超高稀释液中存在原始药物分子

Dr Sanjib Chattopadhyay
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摘要

摘要:背景:一些研究者推测顺势疗法药物的活性是通过改变水分子中的氢键网络实现的,但另一些研究者则认为原始药物分子仍然以纳米颗粒的形式存在。目的通过实验证明超高稀释液中是否存在微量药物分子,并确定其明显原因。材料和方法:用原子吸收分光光度法检测金属铜的 5 个超高稀释度(6c、30c、200c、1000c 和 10000c)中铜离子的存在。为了确定如何在超过阿伏加德罗极限的高度稀释溶液中获得原始分子的踪迹,还进行了一项实验:NSW(非 "琥珀 "水)、SW("琥珀 "水)、SWE(含 50%乙醇的 "琥珀 "水),并用紫外可见分光光度计进行研究。结果:发现铜离子在所有五个稀释液中都呈渐近递减趋势。在第二次实验中观察到,NSW 溶液的光密度(OD)较早达到不可检测(ND)的范围,而 SW 和 SWE 则较晚。结论由于介电常数的下降,"琥珀 "酒精稀释液中出现了某种不均匀性。随着稀释度的增加,更多被溶剂层覆盖的纳米颗粒形式的溶质分子会转移到下一个系列稀释液中。被乙醇紧紧包裹的药物("纳米颗粒")很容易进入细胞内部,给 "验证者 "带来症状,并且在使用微小剂量时也能治愈病人。
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Existence of original drug molecules in ultra high dilutions
Abstract:   Background: Some workers postulated that homeopathic medicines have got some alterations of hydrogen bonded network in water molecules for their activity, but according to others the original drug molecule remains present as nanoparticles. Objective: To prove experimentally whether traces of medicine molecules are present in ultra high dilution and determine its apparent cause. Materials and Methods: To detect existence of Copper ion in 5 ultra high dilutions (6c, 30c, 200c, 1000c and 10000c) in Cuprum metallicum were subjected to Atomic Absorption Spectrophotometry. An experiment was also set up to determine how one can obtain trails of original molecules in highly diluted solutions beyond Avogadro’s limit where a solution of copper sulfate was successively diluted decimally in three different ways: NSW (Non-”Succussed” Water), SW(“Succussed” Water), SWE (“Succussed” Water with 50% ethanol) and was studied by UV-Vis Spectrophotometer. Result: Existence of a Copper ion was found asymptotically decreasing through all the five dilutions. In the second experiment it was observed that in case of NSW solution the Optical Density (OD) reaches to non-detectable (ND) range earlier, but for SW and SWE later. Conclusion: Some sorts of non-homogeneity established in “succussed” alcoholic dilutions due to fall of dielectric constant. With the increase of dilution more proportion of solute molecules in the form of nanoparticles covered by solvent layers become transferred to the next serial dilution. Drugs, tightly packed by ethanol (‘nanoparticles’) easily enter inside cell, bring symptoms to the “provers” and cure patients as well when applied in minute dose.
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