Guru Gobind Singh College of Pharmacy, Yamuna Nagar-135001, Haryana, India.
Shivalik College of Pharmacy, Nangal-140124, Punjab, India.
Curr Comput Aided Drug Des. 2020;16(3):281-294. doi: 10.2174/1573409915666190710092032.
Piperine or piperic acid was isolated from fruits of Piper nigrum and had been reported as pharmacological valuable bioactive constituents. Keeping in view, a series of piperic acid-based N heterocyclic's derivatives were synthesized and evaluated for antibacterial activity. All these prepared ligands were docked to study the molecular interactions and binding affinities against the protein PDB ID: 5 CDP.
To meet the real need of newer antibacterials, we designed and synthesized scaffolds with good antibacterial activity. The obtained antibacterials have been validated in terms of ligand-protein interaction and thus prove to build up as good drug candidates.
Antibacterial activity of the compounds were carried out against bacterial strains; three Grampositive and three Gram-negative bacterial strains using agar well diffusion method. In silico molecular docking studies were carried out using Glide (grid-based ligand docking) program incorporated in the Schrödinger molecular modeling package by Maestro 11.0.
Compounds BC 28, BC 32, and BC 33 exhibits antibacterial activity along with Glide docking score of -8.580, -9.753 kcal/mol, and -8.813 kcal/mol, respectively. Docking studies explained hydrogen bonding, pi-pi, and hydrophobic interactions with amino acid residues which explain the binding affinity of the most docked ligand with protein.
In the present study, substituted piperic acid was synthesized and evaluated as antibacterial compared with standard drug ciprofloxacin and results interpret that having nitrogen as heteroatom in the heterocyclic nucleus found to be more potent than the standard drug ciprofloxacin. On comparing, substitution with electron-donating groups generates excellent antibacterial potential against the bacterial strains. It was also proved that having substitution with electron-donating groups on meta and para position with triazoline ring system exhibits greater potential while compounds which have a meta- electron-donating substituent showed lesser activity with thiazole nucleus. In addition, structure-based activities of the prepared analogs were discussed under Structure-Activity Relationship (SAR) section.
胡椒碱或胡椒酸从胡椒属果实中分离出来,被报道为具有药理价值的生物活性成分。鉴于此,我们合成了一系列基于胡椒酸的 N 杂环衍生物,并评估了它们的抗菌活性。所有这些合成的配体都被对接,以研究其与蛋白质 PDB ID:5 CDP 的分子相互作用和结合亲和力。
为了满足新型抗菌药物的实际需求,我们设计并合成了具有良好抗菌活性的支架。所获得的抗菌药物已通过配体-蛋白相互作用进行验证,因此证明它们可以作为良好的药物候选物。
采用琼脂孔扩散法,对三种革兰氏阳性菌和三种革兰氏阴性菌菌株进行了化合物的抗菌活性测定。采用 Glide(基于网格的配体对接)程序进行了计算机分子对接研究,该程序集成在 Schrödinger 分子建模包中,由 Maestro 11.0 版使用。
化合物 BC 28、BC 32 和 BC 33 表现出抗菌活性,Glide 对接评分分别为-8.580、-9.753 kcal/mol 和-8.813 kcal/mol。对接研究解释了与氨基酸残基的氢键、π-π 和疏水相互作用,解释了最对接配体与蛋白质的结合亲和力。
在本研究中,与标准药物环丙沙星相比,合成并评价了取代胡椒酸的抗菌活性,结果表明,杂环核中含有氮作为杂原子比标准药物环丙沙星更有效。相比之下,在间位和对位带有三唑啉环系统的供电子基团的取代产生了对抗菌菌株的优异抗菌潜力。此外,还在构效关系(SAR)部分讨论了所制备类似物的结构活性。