DOI QR코드

DOI QR Code

Effects of Antioxidant and Blood Flow Improvement of Grape Leaf Extract and Resveratrol from Vitis romaneti

남항(Vitis romaneti) 유래 포도잎 추출물과 Resveratrol의 항산화 및 혈행개선 효과

  • Received : 2013.06.07
  • Accepted : 2013.10.11
  • Published : 2013.11.30

Abstract

The purpose of this study is to investigate the effects of 80% ethanol grape leaf extract (VGLE) and resveratrol (VGLR) from Vitis romaneti on antioxidant of red blood cells (RBC) of rat and efficacy of blood flow improvement in a rat model of topical ferric chloride ($FeCl_3$)-induced carotid artery damage. RBC oxidative hemolysis and plasma lipid peroxidation induced by the aqueous peroxyl radical generator 2,2'-azobis(2-amidinopropane) dihydrochloride were significantly suppressed by VGLE or VGLR in a dose-dependent manner. The $FeCl_3$ treatment seriously damaged the carotid artery: the walls of the artery and blood flow. However, VGLE or VGLR administration has ameliorated the blood flow and suppressed thrombus in blood vessels. These results suggest that VGLE or VGLR ameliorates the oxidative stress of RBC and thrombosis against blood vessel damage.

본 연구에서 사용한 남항(Vitis romaneti)은 중국에 주로 분포하는 야생종으로 현재 개량하여 재배하고 있는 포도 품종이나, 그 기능에 대해서는 아직까지 알려지지 않았다. 그러므로 본 연구는 남항 포도 잎 추출물(VGLE)과 본 품종유래 지표물질인 resveratrol(VGLR)을 활용하여 AAPH로 유도된 적혈구 및 혈장의 산화적 손상에 대한 항산화 효과와 FeCl3로 유도된 경동맥 혈전 모델에서 혈행개선과 혈청학적 변화에 대한 효과를 조사하였다. 그 결과 VGLE 및 VGLR은 적혈구 및 혈장의 산화적 손상과 혈전을 억제함으로써 혈행을 개선할 수 있는 효과가 있었다. 특히 VGLR은 혈청학적으로 혈전모델에서 Normal군과 유사한 혈청학적 개선 효과를 보였다. 이러한 결과는 VGLE 및 VGLR은 항산화제로 사용될 수 있을 뿐만 아니라 혈행장애로 유발될 수 있는 심혈관계 및 뇌혈관계질환을 예방하거나 개선할 수 있는 물질이라는 것을 제시해주었다. 이와 관련된 VGLE 및 VGLR의 기능성에 대해서는 앞으로 분자생화학적 수준에서 더 연구해야 할 필요성이 있을 것으로 사료된다.

Keywords

References

  1. Tanaka H, Dinenno FA, Monahan KD, Clevenger CM, DeSouza CA, Seals DR. 2000. Aging, habitual exercise, and dynamic arterial compliance. Circulation 102: 1270-1275. https://doi.org/10.1161/01.CIR.102.11.1270
  2. Wiseman H. 1996. Dietary influences on membrane function: Impotent in protection against oxidative damage and disease. Nutr Biochem 7: 2-6. https://doi.org/10.1016/0955-2863(95)00152-2
  3. Bouayed J, Bohn T. 2010. Exogenous antioxidants - Doubleedged swords in cellular redox state: Health beneficial effects at physiologic doses versus deleterious effects at high doses. Oxid Med Cell Longev 3: 228-237. https://doi.org/10.4161/oxim.3.4.12858
  4. Kawashima S. 1969. The possible role of lipoperoxide in aging. Nagoya J Med Sci 32: 303-326.
  5. Decker EA, Crum AD, Calvert JT. 1992. Differences in the antioxidant mechanism of carnosine in the presence of copper and iron. J Agric Food Chem 40: 756-759. https://doi.org/10.1021/jf00017a009
  6. Halliwell B, Gutteridge JM. 1990. Role of free radicals and catalytic metal ions in human disease: an overview. Methods Enzymol 186: 1-85. https://doi.org/10.1016/0076-6879(90)86093-B
  7. Sadrzadeh SM, Graf E, Panter SS, Hallaway PE, Eaton JW. 1984. Hemoglobin. A biologic fenton reagent. J Biol Chem 259: 14354-14356.
  8. Clemens MR, Ruess M, Bursa Z, Waller HD. 1987. The relationship between lipid composition of red blood cells and their susceptibility to lipid peroxidation. Free Radic Res Commun 3: 265-271. https://doi.org/10.3109/10715768709069792
  9. Kang HJ, Mok JY, Cho JK, Jeon IH, Kim HS, Park JM, Jeong SI, Shim JS, Jang SI. 2012. Protective effects of leaf and flower extracts from Cirsium japonicum var. ussuriense on oxidative damage in normal human erythrocytes and plasma. Kor J Pharmacogn 43: 66-71.
  10. Xiromeritis K, Dalainas I, Stamatakos M, Katsikas V, Martinakis V, Stamatelopoulos K, Psarros V. 2012. Acute carotid stent thrombosis after carotid artery stenting. Eur Rev Med Pharmacol Sci 16: 355-362.
  11. Marques MA, Murad FF, Ristow AV, Silveira PR, Pinto JE, Gress MH, Massiere B, Cury JM, Vescovi A. 2010. Acute carotid occlusion and stroke due to antiphospholipid antibody syndrome: case report and literature review. Int Angiol 29: 380-384.
  12. Xu W, Wang TY, Becker RC. 2011. Hematologic diseases: from within the heart. Rev Esp Cardiol 64: 606-613. https://doi.org/10.1016/j.recesp.2011.02.018
  13. Warner TD, Nylander S, Whatling C. 2011. Anti-platelet therapy: cyclo-oxygenase inhibition and the use of aspirin with particular regard to dual anti-platelet therapy. Br J Clin Pharmacol 72: 619-633. https://doi.org/10.1111/j.1365-2125.2011.03943.x
  14. Williams MJ, Sutherland WH, McCormick MP, Yeoman DJ, de Jong SA. 2005. Aged garlic extract improves endothelial function in men with coronary artery disease. Phytother Res 19: 314-319. https://doi.org/10.1002/ptr.1663
  15. Lee JJ, Yang H, Yoo YM, Hong SS, Lee D, Lee HJ, Lee HJ, Myung CS, Choi KC, Jeung EB. 2012. Morusinol extracted from Morus alba inhibits arterial thrombosis and modulates platelet activation for the treatment of cardiovascular disease. J Atheroscler Thromb 19: 516-522. https://doi.org/10.5551/jat.10058
  16. Li CL, Cao YL, He YH, Gu J, Zhang Z, Zhou MD. 1996. Collecting wild Vitis in China. Plant Genetic Resources Newsletter 106: 41-42.
  17. God JM, Tate P, Larcom LL. 2007. Anticancer effects of four varieties of muscadine grape. J Med Food 10: 54-59. https://doi.org/10.1089/jmf.2006.699
  18. Renaud S, de Lorgeril M. 1992. Wine, alcohol, platelets, and the French paradox for coronary heart disease. Lancet 339: 1523-1526. https://doi.org/10.1016/0140-6736(92)91277-F
  19. Formica JV, Regelson W. 1995. Review of biology of quercetin and related bioflavonoids. Food Chem Toxicol 33: 1061-1080. https://doi.org/10.1016/0278-6915(95)00077-1
  20. Hseu YC, Chang WC, Hseu YT, Lee CY, Yech YJ, Chen PC, Chen JY, Yang HL. 2002. Protection of oxidative damage by aqueous extract from Antrodia camphorata mycelia in normal human erythrocytes. Life Sci 71: 469-482. https://doi.org/10.1016/S0024-3205(02)01686-7
  21. Friedewald WT, Levy RI, Fredrickson DS. 1972. Estimation of the concentration of low-density lipoprotein cholesterol in plasma, without use of the preparative ultracentrifuge. Clin Chem 18: 499-502.
  22. Lockyer S, Kambayashi J. 1999. Demonstration of flow and platelet dependency in a ferric chloride-induced model of thrombosis. J Cardiovasc Pharmacol 33: 718-725. https://doi.org/10.1097/00005344-199905000-00007
  23. Wang X, Cheng Q, Xu L, Feuerstein GZ, Hsu MY, Smith PL, Seiffert DA, Schumacher WA, Ogletree ML, Gailani D. 2005. Effects of factor IX or factor XI deficiency on ferric chloride-induced carotid artery occlusion in mice. J Thromb Haemost 3: 695-702. https://doi.org/10.1111/j.1538-7836.2005.01236.x
  24. Chu LM, Robich MP, Lassaletta AD, Feng J, Laham RJ, Burgess T, Clements RT, Sellke FW. 2011. Resveratrol supplementation abrogates pro-arteriogenic effects of intramyocardial vascular endothelial growth factor in a hypercholesterolemic swine model of chronic ischemia. Surgery 150: 390-399. https://doi.org/10.1016/j.surg.2011.06.009
  25. Kennedy DO, Wightman EL, Reay JL, Lietz G, Okello EJ, Wilde A, Haskell CF. 2010. Effects of resveratrol on cerebral blood flow variables and cognitive performance in humans: a double-blind, placebo-controlled, crossover investigation. Am J Clin Nutr 91: 1590-1597. https://doi.org/10.3945/ajcn.2009.28641
  26. Mancini M, Rubba P. 2000. Ischemic cardiopathy: risk factors and their biological role. Ital Heart J 2: 17-22.

Cited by

  1. Effects of Hibiscus syriacus Extracts on Antioxidant Activities and Blood Circulation Improvement vol.26, pp.12, 2016, https://doi.org/10.5352/JLS.2016.26.12.1415
  2. Antioxidant, anti-inflammatory, and anti-pruritic effects of grape branch extract vol.48, pp.6, 2016, https://doi.org/10.9721/KJFST.2016.48.6.590
  3. 염화제2철이 유도하는 경동맥 손상 렛트 모델에서 상엽 추출물의 혈행개선 효과 vol.28, pp.6, 2013, https://doi.org/10.17208/kjopp.2014.12.28.6.607
  4. 고지방식이로 유도된 비만 C57BL/6 쥐에서 발효 무궁화 추출물의 항산화 활성 vol.27, pp.7, 2017, https://doi.org/10.5352/jls.2017.27.7.790
  5. 마치현 부위별 에탄올 추출물의 항산화 활성 vol.34, pp.1, 2019, https://doi.org/10.6116/kjh.2019.34.1.59