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对薰衣草酚类成分进行综合计算和实验评估,以研究其对群体感应、抗生物膜、抗氧化和15-脂氧合酶抑制特性的影响。

Integrated computational and experimental evaluation of phenolic constituents of L. for antiqourum sensing, antibiofilm, antioxidant, and 15-lox inhibitory properties.

作者信息

Rafey Hafiz Abdul, El-Shazly Mohamed, Khalid Tooba, Alam Tanveer, Niaz Shah Iram, Farooq Omer

机构信息

Faculty of Pharmaceutical and Allied Health Sciences, Shifa College of Pharmaceutical Sciences (SCPS), Shifa Tameer-e-Millat University, Islamabad, Pakistan.

Pharmacognosy, Natural Products Chemistry and Food Chemistry, Pharmacognosy Department, Faculty of Pharmacy, Ain-Shams University, Cairo, Egypt.

出版信息

J Biomol Struct Dyn. 2024 Feb 12:1-9. doi: 10.1080/07391102.2024.2309334.

Abstract

The present study investigated the antioxidant profile together with the antibacterial potential of Apricot L. with the aim to find a functional food based anti-infective lead. Additionally the study evaluated the biofilm and QS inhibitory potential of the plant using (ATCC 15442) and (DSM 30191) respectively. Several fractions of the peel of were subjected to initial antimicrobial and antibiofilm screening. Among all the fractions, methanol and ethyl acetate fractions displayed significant antimicrobial activity against the strains selected with MIC values 1.25 mg/dL and 1.68 mg/dL respectively. Similarly, while evaluating antiqourum-sensing potential, methanol extract showed remarkable zone of inhibition (14mm) with Violaceum inhibition (58%) while aqueous part presented moderately good inhibition (32%) with zone of inhibition of (4mm). N-hexane fraction was least active in this regard. In case of free radicals scavenging aptitudes, Ethanolic fraction displayed the highest free radicals scavenging potential (IC50μg/mL 13.76 ± 23.61) while Aqueous and ethyl acetate part exhibited moderate to good antioxidant behaviors with IC50μg/mL of 26.74 ± 22.00 and 19.49 ± 2.91 respectively. Then the selected compounds were screened for putative binding sites and molecular docking studies followed by enzyme inhibition assays. The negative binding energies and close proximity to residues in the binding pocket of selected targets including human α- soybean lox (PDB ID 1IK3), quorum sensing regulators LasR (2UV0) were observed which indicated high affinity and tight binding capacity of compounds and towards the active sites of LasR 2UV0 and 15-lipoxygenase. The physicochemical characteristics and toxicity expectation were computationally accomplished. Bioactivity prediction study revealed that all of the selected Phytoconstituents displayed incredible Bioactivity score. None of the selected chemical compound was found to be toxic as discovered by toxicity studies. Compound exhibited the highest inhibition of 15-lipoxygenase (69%, at 0.037 mM final concentration) and that is accompanied by compound (60%) whereas in the biofilm inhibition assay, compound was most active (IC50 0.05 mM), followed by compound (IC50 0.07 mM). It was therefore determined that compounds and had the highest biofilm inhibitory activity, whereas compounds and were potent 15-lipoxygenase inhibitors with potentially anti-inflammatory properties. Future investigations are suggested for the characterization and formulation development.

摘要

本研究调查了杏树的抗氧化特性及其抗菌潜力,旨在寻找一种基于功能性食品的抗感染先导物。此外,该研究分别使用(ATCC 15442)和(DSM 30191)评估了该植物的生物膜和群体感应抑制潜力。对杏树果皮的几个馏分进行了初步的抗菌和抗生物膜筛选。在所有馏分中,甲醇和乙酸乙酯馏分对所选菌株表现出显著的抗菌活性,其最低抑菌浓度(MIC)值分别为1.25 mg/dL和1.68 mg/dL。同样,在评估群体感应抑制潜力时,甲醇提取物对紫色杆菌素的抑制显示出显著的抑菌圈(14mm),抑制率为58%,而水相部分表现出中等程度的良好抑制(32%),抑菌圈为4mm。正己烷馏分在这方面活性最低。在自由基清除能力方面,乙醇馏分表现出最高的自由基清除潜力(IC50μg/mL 13.76 ± 23.61),而水相和乙酸乙酯部分表现出中等至良好的抗氧化性能,IC50μg/mL分别为26.74 ± 22.00和19.49 ± 2.91。然后对所选化合物进行推定结合位点筛选和分子对接研究,随后进行酶抑制试验。观察到所选靶点(包括人α-大豆脂氧合酶(PDB ID 1IK3)、群体感应调节因子LasR(2UV0))结合口袋中的负结合能以及与残基的紧密接近,这表明化合物和对LasR 2UV0和15-脂氧合酶的活性位点具有高亲和力和紧密结合能力。通过计算完成了理化特性和毒性预测。生物活性预测研究表明,所有所选植物成分均显示出令人难以置信的生物活性评分。毒性研究发现,所选化合物均无毒性。化合物对15-脂氧合酶的抑制作用最高(69%,终浓度为0.037 mM),其次是化合物(60%),而在生物膜抑制试验中,化合物活性最高(IC50 0.05 mM),其次是化合物(IC50 0.07 mM)。因此确定化合物和具有最高的生物膜抑制活性,而化合物和是具有潜在抗炎特性的强效15-脂氧合酶抑制剂。建议未来进行表征和制剂开发方面的研究。

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