Rad Iman, Jalali Kamran
Stem Cell Technology Research Center , Tehran, Iran .
J Altern Complement Med. 2018 May;24(5):431-438. doi: 10.1089/acm.2017.0280. Epub 2018 Jan 3.
The aim of this study was to assess the possibility of transmitting the "ampicillin" growth inhibitory property to pure sterile water.
Three control groups were designed as references of bacterial maximal growth (MG). Different concentrations of ampicillin and pure sterile water used as "positive" and "negative" controls, respectively, and the bacterial cultures supplemented with water that merely exposed to the background carrier waves were set as "sham control."
The electronic characteristic of the ampicillin solution relayed to the water and then it was added to the bacterial culture medium. By this treatment, water received both the carrier wave and ampicillin electronic properties at 1-10 Hz range.
When the MG of the "treated water" and "positive control" dilutions is getting normalized against either sham or negative control, the treated water competently imitates ampicillin in a way that there is no significant difference with the positive control. These results will be affected to some extent by the time of electronic transmission and the inoculation concentration of bacterial culture. Comparison of electromagnetic signal patterns of "treated water" with the "positive control" shows that they are more similar to each other rather than negative control.
It is believed that the extremely low frequencies can facilitate electronic transmission of ampicillin supramolecular chemistry into water. Imprinting such a property in water could be the result of durable structural configuration in treated water.
本研究旨在评估将“氨苄西林”的生长抑制特性传递至纯无菌水中的可能性。
设计三个对照组作为细菌最大生长量(MG)的参考。分别使用不同浓度的氨苄西林和纯无菌水作为“阳性”和“阴性”对照,并将仅暴露于背景载波的补充水的细菌培养物设为“假对照”。
氨苄西林溶液的电子特性传递至水中,然后将其添加到细菌培养基中。通过这种处理,水在1 - 10赫兹范围内同时获得了载波和氨苄西林的电子特性。
当将“处理过的水”和“阳性对照”稀释液的MG相对于假对照或阴性对照进行归一化处理时,处理过的水能够有效地模仿氨苄西林,与阳性对照无显著差异。这些结果将在一定程度上受到电子传输时间和细菌培养接种浓度的影响。“处理过的水”与“阳性对照”的电磁信号模式比较表明,它们彼此之间比与阴性对照更相似。
据信极低频能够促进氨苄西林超分子化学的电子特性传递至水中。在水中印记这种特性可能是处理过的水中持久结构构型的结果。