Literature DB >> 6493283

Relative contributions of aging and estrogen deficiency to postmenopausal bone loss.

L S Richelson, H W Wahner, L J Melton, B L Riggs.   

Abstract

Debate continues on whether aging or estrogen deficiency is the more important determinant of postmenopausal bone loss. We compared 14 women who had undergone oophorectomy during young adulthood, 14 normal perimenopausal women, and 14 normal postmenopausal women (mean ages, 54, 52, and 73 years, respectively; mean duration of estrogen deficiency, 22, 0.3, and 22 years, respectively). Bone mineral density was assessed by single-photon and dual-photon absorptiometry. As compared with the perimenopausal group, the other two groups had significantly lower bone mineral density at the midradius, femoral neck, femoral intertrochanteric area, and lumbar spine (-15 per cent, -25 per cent, -16 per cent, and -23 per cent, respectively, in the oophorectomized group and -18 per cent, -28 per cent, -26 per cent, and -23 per cent, respectively, in the postmenopausal group). Because bone loss in the oophorectomized group (differing from the perimenopausal group in menopausal status but not in age) was almost as great as in the postmenopausal group (differing in both characteristics), we suggest that estrogen deficiency, and not aging, may be the predominant cause of bone loss occurring during the first two decades after natural menopause.

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Year:  1984        PMID: 6493283     DOI: 10.1056/NEJM198411153112002

Source DB:  PubMed          Journal:  N Engl J Med        ISSN: 0028-4793            Impact factor:   91.245


  78 in total

Review 1.  Skeletal effects of estrogens.

Authors:  G Fiorelli; M L Brandi
Journal:  J Endocrinol Invest       Date:  1999-09       Impact factor: 4.256

2.  Effect of estrogen deficiency on the fixation of titanium implants in chronic kidney disease mice.

Authors:  S Zhang; Y Guo; H Zou; N Sun; D Zhao; W Liu; Y Dong; G Cheng; Q Yuan
Journal:  Osteoporos Int       Date:  2014-11-01       Impact factor: 4.507

3.  Endogenous sex steroid, GH and IGF-I levels in normal elderly men: relationships with bone mineral density and markers of bone turnover.

Authors:  A Gürlek; O Gedik
Journal:  J Endocrinol Invest       Date:  2001-06       Impact factor: 4.256

4.  Predicting the effects of estrogen replacement therapy on lumbar bone mineral density in oophorectomized women: analysis of a 10-year longitudinal study.

Authors:  Hideaki Nagata; Masahiro Nozaki; Hitoo Nakano
Journal:  Osteoporos Int       Date:  2003-10-08       Impact factor: 4.507

5.  Contributions of chronological age, age at menarche and menopause and of anthropometric parameters to axial and peripheral bone densities.

Authors:  L Vico; B Prallet; D Chappard; B Pallot-Prades; R Pupier; C Alexandre
Journal:  Osteoporos Int       Date:  1992-05       Impact factor: 4.507

6.  The effect of bilateral oophorectomy on bone mineral density.

Authors:  Alper Hayirlioglu; Hüsnü Gökaslan; Nurten Andaç
Journal:  Rheumatol Int       Date:  2006-05-20       Impact factor: 2.631

7.  Velocity of ultrasound at the patella: influence of age, menopause and estrogen replacement therapy.

Authors:  R Lehmann; M Wapniarz; H M Kvasnicka; K Klein; B Allolio
Journal:  Osteoporos Int       Date:  1993-12       Impact factor: 4.507

8.  Consequences and treatment of ovarian failure after total body irradiation for leukaemia.

Authors:  M P Cust; M I Whitehead; R Powles; M Hunter; S Milliken
Journal:  BMJ       Date:  1989-12-16

9.  Attenuation of postmenopausal bone loss in patients with transient hypoparathyroidism after total thyroidectomy.

Authors:  Yuuki Takamura; Akira Miyauchi; Tomonori Yabuta; Minoru Kihara; Yasuhiro Ito; Akihiro Miya
Journal:  World J Surg       Date:  2013-12       Impact factor: 3.352

10.  Bone fractures and incident epithelial ovarian cancer in a prospective cohort study.

Authors:  Kim N Danforth; Catherine Schairer; Arthur Schatzkin; James V Lacey
Journal:  J Womens Health (Larchmt)       Date:  2009-11       Impact factor: 2.681

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