Suppr超能文献

采用集成分析方法研究有效抑制 HCN1 通道的特征:3D-QSAR、分子对接、同源建模、ADME 和分子动力学。

Exploring characteristic features for effective HCN1 channel inhibition using integrated analytical approaches: 3D QSAR, molecular docking, homology modelling, ADME and molecular dynamics.

机构信息

Department of Biophysics, Panjab University, Chandigarh, 160014, India.

University Institute of Pharmaceutical Sciences, Panjab University, Chandigarh, 160014, India.

出版信息

Eur Biophys J. 2024 Nov;53(7-8):447-464. doi: 10.1007/s00249-024-01726-8. Epub 2024 Nov 3.

Abstract

Neuropathic pain (NP) is characterized by hyperalgesia, allodynia, and spontaneous pain. Hyperpolarization-activated cyclic nucleotide-gated (HCN) channel involved in neuronal hyperexcitability, has emerged as an important target for the drug development of NP. HCN channels exist in four different isoforms, where HCN1 is majorly expressed in dorsal root ganglion having an imperative role in NP pathophysiology. A specific HCN1 channel inhibitor will hold the better potential to treat NP without disturbing the physiological roles of other HCN isoforms. The main objective is to identify and analyze the chemical properties of scaffolds with higher HCN1 channel specificity. The 3D-QSAR studies highlight the hydrophobic & hydrogen bond donor groups enhance specificity towards the HCN1 channel. Further, the molecular interaction of the scaffolds with the HCN1 pore was studied by generating an open-pore model of the HCN1 channel using homology modelling and then docking the molecules with it. In addition, the important residues involved in the interaction between HCN1 pore and scaffolds were also identified. Moreover, ADME predictions revealed that compounds had good oral bioavailability and solubility characteristics. Subsequently, molecular dynamics simulation studies revealed the better stability of the lead molecules A7 and A9 during interactions and ascertained them as potential drug candidates. Cumulative studies provided the important structural features for enhancing HCN1 channel-specific inhibition, paving the way to design and develop novel specific HCN1 channel inhibitors.

摘要

神经病理性疼痛(NP)的特征是痛觉过敏、感觉异常和自发性疼痛。超极化激活环核苷酸门控(HCN)通道参与神经元过度兴奋,已成为 NP 药物开发的重要靶点。HCN 通道存在于四个不同的亚型中,其中 HCN1 主要在背根神经节中表达,在 NP 病理生理学中起着重要作用。特定的 HCN1 通道抑制剂将具有更好的潜力来治疗 NP,而不会干扰其他 HCN 亚型的生理作用。主要目标是识别和分析对 HCN1 通道具有更高特异性的支架的化学性质。3D-QSAR 研究强调疏水性和氢键供体基团可提高对 HCN1 通道的特异性。此外,通过同源建模生成 HCN1 通道的开放孔模型,然后将分子与其对接,研究了支架与 HCN1 孔的分子相互作用。此外,还确定了 HCN1 孔和支架之间相互作用的重要残基。此外,ADME 预测表明化合物具有良好的口服生物利用度和溶解度特征。随后,分子动力学模拟研究表明,先导分子 A7 和 A9 在相互作用过程中具有更好的稳定性,并将它们确定为潜在的药物候选物。累积研究提供了增强 HCN1 通道特异性抑制的重要结构特征,为设计和开发新型特异性 HCN1 通道抑制剂铺平了道路。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验