CYBERMED LIFE - ORGANIC  & NATURAL LIVING

Bone Diseases

  • Bone Diseases

  • Influence of boron supplementation on vertebral and femoral bone mass in rats on strenuous treadmill exercise. A morphometric, densitometric, and histomorphometric study.

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    Abstract Title:

    Influence of boron supplementation on vertebral and femoral bone mass in rats on strenuous treadmill exercise. A morphometric, densitometric, and histomorphometric study.

    Abstract Source:

    J Clin Densitom. 2002 ;5(2):187-92. PMID: 12110762

    Abstract Author(s):

    H Rico, E Crespo, E R Hernández, C Seco, R Crespo

    Article Affiliation:

    H Rico

    Abstract:

    We studied the effect of boron supplement on experimental osteopenia caused by strenuous exercise in 93- d-old female Wistar rats. A control group of 15 rats was not manipulated. The exercise group of 30 rats was divided into 2 groups of 15 rats each, one that was fed a diet supplemented with 50 mg/kg of boron in the form of Na(2)B(4)O(7), and other that, did not receive a boron supplement. The length and weight were determined in the femur and fifth lumbar vertebra and the bone mineral content and density were assessed through densitometry, and trabecular bone volume, trabecular number, trabecular thickness, and trabecular separation with histomorphometry. The femur length and weight, and vertebra weight, and femur and vertebra bone mineral content and density were significantly lower and the trabecular separation was higher in the exercise group than in the others (p<0.005 in all). The femur weight, bone mineral content and density, trabecular bone volume and trabecular thickness, were significantly higher in the exercise plus boron group (p<0.005 to 0.0001). It was concluded that boron preserves bone mass in rats that have been exposed to intense exercise.

  • Probiotics halve bone loss in the elderly

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    Probiotics halve bone loss in the elderly image

    Probiotic supplements halve the rate of bone loss, which can lead to osteoporosis and fractures, two big health worries as we get older, and especially for women after the menopause.

    The supplements populate the gut with 'good' bacteria, and it's yet another example of the way the gut regulates our health. The discovery is a "paradigm shift" in the way we protect our bones, say the researchers.

  • The Roles and Mechanisms of Actions of Vitamin C in Bone: New Developments. 📎

    Abstract Title:

    The Roles and Mechanisms of Actions of Vitamin C in Bone: New Developments.

    Abstract Source:

    J Bone Miner Res. 2015 Sep 11. Epub 2015 Sep 11. PMID: 26358868

    Abstract Author(s):

    Patrick Aghajanian, Susan Hall, Montri D Wongworawat, Subburaman Mohan

    Article Affiliation:

    Patrick Aghajanian

    Abstract:

    Vitamin C is an important antioxidant and cofactor which is involved in the regulation of development, function and maintenance of several cell types in the body. Deficiencies in vitamin C can lead to conditions such as scurvy, which, among other ailments, causes gingivia, bone pain and impaired wound healing. This review examines the functional importance of vitamin C as it relates to the development and maintenance of bone tissues. Analysis of several epidemiological studies and genetic mouse models regarding the effect of vitamin C shows a positive effect on bone health. Overall, vitamin C exerts a positive effect on trabecular bone formation by influencing expression of bone matrix genes in osteoblasts. Recent studies on the molecular pathway for vitamin C actions that include direct effects of vitamin C on transcriptional regulation of target genes by influencing the activity of transcription factors and by epigenetic modification of key genes involved in skeletal development and maintenance are discussed. With an understanding of mechanisms involved in the uptake and metabolism of vitamin C and knowledge of precise molecular pathways for vitamin C actions in bone cells, it is possible that novel therapeutic strategies can be developed or existing therapies can be modified for the treatment of osteoporotic fractures. This article is protected by copyright. All rights reserved.

  • Transferrin enhances the antiproliferative effect of aluminum on osteoblast-like cells.

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    Abstract Title:

    Transferrin enhances the antiproliferative effect of aluminum on osteoblast-like cells.

    Abstract Source:

    Am J Physiol. 1991 Apr ;260(4 Pt 1):E537-43. PMID: 2018119

    Abstract Author(s):

    K Kasai, M T Hori, W G Goodman

    Article Affiliation:

    K Kasai

    Abstract:

    Aluminum (Al) retention in the body can cause metabolic bone disease. This disorder is characterized by reductions in the number of osteoblasts, a feature that suggests a disturbance in bone cell proliferation or differentiation. Because Al as well as iron (Fe) can bind to transferrin (TF) in plasma, the role of TF as a modifier of osteoblast proliferation was examined in UMR-106-01 osteoblast-like cells by measuring the incorporation of tritiated thymidine ([3H]-TdR) into DNA (counts.min-1.microgram cell protein-1, means +/- SE) during 48-h incubations in serum-free medium (SFM). In the absence of TF, DNA synthesis decreased when media levels of Al exceeded 6-10 microM. The mitogenic response to physiological levels of unsaturated TF (apo-TF) was attenuated however during incubations with TF that was partially saturated with Al (Al-TF). A similar inhibitory response was seen in cells incubated with the antiproliferative agent gallium (Ga) when added to SFM as partially saturated Ga-TF. TF produced a shift to the left in the inhibitory dose-response curve to Al in osteoblast-like cells; thus, DNA synthesis decreased at substantially lower media concentrations of Al in cells grown in SFM containing partially saturated Al-TF. The results indicate that TF is an important determinant of the inhibitory effect of Al on DNA synthesis by osteoblast-like cells at the micromolar levels of Al that can occur in plasma in vivo.

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