Undercarboxylated osteocalcin is positively associated with free testosterone in male patients with type 2 diabetes mellitus
详细信息    查看全文
  • 作者:I. Kanazawa (1)
    K. Tanaka (1)
    N. Ogawa (1)
    M. Yamauchi (1)
    T. Yamaguchi (1)
    T. Sugimoto (1)
  • 关键词:Free testosterone ; HbA1c ; Osteocalcin ; Type 2 diabetes mellitus ; Undercarboxylated osteocalcin
  • 刊名:Osteoporosis International
  • 出版年:2013
  • 出版时间:March 2013
  • 年:2013
  • 卷:24
  • 期:3
  • 页码:1115-1119
  • 全文大小:119KB
  • 参考文献:1. Lee NK, Sowa H, Hinoi E, Ferron M, Ahn JD, Confavreux C, Dacquin R, Mee PJ, McKee MD, Jung DY, Zhang Z, Kim JK, Mauvais-Jarvis F, Ducy P, Karsenty G (2007) Endocrine regulation of energy metabolism by the skeleton. Cell 130:456-69 CrossRef
    2. Fulzele K, Riddle RC, Digirolamo DJ, Cao X, Wan C, Chen D, Faugere MC, Aja S, Hussain MA, Bruning JC, Clemens TL (2010) Insulin receptor signaling in osteoblasts regulates postnatal bone acquisition and body composition. Cell 142:309-19 CrossRef
    3. Kanazawa I, Yamaguchi T, Yamamoto M, Yamauchi M, Kurioka S, Yano S, Sugimoto T (2009) Serum osteocalcin level is associated with glucose metabolism and atherosclerosis parameters in type 2 diabetes mellitus. J Clin Endocrinol Metab 94:45-9 CrossRef
    4. Kanazawa I, Yamaguchi T, Yamauchi M, Yamamoto M, Kurioka S, Yano S, Sugimoto T (2011) Serum undercarboxylated osteocalcin was inversely associated with plasma glucose level and fat mass in type 2 diabetes mellitus. Osteoporos Int 22:187-94 CrossRef
    5. Kanazawa I, Yamaguchi T, Tada Y, Yamauchi M, Yano S, Sugimoto T (2011) Serum osteocalcin level is positively associated with insulin sensitivity and secretion in patients with type 2 diabetes. Bone 48:270-75 CrossRef
    6. Oury F, Sumara G, Sumara O, Ferron M, Chang H, Smith CE, Hermo L, Suarez S, Roth BL, Ducy P, Karsenty G (2011) Endocrine regulation of male fertility by the skeleton. Cell 144:796-09 CrossRef
    7. Pi M, Wu Y, Quarles LD (2011) GPRC6A mediates responses to osteocalcin in β-cells in vitro and pancreas in vivo. J Miner Bone Res 26:1680-683 CrossRef
    8. Corona G, Monami M, Rastrelli G, Aversa A, Sforza A, Lenzi A, Forti G, Mannucci E, Maggi M (2011) Type 2 diabetes mellitus and testosterone: a meta-analysis study. Int J Androl 34:528-40 CrossRef
    9. Lindau ST, Tang H, Gomero A, Vable A, Huang ES, Drum ML, Qato DM, Chin MH (2010) Sexuality among middle-aged and older adults with diagnosed and undiagnosed diabetes: a national, population-based study. Diabetes Care 33:2202-210 CrossRef
    10. Saito M, Fujii K, Mori Y, Marumo K (2006) Role of collagen enzymatic and glycation induced cross-links as a determinant of bone quality in spontaneously diabetic WBN/Kob rats. Osteoporos Int 17:1514-523 CrossRef
    11. Kanazawa I, Yamaguchi T, Yamamoto M, Yamauchi M, Yano S, Sugimoto T (2009) Adiponectin is associated with changes in bone markers during glycemic control in type 2 diabetes mellitus. J Clin Endocrinol Metab 94:3031-037 CrossRef
    12. Seino Y, Nanjo K, Tajima N, Kadowaki T, Kashiwagi A, Araki E, Ito C, Inagaki N, Iwamoto Y, Kasuga M, Hanafusa T, Haneda M, Ueki K, The Committee of the Japan Diabetes Society on the diagnostic criteria of diabetes mellitus (2010) Report of the committee on the classification and diagnostic criteria of diabetes mellitus. Diabetol Int 1:2-0 CrossRef
    13. Kirmani S, Atkinson EJ, Melton LJ 3rd, Riggs BL, Amin S, Khosla S (2011) Relationship of testosterone and osteocalcin levels during growth. J Bone Miner Res 26:2212-216 CrossRef
    14. Avasthi A, Grover S, Bhansali A, Dash RJ, Gupta N, Sharan P, Sharma S (2011) Erectile dysfunction in diabetes mellitus contributes to poor quality of life. Int Rev Phychiatry 23:93-9 CrossRef
    15. Vestergaard P (2007) Discrepancies in bone mineral density and fracture risk in patients with type 1 and type 2 diabetes—a meta-analysis. Osteoporos Int 18:427-44 CrossRef
    16. Yamamoto M, Yamaguchi T, Yamauchi M, Kaji H, Sugimoto T (2009) Diabetic patients have an increased risk of vertebral fractures independent of bone mineral density or diabetic complications. J Bone Miner Res 24:702-09 CrossRef
    17. Botolin S, MacCabe LR (2006) Chronic hyperglycemia modulates osteoblast gene expression through osmotic and non-osmotic pathways. J Cell Biochem 99:411-24 CrossRef
    18. Torrens JI, Skurnick J, Davidow AL, Korenman SG, Santoro N, Soto-Greene M, Lasser N, Weiss G, Study of Women’s Health Across the Nation (SWAN) (2004) Ethnic differences in insulin sensitivity and beta-cell function in premenopausal or early perimenopausal women without diabetes: the Study of Women's Health Across the Nation (SWAN). Diabetes Care 27:354-61 CrossRef
  • 作者单位:I. Kanazawa (1)
    K. Tanaka (1)
    N. Ogawa (1)
    M. Yamauchi (1)
    T. Yamaguchi (1)
    T. Sugimoto (1)

    1. Department of Internal Medicine 1, Shimane University Faculty of Medicine, 89-1 Enya-cho, Izumo, Shimane, 693 8501, Japan
  • ISSN:1433-2965
文摘
Summary Although a recent study showed that undercarboxylated osteocalcin (ucOC) is important for male fertility and testosterone production by testes, little is known about the relationship between ucOC and testosterone in humans. We found for the first time that ucOC is positively associated with free testosterone in men with type 2 diabetes. Introduction The ucOC has been shown to play a key role in energy metabolism as an endocrine hormone. Although a recent animal study demonstrated that ucOC is also important for male fertility and testosterone production by the testes, association between serum osteocalcin and testosterone levels has not been understood in humans. Methods Sixty-nine male patients with type 2 diabetes were recruited and chemical bone markers [total osteocalcin (TOC), ucOC, bone-specific alkaline phosphatase (BAP), and urinary N-terminal cross-linked telopeptide of type I collagen (uNTX)], gonadotropic hormones [luteinizing hormone (LH) and follicle-stimulating hormone (FSH)], and free testosterone (FT) were measured. Results Multiple regression analysis showed that ucOC and ucOC/TOC ratio were associated positively with FT and negatively with LH (for ucOC, β--.30, p--.042 and β-??0.52, p--.048; for ucOC/TOC ratio, β--.31, p--.031 and β-??0.54, p--.036, respectively) independently of age, duration of diabetes, body mass index, and hemoglobin A1c. ucOC and ucOC/TOC ratio were significantly associated with FT even after adjusting for LH and FSH (β--.24, p--.042 and β--.25, p--.031, respectively). However, neither TOC, BAP, nor uNTX was associated with the gonadotropic hormones or FT levels. Conclusions The present study indicates for the first time that ucOC is associated positively with FT and negatively with LH in type 2 diabetes. These findings support the recent evidence that ucOC is involved in testosterone production in male subjects.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700