双氯芬酸钠通过调节促炎因子“肿瘤坏死因子- α和白细胞介素-1”对大鼠胃溃疡的新生物等肠衍生物

Zahra Alnajar
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引用次数: 0

摘要

背景与目的:胃溃疡是危害人类健康的重要疾病。这是胃里疼痛的溃疡。它相对容易治愈,但如果不治疗,可能会导致严重的问题。非甾体抗炎药(NSAIDs)被开具给全世界数百万人;然而,由于其后果,大多数人患有胃溃疡和相关并发症。双氯芬酸钠是一种非甾体抗炎药类药物,用于缓解关节炎引起的关节疼痛,但如果长期使用,可能会导致胃或肠道出血和溃疡。本研究旨在测试一种新的双氯芬酸钠生物等构衍生物在大鼠模型上的安全性和抗溃疡活性。方法:在合成生物等构二芳醚3a-e后,以2-库玛拉酮1为原料制备丙酰胺2a-e;然后根据IR、1HNMR和质谱数据对其纯度进行了表征。为保证其安全性,对白化病小鼠进行了急性毒性试验,并建立了实验性大鼠模型来评价其抗溃疡活性。测量肾脏和肝脏功能,报告溃疡测量,检测促炎细胞因子肿瘤坏死因子α (TNFα)和白细胞介素1β (IL-1β)水平。结果:与双氯芬酸钠不同,生物等容二芳醚3a-e的酸性较小,对胃壁的损伤较小。此外,酰胺衍生物的结构也较大,对环氧合酶ΙΙ酶的选择性更强,导致胃溃疡的风险小于双氯芬酸钠本身。结论:与双氯芬酸不同,双氯芬酸酰胺衍生物的酸性比双氯芬酸小,对胃壁的损伤较小。
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New bioisosteric derivative of diclofenac sodium resolute gastric ulcer in rats through regulation of pro-inflammatory cytokines “Tumor necrosis factor alpha and Inter-leukin-1”
Background and objective: Gastric ulcer is an important health risk for a human. It is a painful sore in the stomach lining. It is relatively easy to cure, but can cause significant problems if left un-treated. Non-steroidal anti-inflammatory drugs (NSAIDs) are prescribed for millions of people worldwide; however, as their consequences most of individuals suffer from gastric ulcers and related complications. Diclofenac sodium is a medication from NSAIDs class of drugs, is used to relieve joint pain from arthritis but when used chronically, it may cause bleeding and ulcers in the stomach or intestine. This study aimed to test the safety and the antiulcer activity of a new bioisosteric derivative of diclofenac sodium on a rat model. Methods: 2-Cumaranone 1 had been utilized to prepare the propanamides 2a-e then after the bioisosteric diaryl ethers 3a-e synthesized; then its purity was characterized on the basis of IR, 1HNMR and Mass spectral data. Acute toxicity on albino mice was performed to ensure the safety and an experimental rat model was used to evaluate the anti-ulcer activity. Kidney and liver functions tests were measured, ulcer measurements were reported and pro-inflammatory cytokines tumor necrosis factor alpha (TNFα) and Interleukin 1 beta (IL-1β) levels were tested. Results: Unlike diclofenac sodium, the bioisosteric diaryl ethers 3a-e is less acidic and produces less damage to the stomach wall. In addition, the structure of amide derivative is also bulky thus it is more selective to cyclooxygenase ΙΙ enzyme thus the risk of gastric ulcer was less than with diclofenac sodium itself. Conclusion: Unlike diclofenac, amide derivative of diclofenac is less acidic than diclofenac thus it produces less damage to the stomach wall.
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