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乙酰水杨酸-磺胺类药物缀合物作为潜在的尿素酶抑制剂和抗炎药物:基于生物导向的药物合成、分子对接和动力学模拟研究。

Acetylsalicylic acid-sulfa drugs conjugates as potential urease inhibitors and anti-inflammatory agents: bio-oriented drug synthesis, molecular docking, and dynamics simulation studies.

机构信息

School of Chemistry, University of the Punjab, Lahore, Pakistan.

Department of Chemistry, Division of Science and Technology, University of Education, Lahore, Pakistan.

出版信息

J Biomol Struct Dyn. 2024 Nov;42(18):9373-9387. doi: 10.1080/07391102.2023.2252083. Epub 2023 Aug 29.

Abstract

To explore the new mode of action and reduce side effects, making conjugates of existing drugs is becoming an attractive tool in the realm of medicinal chemistry. In this work, we exploited this approach and synthesized new conjugates to assess their activities against the enzymes involved in different pathological conditions. Specifically, we design and synthesized conjugates involving acetylsalicylic acid and sulfa drugs, validating the newly crafted conjugates using techniques like IR, HNMR, CNMR, and elemental analysis. These conjugates underwent assessment for their ability to inhibit cyclooxygenase-2 (COX-2), urease enzymes, and their anti-inflammatory potential. A competitive mode of urease inhibition was observed for acetylsalicylic acid conjugated with sulfanilamide, sulfacetamide, and sulfadiazine with IC of 2.49 ± 0.35 µM, 6.21 ± 0.28 µM, and 6.57 ± 0.44 µM, respectively. Remarkably, the acetylsalicylic acid-sulfamethoxazole conjugate exhibited exceptional anti-inflammatory activity, effectively curtailing induced edema by 83.7%, a result akin to the reference anti-inflammatory drug indomethacin's performance (86.8%). Additionally, it demonstrated comparable COX-2 inhibition (75.8%) to the reference selective COX-2 inhibitor celecoxib that exhibited 77.1% inhibition at 10 µM concentration. To deepen our understanding, we employed molecular docking techniques to predict the binding interactions of competitive inhibitors with COX-2 and urease receptors. Additionally, MD simulations were carried out, confirming the stability of inhibitor-target complexes throughout the simulation period, devoid of significant conformational changes. Collectively, our research underscores the potential of coupling approved medicinal compounds to usher in novel categories of pharmacological agents, holding promise for addressing a wide spectrum of pathological disorders involving COX-2 and urease enzymes.Communicated by Ramaswamy H. Sarma.

摘要

为了探索新的作用模式并减少副作用,将现有药物缀合在一起正成为药物化学领域中一种极具吸引力的工具。在这项工作中,我们利用了这种方法合成了新的缀合物,以评估它们对涉及不同病理条件的酶的活性。具体来说,我们设计并合成了涉及乙酰水杨酸和磺胺类药物的缀合物,使用 IR、HNMR、CNMR 和元素分析等技术对新合成的缀合物进行了验证。我们评估了这些缀合物抑制环氧化酶-2(COX-2)、脲酶的能力及其抗炎潜力。观察到乙酰水杨酸与磺胺、磺胺甲恶唑和磺胺嘧啶的缀合物以竞争性模式抑制脲酶,其 IC50 值分别为 2.49 ± 0.35 µM、6.21 ± 0.28 µM 和 6.57 ± 0.44 µM。值得注意的是,乙酰水杨酸-磺胺甲恶唑缀合物表现出卓越的抗炎活性,有效地将诱导的水肿抑制了 83.7%,这一结果与参考抗炎药物吲哚美辛的表现(86.8%)相当。此外,它对 COX-2 的抑制作用与参考选择性 COX-2 抑制剂塞来昔布相当(在 10 µM 浓度下抑制 77.1%)。为了深入了解,我们采用分子对接技术预测竞争性抑制剂与 COX-2 和脲酶受体的结合相互作用。此外,还进行了 MD 模拟,证实抑制剂-靶复合物在整个模拟期间的稳定性,没有明显的构象变化。总的来说,我们的研究强调了将已批准的药物化合物偶联起来引入新型药理学药物的潜力,为解决涉及 COX-2 和脲酶酶的广泛病理疾病提供了希望。通讯作者为 Ramaswamy H. Sarma。

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