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新型甲酰基查耳酮席夫碱与β-环糊精的包合物的合成、表征、DNA 结合研究及体外释放研究。

Inclusion complexes of novel formyl chromone Schiff bases with β-Cyclodextrin: Synthesis, characterization, DNA binding studies and in-vitro release study.

机构信息

University School of Basic & Applied Sciences, Guru Gobind Singh Indraprastha University, Dwarka, New Delhi 110078, India.

Department of Chemistry, Acharya Narendra Dev College, University of Delhi, Kalkaji, New Delhi 110019, India.

出版信息

Carbohydr Polym. 2025 Jan 1;347:122667. doi: 10.1016/j.carbpol.2024.122667. Epub 2024 Aug 28.

DOI:10.1016/j.carbpol.2024.122667
PMID:39486925
Abstract

The present study involved the synthesis of five novel Schiff bases (SB1-SB5) of formyl chromone and their inclusion complexes with β-cyclodextrin through kneading approach to enhance the solubility and stability of SBs. Characterization was conducted using FTIR, NMR, SEM, TEM, p-XRD, and Mass Spectrometry. UV fluorescence and pH stability studies confirmed the formation of the inclusion complex. Structural validation of complexes was conducted via molecular docking (PDB ID: 1BFN) and 50 ns MD simulation study. DFT studies were performed on SBs using B3LYP/6-31 + G(d,p) basis set. All SBs exhibited favorable ADME properties and high binding interactions were observed in molecular docking with ctDNA (PDB Id: 1BNA). Further, in-vitro UV absorption and fluorescence experiments demonstrated strong ctDNA interactions for all Schiff bases, with binding constants in the order of 10 M, indicating groove binding mode. Among the SBs, SB4 exhibited the highest affinity for DNA grooves, with a binding constant (K) of 1.7 × 10 M. However, the SB4/β-Cyd inclusion complex also interacted with DNA but with low binding constants compared to SB4. An in-vitro release study of SB4/β-Cyd, revealed 78.92 % dissolution of the inclusion complex, highlighting its potential for enhanced solubility and stability in biological systems.

摘要

本研究涉及通过 kneading 方法合成五种新型的甲酰基色酮席夫碱(SB1-SB5)及其与β-环糊精的包合物,以提高 SBs 的溶解度和稳定性。采用 FTIR、NMR、SEM、TEM、p-XRD 和质谱对其进行了表征。紫外荧光和 pH 稳定性研究证实了包合物的形成。通过分子对接(PDB ID: 1BFN)和 50 ns MD 模拟研究对配合物进行了结构验证。使用 B3LYP/6-31 + G(d,p)基组对 SBs 进行了 DFT 研究。所有 SBs 均表现出良好的 ADME 性质,并且在与 ctDNA(PDB Id: 1BNA)的分子对接中观察到高结合相互作用。此外,在体外紫外吸收和荧光实验中,所有席夫碱均表现出与 ctDNA 的强相互作用,结合常数在 10 M 的数量级,表明其结合模式为沟槽结合。在 SBs 中,SB4 与 DNA 沟槽的亲和力最高,结合常数(K)为 1.7×10 M。然而,SB4/β-Cyd 包合物也与 DNA 相互作用,但与 SB4 相比,结合常数较低。SB4/β-Cyd 的体外释放研究表明,包合物的溶解度为 78.92%,这突出了其在生物体系中提高溶解度和稳定性的潜力。

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