William Dean Plikerd, M. Trivedi, A. Branton, Dahryn Trivedi, G. Nayak, M. Gangwar, S. Jana
{"title":"生物场能量愈合处理维生素D3对人成骨细胞(MG-63)骨健康的影响","authors":"William Dean Plikerd, M. Trivedi, A. Branton, Dahryn Trivedi, G. Nayak, M. Gangwar, S. Jana","doi":"10.11648/J.AJCEM.20180601.11","DOIUrl":null,"url":null,"abstract":"Bone disorders are largely associated with increased morbidity, mortality, and substantial economic and health costs. Vitamin D play an important role for calcium absorption and bone mineralization, which can improve the patients' quality of life. The current study aimed to evaluate the potential of The Trivedi Effect ® - Biofield Energy Healing on vitamin D 3 and DMEM as test item (TI) on bone cell differentiation using human osteoblast cell line (MG-63, Osteosarcoma). Bone health biomarkers such as alkaline phosphatase enzyme (ALP) activity, collagen levels and bone mineralization were evaluated. The test items were treated with The Trivedi Effect ® by William Dean Plikerd and divided as Biofield Energy Treated (BT) and untreated (UT) test items. Cell viability using MTT data showed that the test items were found to be safe. ALP level was significantly increased by 346.4% (at 50 µg/mL), 375.3% (at 100 µg/mL), and 343.2% (at 100 µg/mL) in the UT-DMEM+BT-TI, BT-DMEM+UT-TI, and BT-DMEM+BT-TI groups, respectively as compared to the untreated group. Collagen content was significantly increased by 336.2% and 237.2% in the UT-DMEM+BT-TI at 10 and 50 µg/mL, respectively while 399.3% and 110.2% increased collagen at 10 µg/mL in BT-DMEM+UT-TI and BT-DMEM+BT-TI groups, respectively. Moreover, the percent of bone mineralization was significantly increased in BT-DMEM+BT-TI group by 71.3% and 97.2% at 50 and 100 µg/mL, respectively as compared with the untreated test item and DMEM group. Thus, Biofield Energy Treated vitamin D 3 and DMEM would play an important role to control the osteoblast function, improves bone mineralization, and calcium absorption in many bone disorders. Moreover, the bone health parameters such as collagen, calcium and ALP were significantly improved and can be used as supplement to improve bone health. Based on the outstanding results, it is assumed that the Biofield Energy Treated vitamin D3 could be a powerful alternative dietary sources and supplements to fight against various bone related diseases including low bone density and osteoporosis, osteogenesis imperfecta, Paget’s disease of bone, rickets, osteomalacia, bone and/or joint pain, increased frequency of fractures, deformed bones, osteoma, chondrodystrophia fetalis, hormonal imbalance, stress, aging, bone loss and fractures.","PeriodicalId":404444,"journal":{"name":"American Journal of Clinical and Experimental Medicine","volume":"21 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-01-10","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"3","resultStr":"{\"title\":\"Impact of Biofield Energy Healing Treated Vitamin D3 on Human Osteoblast Cell Line (MG-63) for Bone Health\",\"authors\":\"William Dean Plikerd, M. Trivedi, A. 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引用次数: 3
摘要
骨疾病在很大程度上与发病率、死亡率的增加以及巨大的经济和健康成本有关。维生素D对钙的吸收和骨矿化具有重要作用,可以提高患者的生活质量。本研究旨在评价The Trivedi Effect®- Biofield Energy Healing对人成骨细胞系(MG-63, Osteosarcoma)骨细胞分化的潜力,并将维生素d3和DMEM作为测试项目。评估骨健康生物标志物,如碱性磷酸酶(ALP)活性、胶原蛋白水平和骨矿化。测试项目由William Dean Plikerd使用The Trivedi Effect®进行处理,并分为生物场能量处理(BT)和未处理(UT)测试项目。使用MTT数据的细胞活力显示测试项目是安全的。与未治疗组相比,UT-DMEM+BT-TI、BT-DMEM+UT-TI和BT-DMEM+BT-TI组ALP水平分别显著升高346.4%(50µg/mL)、375.3%(100µg/mL)和343.2%(100µg/mL)。10和50µg/mL时,UT-DMEM+BT-TI组胶原蛋白含量分别显著增加336.2%和237.2%,10µg/mL时,BT-DMEM+UT-TI和BT-DMEM+BT-TI组胶原蛋白含量分别显著增加399.3%和110.2%。此外,在50和100µg/mL浓度下,BT-DMEM+BT-TI组骨矿化率分别比未处理的测试项目和DMEM组显著提高71.3%和97.2%。因此,生物场能量处理的维生素d3和DMEM在控制成骨细胞功能、改善骨矿化和钙吸收等多种骨疾病中发挥重要作用。此外,胶原蛋白、钙、碱性磷酸酶等骨骼健康参数均有显著改善,可作为改善骨骼健康的补充。基于这些突出的结果,我们假设生物场能量处理维生素D3可能是一种强大的替代膳食来源和补充剂,以对抗各种骨骼相关疾病,包括低骨密度和骨质疏松症、成骨不全症、佩吉特骨病、佝偻病、骨软化症、骨和/或关节疼痛、骨折频率增加、骨骼变形、骨瘤、软骨营养不良胎儿、激素失衡、压力、衰老、骨质流失和骨折。
Impact of Biofield Energy Healing Treated Vitamin D3 on Human Osteoblast Cell Line (MG-63) for Bone Health
Bone disorders are largely associated with increased morbidity, mortality, and substantial economic and health costs. Vitamin D play an important role for calcium absorption and bone mineralization, which can improve the patients' quality of life. The current study aimed to evaluate the potential of The Trivedi Effect ® - Biofield Energy Healing on vitamin D 3 and DMEM as test item (TI) on bone cell differentiation using human osteoblast cell line (MG-63, Osteosarcoma). Bone health biomarkers such as alkaline phosphatase enzyme (ALP) activity, collagen levels and bone mineralization were evaluated. The test items were treated with The Trivedi Effect ® by William Dean Plikerd and divided as Biofield Energy Treated (BT) and untreated (UT) test items. Cell viability using MTT data showed that the test items were found to be safe. ALP level was significantly increased by 346.4% (at 50 µg/mL), 375.3% (at 100 µg/mL), and 343.2% (at 100 µg/mL) in the UT-DMEM+BT-TI, BT-DMEM+UT-TI, and BT-DMEM+BT-TI groups, respectively as compared to the untreated group. Collagen content was significantly increased by 336.2% and 237.2% in the UT-DMEM+BT-TI at 10 and 50 µg/mL, respectively while 399.3% and 110.2% increased collagen at 10 µg/mL in BT-DMEM+UT-TI and BT-DMEM+BT-TI groups, respectively. Moreover, the percent of bone mineralization was significantly increased in BT-DMEM+BT-TI group by 71.3% and 97.2% at 50 and 100 µg/mL, respectively as compared with the untreated test item and DMEM group. Thus, Biofield Energy Treated vitamin D 3 and DMEM would play an important role to control the osteoblast function, improves bone mineralization, and calcium absorption in many bone disorders. Moreover, the bone health parameters such as collagen, calcium and ALP were significantly improved and can be used as supplement to improve bone health. Based on the outstanding results, it is assumed that the Biofield Energy Treated vitamin D3 could be a powerful alternative dietary sources and supplements to fight against various bone related diseases including low bone density and osteoporosis, osteogenesis imperfecta, Paget’s disease of bone, rickets, osteomalacia, bone and/or joint pain, increased frequency of fractures, deformed bones, osteoma, chondrodystrophia fetalis, hormonal imbalance, stress, aging, bone loss and fractures.