Complementary and Alternative Medicine: Effect of the Consciousness Energy Healing Treatment on Physicochemical Behaviour of Silver Sulfadiazine

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Current Trends in Internal Medicine, 2(1) (2019) .


Abstract

Silver sulfadiazine is a topical antibiotic used on burnt tissues to prevent infection. The aim of this study was to evaluate the impact of the Trivedi Effect®-Consciousness Energy Healing Treatment on the physicochemical and thermal properties of silver sulfadiazine using PXRD, PSA, DSC, and TGA/DTG analysis. Silver sulfadiazine sample was divided into two parts. One part was considered as a control sample, which did not receive the Biofield Energy Treatment. The second part received the Trivedi Effect®-Consciousness Energy Healing Treatment remotely by a renowned Biofield Energy Healer, Alice Branton, termed as the treated sample. The PXRD analysis exhibited that the peak intensities of the treated silver sulfadiazine were significantly decreased from 14.5% to 54.5% compared with the control sample. The crystallite sizes of the treated sample were significantly altered from -48.9% to 6.4% compared to the control sample. The average crystallite size of the Biofield Energy Treated sample was found to be decreased by 13.99% as compared to the control sample. The particle sizes of the treated silver sulfadiazine were decreased significantly by 6.64% at d10 followed by d50 (-1.37%), d90 (-0.55%) and D(4,3) (-2.44%) compared to the control sample. The specific surface area of treated silver sulfadiazine was increased profoundly 11.23% compared to the control sample. The total weight loss was increased by 10.73%; whereas, the residue amount was decreased by 16.49% in the treated silver sulfadiazine compared with the control sample. Thus, the Trivedi Effect®-Consciousness Energy Healing Treatment might lead to generate a new polymorphic form of silver sulfadiazine which would be more soluble, and bioavailable compared with the untreated sample. The Consciousness Energy Healing Treated silver sulfadiazine would be very useful to design more efficacious pharmaceutical formulations which might offer a better therapeutic response on the derma against bacteria and superficial and partial thickness burn injuries.



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