The Experts below are selected from a list of 15 Experts worldwide ranked by ideXlab platform

H E Sauberlich - One of the best experts on this subject based on the ideXlab platform.

  • Vitamin B-6 depletion followed by repletion with animal- or Plant-Source diets and calcium and magnesium metabolism in young women.
    The American Journal of Clinical Nutrition, 1992
    Co-Authors: J R Turnlund, A A Betschart, M Liebman, M J Kretsch, H E Sauberlich
    Abstract:

    : An 84-98-d study was conducted in young women to determine the effect of vitamin B-6-deficient diets on calcium and magnesium metabolism. A vitamin B-6-deficient formula diet fed initially was followed by either animal- or Plant-Source Protein food diets containing four increasing amounts of vitamin B-6. Calcium balance was negative during vitamin B-6 depletion. Serum calcium was higher and calcium balance negative with the Plant Protein diets. Magnesium balance was negative during vitamin B-6 depletion due to increased urinary magnesium excretion. Urinary calcium decreased during vitamin B-6 depletion and increased as dietary vitamin B-6 increased. Urinary oxalate was significantly higher at the end than at the beginning of vitamin B-6 depletion and was higher with Plant than animal Protein diets. The results suggest that vitamin B-6 depletion may alter calcium and magnesium metabolism and that dietary components associated with the Protein Source may influence calcium retention.

J R Turnlund - One of the best experts on this subject based on the ideXlab platform.

  • Vitamin B-6 depletion followed by repletion with animal- or Plant-Source diets and calcium and magnesium metabolism in young women.
    The American Journal of Clinical Nutrition, 1992
    Co-Authors: J R Turnlund, A A Betschart, M Liebman, M J Kretsch, H E Sauberlich
    Abstract:

    : An 84-98-d study was conducted in young women to determine the effect of vitamin B-6-deficient diets on calcium and magnesium metabolism. A vitamin B-6-deficient formula diet fed initially was followed by either animal- or Plant-Source Protein food diets containing four increasing amounts of vitamin B-6. Calcium balance was negative during vitamin B-6 depletion. Serum calcium was higher and calcium balance negative with the Plant Protein diets. Magnesium balance was negative during vitamin B-6 depletion due to increased urinary magnesium excretion. Urinary calcium decreased during vitamin B-6 depletion and increased as dietary vitamin B-6 increased. Urinary oxalate was significantly higher at the end than at the beginning of vitamin B-6 depletion and was higher with Plant than animal Protein diets. The results suggest that vitamin B-6 depletion may alter calcium and magnesium metabolism and that dietary components associated with the Protein Source may influence calcium retention.

M J Kretsch - One of the best experts on this subject based on the ideXlab platform.

  • Vitamin B-6 depletion followed by repletion with animal- or Plant-Source diets and calcium and magnesium metabolism in young women.
    The American Journal of Clinical Nutrition, 1992
    Co-Authors: J R Turnlund, A A Betschart, M Liebman, M J Kretsch, H E Sauberlich
    Abstract:

    : An 84-98-d study was conducted in young women to determine the effect of vitamin B-6-deficient diets on calcium and magnesium metabolism. A vitamin B-6-deficient formula diet fed initially was followed by either animal- or Plant-Source Protein food diets containing four increasing amounts of vitamin B-6. Calcium balance was negative during vitamin B-6 depletion. Serum calcium was higher and calcium balance negative with the Plant Protein diets. Magnesium balance was negative during vitamin B-6 depletion due to increased urinary magnesium excretion. Urinary calcium decreased during vitamin B-6 depletion and increased as dietary vitamin B-6 increased. Urinary oxalate was significantly higher at the end than at the beginning of vitamin B-6 depletion and was higher with Plant than animal Protein diets. The results suggest that vitamin B-6 depletion may alter calcium and magnesium metabolism and that dietary components associated with the Protein Source may influence calcium retention.

M Liebman - One of the best experts on this subject based on the ideXlab platform.

  • Vitamin B-6 depletion followed by repletion with animal- or Plant-Source diets and calcium and magnesium metabolism in young women.
    The American Journal of Clinical Nutrition, 1992
    Co-Authors: J R Turnlund, A A Betschart, M Liebman, M J Kretsch, H E Sauberlich
    Abstract:

    : An 84-98-d study was conducted in young women to determine the effect of vitamin B-6-deficient diets on calcium and magnesium metabolism. A vitamin B-6-deficient formula diet fed initially was followed by either animal- or Plant-Source Protein food diets containing four increasing amounts of vitamin B-6. Calcium balance was negative during vitamin B-6 depletion. Serum calcium was higher and calcium balance negative with the Plant Protein diets. Magnesium balance was negative during vitamin B-6 depletion due to increased urinary magnesium excretion. Urinary calcium decreased during vitamin B-6 depletion and increased as dietary vitamin B-6 increased. Urinary oxalate was significantly higher at the end than at the beginning of vitamin B-6 depletion and was higher with Plant than animal Protein diets. The results suggest that vitamin B-6 depletion may alter calcium and magnesium metabolism and that dietary components associated with the Protein Source may influence calcium retention.

A A Betschart - One of the best experts on this subject based on the ideXlab platform.

  • Vitamin B-6 depletion followed by repletion with animal- or Plant-Source diets and calcium and magnesium metabolism in young women.
    The American Journal of Clinical Nutrition, 1992
    Co-Authors: J R Turnlund, A A Betschart, M Liebman, M J Kretsch, H E Sauberlich
    Abstract:

    : An 84-98-d study was conducted in young women to determine the effect of vitamin B-6-deficient diets on calcium and magnesium metabolism. A vitamin B-6-deficient formula diet fed initially was followed by either animal- or Plant-Source Protein food diets containing four increasing amounts of vitamin B-6. Calcium balance was negative during vitamin B-6 depletion. Serum calcium was higher and calcium balance negative with the Plant Protein diets. Magnesium balance was negative during vitamin B-6 depletion due to increased urinary magnesium excretion. Urinary calcium decreased during vitamin B-6 depletion and increased as dietary vitamin B-6 increased. Urinary oxalate was significantly higher at the end than at the beginning of vitamin B-6 depletion and was higher with Plant than animal Protein diets. The results suggest that vitamin B-6 depletion may alter calcium and magnesium metabolism and that dietary components associated with the Protein Source may influence calcium retention.