Pharmacological evaluation and preclinical studies of hypochlorous acid solution

O. Brezvyn, I. Kotsiumbas, O. B. Velichenko, O. Shmychkova, T. Luk'yanenko, D. Girenko, L. Dmitrikova
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Abstract

The article presents materials on the electrochemical synthesis of hypochlorous acid and its pharmacological and toxicological evaluation. In the market of veterinary drugs, special attention has been paid to long-known, potent detoxifying antimicrobial agents based on active oxygen obtained by the electrolysis method. In addition to a broad spectrum of antimicrobial action, such drugs have several other advantages, especially the biogenic nature, which causes the absence of allergic reactions. New electrocatalysts were proposed for the electrochemical synthesis of hypochlorous acid, which was produced according to the following method using a combined electrochemical-pyrolytic method. VT1-0 technical titanium was used as a current collector. The current collectors were subjected to several preliminary preparation steps, such as NaOH degreasing and etching in 6 M HCl. Initial nanotubes were obtained by anodizing Ti foil in ethylene glycol with 0.3 wt.% ammonium fluoride and 2 vol.% water for 4 hours. The electrochemical reduction was carried out in 1 M HClO4 by cathodic polarization for 1 hour. Later, a thin discontinuous layer of platinum or consecutive layers of platinum-palladium were applied to the base by electrodeposition. Nitrite electrolytes for platinization and phosphate-palladation were used for this purpose. Depending on the task, platinum, and palladium on the ground's surface varied from 0.1 to 2.0 mg/cm2. The obtained material was heat-treated in an air atmosphere. At this stage, the surface layers of composites were formed due to the oxidation of the base and encapsulation of platinum and palladium particles in titanium oxide. It was established that the solution of hypochlorous acid, obtained by the electrolysis method, is a low-hazard substance that belongs to the fourth class of toxicity. Its half-lethal dose (DL50) is not determined. The fact that, in nature, hypochlorite acid is formed by granulocytes of neutrophils involved in the last link of phagocytosis confirms that the resulting solution is low-toxic, environmentally safe, and incapable of causing side effects and distant consequences. The obtained results proved the perspective of using new technology for producing hypochlorite acid for veterinary medicine; its development is highly relevant, clinically expedient, and economically justified.
次氯酸溶液的药理评价及临床前研究
本文介绍了电化学合成次氯酸及其药理毒理学评价的研究进展。在兽药市场上,以电解法获得的活性氧为基础的长效解毒抗菌药物受到了特别的关注。除了广泛的抗菌作用外,这类药物还有其他几个优点,特别是生物原性,这导致没有过敏反应。提出了用于电化学合成次氯酸的新型电催化剂,并采用电化学-热解相结合的方法制备了次氯酸。采用VT1-0技术钛作为电流收集器。通过NaOH脱脂和在6 M HCl中蚀刻等几个初步制备步骤,制备了集流器。用0.3 wt.%氟化铵和2 vol.%水在乙二醇中阳极氧化钛箔,得到初始纳米管。在1 M HClO4中进行阴极极化1小时的电化学还原。随后,通过电沉积将一层薄的不连续的铂层或连续的铂-钯层应用于基底。亚硝酸盐电解质用于铂化和磷酸盐钯化。根据任务的不同,地面上的铂和钯含量在0.1到2.0毫克/平方厘米之间变化。得到的材料在空气气氛中进行热处理。在这一阶段,复合材料的表层是由于基体的氧化和铂、钯颗粒在氧化钛中的封装而形成的。确定了电解法制得的次氯酸溶液为低危害物质,属四级毒性物质。其半致死剂量(DL50)尚未确定。事实上,在自然界中,次氯酸是由参与吞噬最后一个环节的中性粒细胞形成的,这证实了所得到的溶液是低毒的,对环境安全的,不会产生副作用和长远后果。研究结果证明了利用新工艺生产兽药用次氯酸的前景;它的发展是高度相关的,临床上是有利的,经济上是合理的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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