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4-甲基-2,2-二氧代-1H-2λ⁶,1-苯并噻嗪-3-羧酸。制备、结构及生物学性质的特点

4-Methyl-2,2-dioxo-1H-2λ⁶,1-benzothiazine-3-carboxylic Acid. Peculiarities of Preparation, Structure, and Biological Properties.

作者信息

Ukrainets Igor V, Hamza Ganna M, Burian Anna A, Shishkina Svitlana V, Voloshchuk Natali I, Malchenko Oxana V

机构信息

Department of Pharmaceutical Chemistry, National University of Pharmacy, 53 Pushkinska st., 61002 Kharkiv, Ukraine.

STC "Institute for Single Crystals", National Academy of Sciences of Ukraine, 60 Nauki ave., 61001 Kharkiv, Ukraine.

出版信息

Sci Pharm. 2018 Mar 8;86(1):9. doi: 10.3390/scipharm86010009.

Abstract

In order to determine the regularities of the structure-analgesic activity relationship, the peculiarities of obtaining, the spatial structure, and biological properties of 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine-3-carboxylic acid and some of its derivatives have been studied. Using nuclear magnetic resonance (NMR) spectroscopy and X-ray diffraction analysis, it has been proven that varying the reaction conditions using alkaline hydrolysis of methyl 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine-3-carboxylate makes it possible to successfully synthesize a monohydrate of the target acid, its sodium salt, or 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine. The derivatographic study of the thermal stability of 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine-3-carboxylic acid monohydrate has been carried out; based on this study, the optimal conditions completely eliminating the possibility of unwanted decomposition have been proposed for obtaining its anhydrous form. It has been shown that 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine is easily formed during the decarboxylation of not only 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine-3-carboxylic acid, but also its sodium salt, which is capable of losing СО₂ both in rather soft conditions of boiling in an aqueous solution, and in more rigid conditions of dry heating. The NMR spectra of the compounds synthesized are given; their spatial structure is discussed. To study the biological properties of 4-methyl-2,2-dioxo-1-2λ⁶,1-benzothiazine-3-carboxylic acid and its sodium salt, the experimental model of inflammation caused by subplantar introduction of the carrageenan solution in one of the hind limbs of white rats was used. The anti-inflammatory activity and analgesic effect were assessed by the degree of edema reduction and the ability to affect the pain response compared to the animals of control groups. According to the results of the tests performed, it has been found that after intraperitoneal injection, the substances synthesized demonstrate a moderate anti-inflammatory action and simultaneously increase the pain threshold of the experimental animals very effectively, exceeding Lornoxicam and Diclofenac in a similar dose by their analgesic activity.

摘要

为了确定结构-镇痛活性关系的规律,对4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪-3-羧酸及其一些衍生物的获取特性、空间结构和生物学性质进行了研究。利用核磁共振(NMR)光谱和X射线衍射分析,已证明通过4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪-3-羧酸甲酯的碱性水解改变反应条件,可以成功合成目标酸的一水合物、其钠盐或4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪。对4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪-3-羧酸一水合物的热稳定性进行了衍生色谱研究;基于该研究,提出了完全消除不需要分解可能性的最佳条件以获得其无水形式。已表明4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪不仅在4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪-3-羧酸脱羧过程中容易形成,而且在其钠盐脱羧过程中也容易形成,钠盐在水溶液中温和的沸腾条件下以及在更严格的干热条件下都能够失去CO₂。给出了合成化合物的NMR光谱;讨论了它们的空间结构。为了研究4-甲基-2,2-二氧代-1-2λ⁶,1-苯并噻嗪-3-羧酸及其钠盐的生物学性质,使用了在白色大鼠后肢之一足底注射角叉菜胶溶液引起炎症的实验模型。与对照组动物相比,通过水肿减轻程度和影响疼痛反应的能力评估抗炎活性和镇痛效果。根据所进行测试的结果,发现腹腔注射后,合成的物质表现出适度的抗炎作用,同时非常有效地提高了实验动物的痛阈,在类似剂量下其镇痛活性超过氯诺昔康和双氯芬酸。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/adf0/5874539/43e0c6fd5082/scipharm-86-00009-g001.jpg

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