Effect of Biofield EnergyTreated Vitamin D3 on the Proliferation of Osteoblast-Like MG-63 Human Osteosarcoma Cells in vitro

Journal Title: Journal of Microbiology & Microbial Technology - Year 2018, Vol 2, Issue 1

Abstract

The study objective was to evaluate the effect of Biofield Treated vitamin D3 and DMEM on bone health. The Test Items (TI) were divided into two parts. One part of each sample was received Consciousness Energy Healing Treatment by Janice Patricia Kinney and those amples were labeled as Biofield Energy Treated (BT) samples, while ther parts of each sample were denoted as Untreated Test items (UT). he cell viability showed test samples were found as safe in the tested concentrations. ALP was significantly increased by 212.57% and 134.55% in UT-DMEM + BT-TI and BT-DMEM + BT-TI groups, respectively at 50 µg/ mL, while 242.77% increased in BT-DMEM + UT-TI at 10 µg/mL compared o UT-DMEM + UT-TI group. Collagen was significantly increased by 172.04%, 293.55%, and 248.39% in UT-DMEM + BT-TI, BT-DMEM + UT-TI, and BT-DMEM + BT-TI groups, respectively at 0.1 µg/mL compared to untreated group. Moreover, collagen was significantly increased by 99.25% and 172.93% in UT-DMEM + BT-TI and BT-DMEM + BT-TI groups, respectively at 1µg/mL, while increased by 156.38% and 145.64% in UT-DMEM + BT-TI and BT-DMEM + BT-TI groups, respectively at 10 µg/ mL than untreated group. Besides, percent of bone mineralization was distinctly increased by 198.62%, 111.72%, and 168.28% in UT-DMEM + BTTI, BT-DMEM + UT-TI, and BT-DMEM + BT-TI groups, respectively at 0.1µg/mL compared to untreated group. Overall, Biofield Treated vitamin D3 was remarkably improved the bone health parameters and could bebeneficial against bone-related disorders (osteoporosis, osteomalacia etc.), stress, inflammatory and autoimmune disorders.

Authors and Affiliations

Jana S

Keywords

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  • EP ID EP486958
  • DOI 10.13188/2474-4530.1000010
  • Views 104
  • Downloads 0

How To Cite

Jana S (2018). Effect of Biofield EnergyTreated Vitamin D3 on the Proliferation of Osteoblast-Like MG-63 Human Osteosarcoma Cells in vitro. Journal of Microbiology & Microbial Technology, 2(1), 1-6. https://europub.co.uk./articles/-A-486958