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新型针对 SARS-CoV-2 的香豆素类似物的设计、合成与生物评价。

Design, Synthesis, and Biological Evaluation of Novel Coumarin Analogs Targeted against SARS-CoV-2.

机构信息

Chitkara Institute of Engineering and Technology, Chitkara University, Rajpura 140401, Punjab, India.

Chitkara College of Pharmacy, Chitkara University, Rajpura 140401, Punjab, India.

出版信息

Molecules. 2024 Mar 21;29(6):1406. doi: 10.3390/molecules29061406.

Abstract

SARS-CoV, an RNA virus, is contagious and displays a remarkable degree of adaptability, resulting in intricate disease presentations marked by frequent genetic mutations that can ultimately give rise to drug resistance. Targeting its viral replication cycle could be a potential therapeutic option to counter its viral growth in the human body leading to the severe infectious stage. The M of SARS-CoV-2 is a promising target for therapeutic development as it is crucial for viral transcription and replication. The derivatives of β-diketone and coumarin have already been reported for their antiviral potential and, thus, are considered as a potential scaffold in the current study for the computational design of potential analogs for targeting the viral replication of SARS-CoV-2. In our study, we used novel diketone-hinged coumarin derivatives against the SARS-CoV-2 M to develop a broad-spectrum antiviral agent targeting SARS-CoV-2. Through an analysis of pharmacokinetics and docking studies, we identified a list of the top 10 compounds that demonstrated effectiveness in inhibiting the SARS-CoV-2 MPro virus. On the basis of the pharmacokinetics and docking analyses, the top 5 novel coumarin analogs were synthesized and characterized. The thermodynamic stability of compounds and was confirmed by their molecular dynamics, and the stability of the simulated system indicated their inhibitory nature. Molecules and were further evaluated for their anti-viral potential using Vero E6 cells followed by RT-PCR assay against SARS-CoV-2. The test compound KS82 was the most active with the potential to inhibit SARS-CoV-2 replication in Vero E6 cells. These data indicate that KS82 prevents the attack of the virus and emerges as the primary candidate with promising antiviral properties.

摘要

SARS-CoV 是一种 RNA 病毒,具有传染性和高度的适应性,导致疾病表现复杂,频繁发生基因突变,最终导致耐药性。针对其病毒复制周期可能是一种潜在的治疗选择,可以阻止其在人体中的病毒生长,从而避免进入严重感染阶段。SARS-CoV-2 的 M 蛋白是治疗开发的有前途的靶点,因为它对病毒的转录和复制至关重要。β-二酮和香豆素的衍生物已被报道具有抗病毒潜力,因此,在本研究中被认为是针对 SARS-CoV-2 病毒复制的潜在类似物计算设计的潜在支架。在我们的研究中,我们使用新型二酮铰链香豆素衍生物针对 SARS-CoV-2 的 M 蛋白开发了一种广谱抗病毒药物,以针对 SARS-CoV-2 开发一种广谱抗病毒药物。通过对药代动力学和对接研究的分析,我们确定了一组前 10 种化合物的名单,这些化合物在抑制 SARS-CoV-2 MPro 病毒方面表现出有效性。基于药代动力学和对接分析,合成并表征了前 5 种新型香豆素类似物。通过分子动力学证实了化合物 和 的热力学稳定性,模拟系统的稳定性表明它们具有抑制作用。进一步使用 Vero E6 细胞对化合物 和 进行了抗病毒潜力评估,然后通过 RT-PCR 法针对 SARS-CoV-2 进行了评估。测试化合物 KS82 是最有效的,具有抑制 SARS-CoV-2 在 Vero E6 细胞中复制的潜力。这些数据表明,KS82 可防止病毒攻击,并成为具有有前途的抗病毒特性的主要候选药物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/135e/10976223/dda8a171f211/molecules-29-01406-g001.jpg

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