DOI QR코드

DOI QR Code

Effect of Isoflavone Supplementation on Bone Metabolism in Ovariectomized Rats at Different Ages

이소플라본 보충이 다른 나이에 난소를 절제한 흰쥐의 골대사에 미치는 영향

  • Byun, Jae-Soon (Dept. of Food and Nutrition, Chungang University) ;
  • Rho, Sook-Nyung (Dept. of Food and Nutrition, Chungang University) ;
  • Park, Jong-Seong (Laboratory Animal Research Center, Samsung Biomedical Research Institute) ;
  • Park, Hyoung-Moo (Dept. of Obstetrics & Gynecology, Yongsan Hospital College of Medicine, Chungang University)
  • 변재순 (중앙대학교 식품영양학과) ;
  • 노숙령 (중앙대학교 식품영양학과) ;
  • 박종성 (삼성생명과학연구소 실험동물연구센터) ;
  • 박형무 (중앙대학교 의과대학 용산병원 산부인과)
  • Published : 2005.11.01

Abstract

Osteoporosis that is associated with estrogen deficiency in menopause is by far the most common cause of age-related bone loss. Since isoflavone had been reported as a natural substance that minimizes bone loss, we have begun this study to examine the effect of the substance on bone metabolism in ovariectomized rats. Five week-old (n=22) and 25 week-old (n=22) Sprage-Dawley female rats were classified into young (Y) and adult (A) groups. Each group consisted of three subgroups : sham operated group (SH), ovariectomized group (OVX), and isoflavone supplemented group (OVX+ISO 80 mg/kg B.W.). They were fed chow for 9 weeks. The result showed that body weight gain was increased in YOVX in comparison to YSH group, (p<0.05) serum osteocalcin concentration and urinal deoxypyridinoline (DPD) excretion had significantly increased in YOVX more than in YSH group, and significantly decrease in OVX+ISO than in YOVX group (p<0.05). We concluded that soy isoflavones may decrease bone turnover in young rats. However, isoflavone supplement didn't show significant influence on bone metabolism of adult rats.

대두 이소플라본의 보충이 어린 쥐와 성숙기 쥐의 골대사에 미치는 영향을 알아보기 위하여 각각 5주령, 25주령 암컷 쥐를 대상으로 난소를 절제하지 않은 군(SH), 난소를 절제한 군(OVX), 난소를 절제하고 이소플라본 80 mg/kg b.w.을 보충시킨 군(OVX+ISO)으로 각각 분류하고 9주 동안 실험식이를 제공한 후 골대사에 미치는 일반지표 및 생화학적지표를 비교 분석하였으며 그 결과는 다음과 같다. 어린 쥐의 체중 증가량은 난소를 절제하지 않은 군($142.6\pm23.86$)에 비해 난소 절제군($174.8\pm15.36$)에서 유의성(P<0.05) 있게 증가되었고, 난소절제군에 비해 이소플라본 보충군($159.6\pm9.93$)은 다소 감소되었다. 어린 쥐에서 혈청 osteocalcin 농도는 난소를 절제하지 않은 군($24.44\pm4.6$)에 비해 난소절제군($33.27\pm6.7$)에서 유의성 (p<0.05)있게 증가되었고, 난소절제군에 비 해 이소플라본 보충군($25.45\pm5.6$)은 유의성 (p<0.05)있게 감소되었다. 어린 쥐에서 뇨중 crosslinks value농도는 난소를 절제하지 않은 군($154.78\pm14.89$)에 비해 난소절제군 ($203.43\pm20.60$)에서 유의성 (p<0.05)있게 증가되었고, 난소절제군에 비해 이소플라본 보충군($169.43\pm20.69$)은 유의성(p<0.05)있게 감소하여, 난소를 절제하지 않은 군과 유사한 수준으로 나타났다. 어린 쥐에서 혈청 인의 농도는 난소를 절제하지 않은 군($5.46\pm0.98$)에 비해 난소절제군($5.73\pm0.44$), 이소플라본 보충군($6.87\pm1.17$)에서 유의성(p<0.05)있게 증가되었고, 혈중 칼슘농도와 뇨중 칼슘, 인의 배설량은 각 군간 유의적인 차이가 나타나지 않았다. 성숙기 쥐는 혈중 칼슘과 인의 농도, 뇨중 칼슘과 인의 배설량에서 각 군 간 유의적인 차이가 나타나지 않았다. 어린 쥐와 성숙기 쥐에서 대퇴골 골밀도는 난소절제, 이소플라본 보충 유무에 따른 각군간의 유의적인 차이가 나타나지 않았으나, 성숙기 쥐는 난소를 절제하지 않은 군($0.2010\pm0.0013$)에 비해 난소절제군($0.1853\pm0.0012$)은 감소되었고, 난소절제군에 비해 이소플라본 보충군($0.1980\pm0.0014$)은 증가하는 경향을 나타냈다. 이상의 결과를 종합해 보면 어린 쥐에서 난소절제에 의한 에스트로겐 결핍은 골대사에 영향을 주었고, 대두 이소플라본 보충은 골대사 지표인 혈중 osteocalcin과 뇨중 crosslink value 함량을 유의적으로 감소시켜 골흡수를 억제하는 것으로 나타냈다. 따라서 이소플라본 섭취가 어린 쥐의 골대사에 긍정적인 효과는 확인할 수 있었으나, 성숙기 쥐의 골대사지표에는 직접적인 영향을 나타내지 않았다.

Keywords

References

  1. National Statistical Office. 2001. Life table
  2. Weed SS. 1992. New menopausal years, the wise woman way: alternative approaches for women 30-90. Ash Tree Publishing, Woodstock, NY, USA. p 1-6
  3. The Korean society of bone metabolism. 1997. Osteoporosis. Seoul, Korea
  4. Riggs BL, Melton LJIII. 1983. Evidence for two distinct syndromes of involutional osteoporosis. Am J Med 75: 899-901 https://doi.org/10.1016/0002-9343(83)90860-4
  5. Mazess RB. 1983. Bone density in diagnosia of osteoporosis: Threshold and breakpoints. Calcif Tissue Int 41: 117-118 https://doi.org/10.1007/BF02563789
  6. Lim SG. 1993. Medical treatment of osteoporosis. Korean J Nutr 26: 213-219
  7. Wrick KL. 2003. The US soy market: An update & outlook. Nutraceuticals World. Jan/Feb. http://www.nutraceuticalsworld.com/JanFeb031.htm
  8. Arjmandi BH. 2001. The role of phytoestrogens in the prevention and treatment of osteoporosis in ovarian hormone deficiency. J Am Coll Nutr 20: 398-402 https://doi.org/10.1080/07315724.2001.10719175
  9. Kurzer MS, Xu X. 1997. Dietary phtoestrogens. Annu Rev Nutr 17: 353-381 https://doi.org/10.1146/annurev.nutr.17.1.353
  10. Setchell KD. 2000. Absorption and metabolism of soy isoflavones from food to dietary supplements and adults to infants. J Nutr 130: 654S-655S https://doi.org/10.1093/jn/130.3.654S
  11. Picherit C, Coxam V, Bennetau-Pelissero C, Kati-Coulibaly S, Davicco MJ, Lebecque P, Barlet JP. 2000. Daidzein is more efficient than genistein in preventing ovariectomy-induced bone loss in rats. J Nutr 130: 1675-1681
  12. Park YH, Yoon S, Chung SY, Yang SO, Yoo TM, Yang JS, Kwon DJ, 2001. The effect of isoflavone supplementation on bone metabolism in ovariectomizied SD rats. J Korean Soc Food Sci Nutr 30: 657-661
  13. Breitman PL, Fonseca D, Cheung AM, Ward WE. 2003. Isoflavones with supplemental calcium provide greater protection aginst the loss of bone mass and strength after ovariectomy compared to isoflavones alone. Bone 33: 597-605 https://doi.org/10.1016/S8756-3282(03)00243-6
  14. Lee YB, Lee HJ, Kim KS, Lee JY, Nam SY, Cheon SH, Sohn HS. 2004. Evaluation of the preventive effect of isoflavone extract on bone loss in ovariectomized rats. Biosci Biotechnol Biochem 68: 1040-1045 https://doi.org/10.1271/bbb.68.1040
  15. Christel P, Catherine BP, Brigitte C, Patrice L, Marie-Jeanne D, Jean-PierreB, Veronique C. 2001. Soybean isoflavones dose-dependently reduce bone turnover but do not reverse established osteopenia in adult ovariectomized rats. J Nutr 131: 723-728
  16. Dike NK, Chung-ching L, Robert RH, Bruce WH. 1989. The aged rat model of ovarian hormone deficiency bone loss. Endocrinology 124: 7-16 https://doi.org/10.1210/endo-124-1-7
  17. Lee DS, Byun SY. 2001. Effects of the dietary mixture of isoflavone on osteoporosis. Korean J Biotech Bioeng 16: 420-425
  18. Reeves PG, Nielsen FH, Fahey GC Jr. 1993. AIN-93 purified diets for laboratory rodents: final report of the American Institute of Nutrition ad hoc writing committee on the re-formulation of the AIN-76A rodent diet. J Nutr 123: 1939-1951
  19. Yamazaki I, Yamaguchi H. 1989. Characteristics of an ovariectomized osteopenic rat model. J Bone Miner Res 4: 13-22
  20. Wronski L. 1995. Response of femoral neck to estrogen depletion and parathyroid hormone in aged rats. Bone 16: 551-557 https://doi.org/10.1016/8756-3282(95)00077-Q
  21. Cecchettin M, Bellometti S, Cremonesi G, Solimeno LP, Torrim G. 1995. Metabolic and bone effects after administration of ipriflavone and salmon calcitonin in post menopausal osteoporosis. Biomed & Pharmacother 49: 465-468 https://doi.org/10.1016/0753-3322(96)82691-6
  22. Setchell KD, Nechemias LZ, Cai J, Heubi JE. 1998. Isoflavones content of infant formulas and the metabolic rate of these phytoestrogens in early life. Am J Clin Nutr 68: 1453-1461 https://doi.org/10.1093/ajcn/68.6.1453S
  23. Liu G, Peacock M. 1998. Age-related changes in serum undercarboxy-lated osteocalcin and its relationships with bone density, bone quality, and hip fracture. Caicif Tissue Int 62: 286-289 https://doi.org/10.1007/s002239900432
  24. Lee DH, Sung CJ. 2003. Effect of soy isoflavone supplementationon bone metabolism marker and urinary mineral excretion in postmenopausal women. Korean J Nutr 36: 476-482
  25. Morabito N, Crisafulli A, Vergara C, Gaudio A, Lasco A, Frisina N, D' Anna R, Corrado F, Pizzoleo MA, Cincotta M, Altavilla D, Lentile R, Squadrito F. 2002. Effects of genistein and hormone-replacement therapy on bone loss in early postmenopausal women: a randomized double blind placebo-controlled study. J Bone Miner Res 17: 1904-1912 https://doi.org/10.1359/jbmr.2002.17.10.1904
  26. Kleerekoper M. 1996. Biochemical markers of bone remodeling. Am J Med Sci 312: 270-277 https://doi.org/10.1097/00000441-199612000-00005
  27. Uesugi T, Fukui Y, Yamori Y. 2002. Beneficial effects of soybean postmenopausal Japanese women: A four-week study. Original Research 21: 97-102
  28. Deyhim F, Stoecker BJ, Brusewitz GH, Arjmandi BH. 2003. The effects of estrogen depletion and isoflavones on bone metabolism in rats. Nutrition Research 23: 123-130 https://doi.org/10.1016/S0271-5317(02)00477-3
  29. Choi MJ, Cho HJ. 2003. Effects of soy protein and isoflavones on bone mineral density in growing female rats. Korean J Nutr 36: 359-367
  30. Fanti P, Monier-fauagere MC, Geng ZJ, Morris PE, Cohen D. 1988. The phytoestrogen genistein reduce bone loss in short term ovariectomized rats. Osteoporosis Int 8: 274-281 https://doi.org/10.1007/s001980050065
  31. Ishida, Useug T, Hirai K, Toda TK, Nukaya H, Yokotsuka K. 1998. Preventive effect of the plant isoflavone, daizein and genistein on bone loss in ovariectomized rats fed a calcium deficient diet. Biol Pharm Bull 21: 62-66 https://doi.org/10.1248/bpb.21.62
  32. Blair H, Jordan SE, Peterson TG, Barnes S. 1996. Variable effects of tyrosine-kinase inhibitors on avian osteoclastic activity and reduction of bone loss in ovariectomized rats. J Cell Biochem 61: 629-637 https://doi.org/10.1002/(SICI)1097-4644(19960616)61:4<629::AID-JCB17>3.0.CO;2-A
  33. Rice MM, Lacroix AZ, Lampe JW. 2000. Soy consumption and bone mineral density in older Japanese American women in king country, Washington. J Nutr 130: 685
  34. Anderson JJ, Ambrose WW, Garner SC. 1998. Biphasic effects of genistein on bone tissue in the ovariectomized, lactating rat model. Proc Soc Exp Biol Med 217: 345-350

Cited by

  1. Dietary Ungerminated and Germinated Soybean Supplementation Improves Bone Mineralization and Strength in Growing Male Rats vol.13, pp.3, 2010, https://doi.org/10.1089/jmf.2009.1092
  2. The Dietary Effect of Royal Jelly Supplementation on Epidermal Levels of Filaggrin and Free Amino Acids during Menopause in Rats vol.42, pp.3, 2013, https://doi.org/10.3746/jkfn.2013.42.3.389
  3. 난소절제 흰쥐에서 신령버섯의 β-Glucan과 난각 Ca 복합체가 골 대사에 미치는 효과 vol.35, pp.10, 2005, https://doi.org/10.3746/jkfn.2006.35.10.1363
  4. 고콜레스테롤 식이를 섭취한 난소절제 흰쥐에서 녹차가공품이 골 대사 지표에 미치는 효과 vol.37, pp.12, 2008, https://doi.org/10.3746/jkfn.2008.37.12.1560
  5. 골 대사 및 phytochemicals의 estrogen 효과 vol.28, pp.7, 2005, https://doi.org/10.5352/jls.2018.28.7.874