Abstract

The study was aimed to evaluate the potential of Consciousness Energy Healing based vitamin D<sub>3</sub> and DMEM medium on bone health. The test items, were divided into two parts. One part of each sample received the Consciousness Energy Healing Treatment by Gary Richard Gerber and those samples were labeled as the Biofield Energy Treated (BT) samples, while the other parts of each sample were denoted as the untreated test items (UT). ALP, collagen, and bone mineralization activities were performed to assess bone health in human bone osteosarcoma cells (MG-63). The cell viability assay (MTT) data showed that the test samples were found as safe in all the tested concentrations. The level of ALP was significantly increased by 74.54% and 98.26% in the UT-DMEM + BT-Test item and BT-DMEM + UT-Test item groups, respectively at 10 µg/mL compared to the UT-DMEM + UT-Test item group. Further, the ALP level was significantly elevated by 111.17% in the BT-DMEM + BT-Test item group at 100 µg/mL compared to the UT-DMEM + UT-Test item group. Collagen was significantly increased by 147.46%, 59.67%, and 35.36% in the UT-DMEM + BT-Test item group at 1, 10, and 50 µg/mL, respectively compared to the untreated group. Moreover, the level of collagen was significantly increased by 89.88%, 86.42%, and 82.08% in the UT-DMEM + BT-Test item, BT-DMEM + UT-Test item, and BT-DMEM + BT-Test item groups, respectively at 50 µg/mL with respect to the untreated group. Further, the collagen level was significantly increased by 365.76%, 80.10%, and 76.09% in the BT-DMEM + BT-Test item group at 0.1, 10, and 50 µg/mL compared to the untreated group. Besides, the percent of bone mineralization was distinctly increased by 59.30%, 30.69%, and 177.7% in the UT-DMEM + BT-Test item, BT-DMEM + UT-Test item, and BT-DMEM + BT-Test item groups, respectively at 50 µg/mL compared to the untreated group. The percent of bone mineralization was distinctly increased by 29.44%, and 45.51% in the BT-DMEM + UT-Test item and BT-DMEM + BT-Test item groups, respectively at 100 µg/mL compared to the untreated group. Overall, the Biofield Energy Treated vitamin D<sub>3</sub> was remarkably improved the bone health parameters and help to combat vitamin D<sub>3</sub> deficiency and fight against various bone related problems including low bone density, osteoporosis, osteogenesis imperfecta, Paget’s disease of bone, rickets, osteomalacia, bone and joint pain, bone fractures, deformed bones, osteoma, chondrodystrophia fetalis, autoimmune and inflammatory diseases, stress management and prevention, and anti-aging by improving overall health.

Highlights

  • Vitamin D has multiple effects, which regulate the functions in different organs viz. brain, liver, lungs, heart, kidneys, skeletal, immune and reproductive systems

  • The level of alkaline phosphatase (ALP) was increased by 74.54% and 98.26% in the UTDMEM + Biofield Energy Treated (BT)-Test item and BT-Dulbecco's modified eagle's medium (DMEM) + untreated test items (UT)-Test item group, at the concentration of 10 μg/mL compared to the UTDMEM + UT-Test item group

  • The level of ALP was significant increased by 4.48% and 111.17% in the UTDMEM + BT-Test item and BT-DMEM + BT-Test item groups, respectively at 100 μg/mL compared to the UTDMEM + UT-Test item group

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Summary

Introduction

Vitamin D has multiple effects, which regulate the functions in different organs viz. brain, liver, lungs, heart, kidneys, skeletal, immune and reproductive systems. Brain, liver, lungs, heart, kidneys, skeletal, immune and reproductive systems It has significant anti-inflammatory, anti-aging, Biochemistry and Molecular Biology 2018; 3(1): 36-44 anti-stress, anti-arthritic, anti-osteoporosis, anti-apoptotic, wound healing, anti-cancer, anti-psychotic and anti-fibrotic actions [1]. Vitamin D plays an important role in maintaining a healthy skeletal structure and is essential for bone health. It is synthesized in the presence of sunlight in the skin [2]. Hormonal factors and rapid bone loss in post-menopausal women leads to an increased risk of fractures [6]. The mechanical properties of the bones become impaired and the bones get fragile, that causes various clinical disorders associated with bone collagen abnormalities and bone fragility, such as osteogenesis imperfecta and osteoporosis [10, 11]

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