Several types of botanical products containing isoflavones are being marked as an alternative to estrogen replacement therapy to prevent osteoporosis in postmenopausal women. The efficacy of these products is unknown. Estrogen suppresses bone resorption and may increase calcium absorption. Similar mechanisms of action are not understand for isoflavones partially because of methodological limitations in measuring bone resorption.
The specific aims of this proposal are: 1. To identify the effective dose of soy protein isolate enriched with isoflavone concentrates on suppressing bone resorption, and 2. To establish the effective dose of isoflavone concentrates with different isoflavone profiles from soy cotyledon and germ, red clover leaf and flow extract, kudzu, and individual isoflavones on suppressing bone resorption. We hypothesize, based on our preliminary data, that isoflavones will not affect calcium absorption but will suppress bone resorption. We will use 41 Ca, a long- lived isotope, to label the skeleton and monitor perturbations by diet and an Accelerator Mass Spectrometry facility. This innovative approach to study bone resorption is free from noise and is a direct measure of bone resorption in contract to biochemical markers of bone turnover and traditional calcium kinetics, rapid compared to studying changes in bone density, and not invasive as is bone histomorphometry. We will be able to systematically determine the effect of various types and dosages of isoflavone-containing botanical products sequentially in the same post- menopausal women for their effectiveness in suppressing bone resorption by measuring changes in 41 Ca excretion in the urine.

Agency
National Institute of Health (NIH)
Institute
National Center for Complementary & Alternative Medicine (NCCAM)
Type
Specialized Center (P50)
Project #
1P50AT000477-01
Application #
6383890
Study Section
Special Emphasis Panel (ZAT1-C (06))
Project Start
2000-09-30
Project End
2005-07-31
Budget Start
2000-09-30
Budget End
2001-07-31
Support Year
1
Fiscal Year
2000
Total Cost
$153,872
Indirect Cost
Name
Purdue University
Department
Type
DUNS #
072051394
City
West Lafayette
State
IN
Country
United States
Zip Code
47907
Barnes, Stephen; Quinlan, Roy A (2017) Small molecules, both dietary and endogenous, influence the onset of lens cataracts. Exp Eye Res 156:87-94
Jacobi, Jennifer L; Yang, Bo; Li, Xu et al. (2016) Impacts on Sirtuin Function and Bioavailability of the Dietary Bioactive Compound Dihydrocoumarin. PLoS One 11:e0149207
Jackson, George S; Muzikar, Paul; Goehring, Brent (2015) A Bayesian approach to an interlaboratory comparison. Chemometr Intell Lab Syst 141:94-99
Pawlowski, Jessica W; Martin, Berdine R; McCabe, George P et al. (2015) Impact of equol-producing capacity and soy-isoflavone profiles of supplements on bone calcium retention in postmenopausal women: a randomized crossover trial. Am J Clin Nutr 102:695-703
Roysommuti, Sanya; Kritsongsakchai, Angkana; Wyss, J Michael (2015) The Effect of Perinatal Taurine on Adult Renal Function Does Not Appear to Be Mediated by Taurine's Inhibition of the Renin-Angiotensin System. Adv Exp Med Biol 803:665-77
Pawlowski, Jessica W; Martin, Berdine R; McCabe, George P et al. (2014) Plum and soy aglycon extracts superior at increasing bone calcium retention in ovariectomized Sprague Dawley rats. J Agric Food Chem 62:6108-17
Virk-Baker, Mandeep K; Barnes, Stephen; Krontiras, Helen et al. (2014) S-(-)equol producing status not associated with breast cancer risk among low isoflavone-consuming US postmenopausal women undergoing a physician-recommended breast biopsy. Nutr Res 34:116-25
Carlson, Scott; Prasain, Jeevan K; Peng, Ning et al. (2014) Acute and Chronic Kudzu Improves Plasma Glucose Tolerance in Non-Diabetic CD-1 Mice. J Endocrinol Diabetes Mellit 2:70-77
Legette, LeeCole L; Prasain, Jeevan; King, Jennifer et al. (2014) Pharmacokinetics of equol, a soy isoflavone metabolite, changes with the form of equol (dietary versus intestinal production) in ovariectomized rats. J Agric Food Chem 62:1294-300
Theis, Whitney S; Andringa, Kelly K; Millender-Swain, Telisha et al. (2014) Ozone inhalation modifies the rat liver proteome. Redox Biol 2:52-60

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