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Redox Report
Communications in Free Radical Research
Volume 27, 2022 - Issue 1
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Research Article

The protective effect of proanthocyanidins on the psoriasis-like cell models via PI3K/AKT and HO-1

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References

  • Rodríguez-Cerdeira C, Molares-Vila A, Sánchez-Blanco E, et al. Study on certain biomarkers of inflammation in psoriasis through “OMICS” platforms. Open Biochem J. 2014;8:21–34.
  • Peters BP, Weissman FG, Gill MA. Pathophysiology and treatment of psoriasis. Am J Health Syst Pharm. 2000;57(7):645–659.
  • Javier E, Isabel F, Frapart YM, et al. European contribution to the study of ROS: a summary of the findings and prospects for the future from the COST action BM1203 (EU-ROS). Redox Biol. 2017;13:94–162.
  • Chandran V. Soluble biomarkers may differentiate psoriasis from psoriatic arthritis. J Rheumatol Suppl. 2012;89:65–66.
  • Chiang C-C, Cheng W-J, Korinek M, et al. Neutrophils in psoriasis. Front Immunol. 2019;10:2376.
  • Ogawa E, Sato Y, Minagawa A, et al. Pathogenesis of psoriasis and development of treatment. J Dermatol. 2018;45(3):264–272.
  • Woo Y, Cho D, Park H. Molecular mechanisms and management of a cutaneous inflammatory disorder: psoriasis. Int J Mol Sci. 2017;18(12):2684.
  • Houshang N, Reza K, Masoud S, et al. Antioxidant status in patients with psoriasis. Cell Biochem Funct. 2014;32(3):268–273.
  • Armstrong AW, Voyles SV, Armstrong EJ, et al. Angiogenesis and oxidative stress: common mechanisms linking psoriasis with atherosclerosis. J Dermatol Sci. 2011;63(1):1–9.
  • Lin X, Huang T. Oxidative stress in psoriasis and potential therapeutic use of antioxidants. Free Radic Res. 2016;50(6):585–595.
  • Ursini F, Maiorino M, Forman HJ. Redox homeostasis: the golden mean of healthy living. Redox Biol. 2016;8:205–215.
  • Wang A, Bai Y. Dendritic cells: the driver of psoriasis. J Dermatol. 2020;47(2):104–113.
  • Chiricozzi A, Romanelli P, Volpe E, et al. Scanning the immunopathogenesis of psoriasis. Int J Mol Sci. 2018;19(1):179.
  • Kennedy-Crispin M, Billick E, Mitsui H, et al. Human keratinocytes’ response to injury upregulates CCL20 and other genes linking innate and adaptive immunity. J Invest Dermatol. 2012;132(1):105–113.
  • Lebwohl M. Psoriasis. Ann Intern Med. 2018;168(7):49–64.
  • Zhang L, Wang Y, Li D, et al. The absorption, distribution, metabolism and excretion of procyanidins. Food Funct. 2016;7(3):1273–1281.
  • Chen X-X, Feng H-L, Ding Y-M, et al. Structure characterization of proanthocyanidins from caryota ochlandra hance and their bioactivities. Food Chem. 2014;155:1–8.
  • Yang L-J, Zhu D-N, Dang Y-L, et al. Treatment of condyloma acuminata in pregnant women with cryotherapy combined with proanthocyanidins: outcome and safety. Exp Ther Med. 2016;11(6):2391–2394.
  • Sano A. Safety assessment of 4-week oral intake of proanthocyanidin-rich grape seed extract in healthy subjects. Food Chem Toxicol. 2017;108(pt B):519–523.
  • Kim S-H, Bang J, Son C-N, et al. Grape seed proanthocyanidin extract ameliorates murine autoimmune arthritis through regulation of TLR4/MyD88/NF-κB signaling pathway. Korean J Intern Med. 2018;33(3):612–621.
  • Tie F, Wang J, Liang Y, et al. Proanthocyanidins ameliorated deficits of lipid metabolism in type 2 diabetes mellitus via inhibiting adipogenesis and improving mitochondrial function. Int J Mol Sci. 2020;21(6):2029.
  • Rasmussen SE, Frederiksen H, Krogholm KS, et al. Dietary proanthocyanidins: occurrence, dietary intake, bioavailability, and protection against cardiovascular disease. Mol Nutr Food Res. 2005;49(2):159–174.
  • Ninggang Y, Jing G, Xin C, et al. Grape seed proanthocyanidins inhibit the proliferation, migration and invasion of tongue squamous cell carcinoma cells through suppressing the protein kinase B/nuclear factor-κB signaling pathway. Int J Mol Med. 2017;40(6):1881–1888.
  • Sharma SD, Meeran SM, Katiyar SK. Dietary grape seed proanthocyanidins inhibit UVB-induced oxidative stress and activation of mitogen-activated protein kinases and nuclear factor-kappaB signaling in in vivo SKH-1 hairless mice. Mol Cancer Ther. 2007;6(3):995–1005.
  • Chen F, Ye X, Yang Y, et al. Proanthocyanidins from the bark of metasequoia glyptostroboides ameliorate allergic contact dermatitis through directly inhibiting T cells activation and Th1/Th17 responses. Phytomedicine. 2015;22(4):510–515.
  • Roy S, Khanna S, Alessio HM, et al. Anti-angiogenic property of edible berries. Free Radic Res. 2002;36(9):1023–1031.
  • Yang Y, Zhao Y, Lai R, et al. An emerging role of proanthocyanidins on psoriasis: evidence from a psoriasis-like mouse model. Oxid Med Cell Longev. 2022 Jun 8;2022:5800586.
  • Hah Y-S, Kim J, Cho HY, et al. Procyanidins from vitis vinifera seeds induce apoptotic and autophagic cell death via generation of reactive oxygen species in squamous cell carcinoma cells. Oncol Lett. 2017;14(2):1925–1932.
  • Hana D, Eva F-F, Corina T, et al. Vitis vinifera seeds extract for the modulation of cytosolic factors BAX-α and NF-kB involved in UVB-induced oxidative stress and apoptosis of human skin cells. Clujul Medical. 2016;89(1):72–81.
  • Bocheńska K, Smolińska E, Moskot M, et al. Models in the research process of psoriasis. Int J Mol Sci. 2017;18(12):2514.
  • Fazli S, Yeong KH, Yeseon L, et al. Fish scale collagen peptides protect against CoCl2/TNF- α -induced cytotoxicity and inflammation via inhibition of ROS, MAPK, and NF- κ B pathways in HaCaT cells. Oxid Med Cell Longev. 2017;2017:9703609.
  • Gomez C, Muangnoi C, Sorasitthiyanukarn FN, et al. Synergistic effects of photo-irradiation and curcumin-chitosan/alginate nanoparticles on tumor necrosis factor-alpha-induced psoriasis-like proliferation of keratinocytes. Molecules. 2019;24(7):1388.
  • García-Pérez M-E, Royer M, Duque-Fernandez A, et al. Antioxidant, toxicological and antiproliferative properties of Canadian polyphenolic extracts on normal and psoriatic keratinocytes. J Ethnopharmacol. 2010;132(1):251–258.
  • Péter I, Jagicza A, Ajtay Z, et al. A psoriasis és az oxidatív stressz. Orv Hetil. 2016;157(45):1781–1785.
  • Malakouti M, Brown GE, Wang E, et al. The role of IL-17 in psoriasis. J Dermatol Treat. 2015;26(1):41–44.
  • Elloso MM, Gomez-Angelats M, Fourie AM. Targeting the Th17 pathway in psoriasis. J Leukocyte Biol. 2012;92(6):1187–1197.
  • Sun Y, Xiu C, Liu W, et al. Grape seed proanthocyanidin extract protects the retina against early diabetic injury by activating the Nrf2 pathway. Exp Ther Med. 2016;11(4):1253–1258.
  • Long M, Yang S-H, Han J-X, et al. The protective effect of grape-seed proanthocyanidin extract on oxidative damage induced by zearalenone in kunming mice liver. Int J Mol Sci. 2016;17(6):808.
  • Lai R, Xian D, Xiong X, et al. Proanthocyanidins: novel treatment for psoriasis that reduces oxidative stress and modulates Th17 and treg cells. Redox Rep. 2018;23(1):130–135.
  • Park M-K, Park J-S, Cho M-L, et al. Grape seed proanthocyanidin extract (GSPE) differentially regulates Foxp3+ regulatory and IL-17+ pathogenic T cell in autoimmune arthritis. Immunol Lett. 2011;135(1-2):50–58.
  • Zhang M, Zhang X. The role of PI3K/AKT/FOXO signaling in psoriasis. Arch Dermatol Res. 2019;311(2):83–91.
  • Calautti E, Avalle L, Poli V. Psoriasis: a STAT3-centric view. Int J Mol Sci. 2018;19(1):171.
  • Anna W-P, Janusz M. What is a role of haeme oxygenase-1 in psoriasis? Current concepts of pathogenesis. Int J Exp Pathol. 2007;88(2):95–102.
  • Alzahrani AS. PI3K/Akt/mTOR inhibitors in cancer: at the bench and bedside. Semin Cancer Biol. 2019;59:125–132.
  • Chamcheu JC, Esnault S, Adhami VM, et al. Fisetin, a 3,7,3′,4′-tetrahydroxyflavone inhibits the PI3K/Akt/mTOR and MAPK pathways and ameliorates psoriasis pathology in 2D and 3D organotypic human inflammatory skin models. Cells. 2019;8(9):1089.
  • Hong W, Yangchun X, Meishan J, et al. miR-383 reduces keratinocyte proliferation and induces the apoptosis in psoriasis via disruption of LCN2-dependent JAK/STAT pathway activation. Int Immunopharmacol. 2021;96:107587.
  • Sano S, Chan KS, Carbajal S, et al. Stat3 links activated keratinocytes and immunocytes required for development of psoriasis in a novel transgenic mouse model. Nat Med. 2005;11(Suppl 49):43–49.
  • Ma LJ, You Y, Bai BX, et al. Therapeutic effects of heme oxygenase-1 on psoriasiform skin lesions in guinea pigs. Arch Dermatol Res. 2009;301(6):459–466.
  • Zhang B, Xie S, Su Z, et al. Heme oxygenase-1 induction attenuates imiquimod-induced psoriasiform inflammation by negative regulation of Stat3 signaling. Sci Rep. 2016;6(1):50–51.
  • Cheng-guang S, Xin Y, Lian-qiu M, et al. The effect of procyanidin on expression of STAT1 in type 2 diabetes mellitus SD rats with focal cerebral ischemia. Neuro Endocrinol Lett. 2014;35(1):68–72.
  • Zhang L, Shao J, Zhou Y, et al. Inhibition of PDGF-BB-induced proliferation and migration in VSMCs by proanthocyanidin A2: involvement of KDR and Jak-2/STAT-3/cPLA2 signaling pathways. Biomed Pharmacother. 2018;98:847–855.