX3 and TRPM2.

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References

References

Zhang W, Guo Y, Yu S, Wei J, Jin J. Effects of edaravone on the expression of β-defensin-2 mRNA in lung tissue of rats with myocardial ischemia reperfusion. Mol Med Rep 2013;7(5):1683-87.

Martínez-Zamora L, Peñalver R, Ros G, Nieto G. Olive Tree Derivatives and Hydroxytyrosol: Their Potential Effects on Human Health and Its Use as Functional Ingredient in Meat. Foods 2021;10:2611.

Smeriglio A, Denaro M, Mastracci L et al. Safety and efficacy of hydroxytyrosol-based formulation on skin inflammation: In vitro evaluation on reconstructed human epidermis model. Daru 2019;27:283–93.

Townsend M, Fowler B, Aulakh GK, Sing B. Expression of pentraxin 3 in equine lungs and neutrophil. The Canadian Journal of Veterinary Research 2023;87:9–16.

Bilgin H, Haliloglu M, Yaman A et al. Sequential measurements of pentraxin 3 serum levels in patients with ventilator-associated pneumonia: a nested case-control study. Can J Infect Dis Med Microbiol 2018;2018:4074169.

Szollosi A. Two Decades of Evolution of Our Understanding of the Transient Receptor Potential Melastatin 2 (TRPM2) Cation Channel. Life (Basel) 2021; 11(5):397.

Yamamoto S, Shimizu S, Kiyonaka S et al. TRPM2-mediated Ca2+ influx induces chemokine production in monocytes that aggravates inflammatory neutrophil infiltration. Nature Med 2008; 14:738–47

Erten M, Çimenci İG, Kuloğlu T, Kalaycı M, Erten F. The relationship between visfatin and cardiac markers on induced myocardial infarction in rats. Cytokine 2019;115: 116-20.

Kocaman N, Artas G. Can novel adipokines, asprosin and meteorin-like, be biomarkers for malignant mesothelioma? Biotech Histochem 2020;95(3):171-75.

Elmahalawy II, Ammar AS, Fathy WM, Salama AE, Mokhtar WS. Pentraxin 3 as an early marker in diagnosis of ventilator associated pneumonia. Egypt J Chest Dis Tuberc 2017;66:709–12.

Zhang J, Shan L, Koussih L et al. Pentraxin 3 (PTX3) Expression in Allergic Asthmatic Airways: Role in Airway Smooth Muscle Migration and Chemokine Production. PLoS One 2012;7(4): e34965.

Jie H, Li Y, Pu X, Ye J. Pentraxin 3, a predicator for 28-day mortality in patients with septic shock. Am J Med Sci 2017;353:242–6.

Bilgin H, Haliloglu M, Yaman A et al. Sequential measurements of pentraxin 3 serum levels in patients with ventilator-associated pneumonia: a nested case-control study. Can J Infect Dis Med Microbiol 2018;2018:4074169.

Whiting P, Rutjes AW, Reitsma JB, Bossuyt PM, Kleijnen J.The development of QUADAS: a tool for the quality assessment of studies of diagnostic accuracy included in systematic reviews. J BMC Med Res Methodol 2003;3:25.

Zhang Y, Tedrow J, Nouraie M et al. Elevated plasma level of Pentraxin 3 is associated with emphysema and mortality in smokers. Thorax 2021;76(4): 335–42.

Ye W, Huang QD, Tang TY, Qin GY. Diagnostic value of pentraxin 3 in respiratory tract infections. Medicine 2020;99:14.

Zong P,Feng J, Yue Z et al. TRPM2 deficiency in mice protects against atherosclerosis by inhibiting TRPM2-CD36 inflammatory axis in macrophages. Nat Cardiovasc Res 2022;1:344–60.

Hecquet CM, Ahmmed GU, Vogel SM, Malik AB. Role of TRPM2 Channel in Mediating H2O2-Induced Ca2+ Entry and Endothelial Hyperpermeability. Circ Res 2008;102:347–55.

Johnson A, Phillips P, Hocking D, Tsan MF, Ferro T. Protein kinase C inhibitor avoids pulmonary edema in response to H2O2. Am J Physiol Heart Circ Physiol 1989; 256:1012–22.

Lum H, Roebuck K. Oxidant stress and endothelial cell dysfunction. Am J Physiol Cell Physiol 2001;280:719–41.

Han XB, Liu X, Hsueh W, Plaen IG. Macrophage inflammatory protein-2 mediates the bowel injury induced by platelet-activating factor. Am J Physiol Gastrointest Liver Physiol 2004;287: 1220–26.

Cunha C, Aversa F, Lacerda JF et al. Genetic PTX3 deficiency and aspergillosis in stem-cell transplantation. N Engl J Med 2014;370:421–32.

Yang X, Jing T, Li Y et al. Hydroxytyrosol Attenuates LPS-Induced Acute Lung Injury in Mice by Regulating Autophagy and Sirtuin Expression. Curr Mol Med 2017;17:149–59.

Liu ZH, Fan W, Chen RC. 3,4-dihydroxyphenylethanol suppresses irradiation-induced pulmonary fibrosis in adult rats. Int J Clin Exp Pathol 2015;8(4):3441–50.

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Published

2023-10-24

How to Cite

Onat, E., & Turk, A. (2023). Protective Effects of Hydroxytyrosol Mediated by Pentraxin-3 and Trpm2 on Lung Damage: The Protective Effect of Hydroxytyrosol. Chronicles of Precision Medical Researchers, 4(3), 297–301. https://doi.org/10.5281/zenodo.10019760