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Structure and Intercalation of Cysteine–Asparagine–Serine Peptide into Montmorillonite as an Anti-Inflammatory Agent Preparation—A DFT Study

机译:半胱氨酸-天冬酰胺-丝氨酸肽的结构和嵌入蒙脱石中作为抗炎剂制剂——一项 DFT 研究

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摘要

Peptides are receiving significant attention in pharmaceutical sciences due to their applications as anti-inflammatory drugs; however, many aspects of their interactions and mechanisms at the molecular level are not well-known. This work explores the molecular structure of two peptides—(i) cysteine (Cys)–asparagine (Asn)–serine (Ser) (CNS) as a molecule in the gas phase and solvated in water in zwitterion form, and (ii) the crystal structure of the dipeptide serine–asparagine (SN), a reliable peptide indication whose experimental cell parameters are well known. A search was performed by means of atomistic calculations based on density functional theory (DFT). These calculations matched the experimental crystal structure of SN, validating the CNS results and useful for assignments of our experimental spectroscopic IR bands. Our calculations also explore the intercalation of CNS into the interlayer space of montmorillonite (MNT). Our quantum mechanical calculations show that the conformations of these peptides change significantly during intercalation into the confined interlayer space of MNT. This intercalation is energetically favorable, indicating that this process can be a useful preparation for therapeutic anti-inflammatory applications and showing high stability and controlled release processes.
机译:肽因其作为抗炎药的应用而在制药科学中受到广泛关注;然而,它们在分子水平上的相互作用和机制的许多方面并不为人所知。这项工作探讨了两种肽的分子结构——(i) 半胱氨酸 (Cys)-天冬酰胺 (Asn)-丝氨酸 (Ser) (CNS) 作为气相分子,在水中以两性离子形式溶剂化,以及 (ii) 二肽丝氨酸-天冬酰胺 (SN) 的晶体结构,这是一种可靠的肽指示,其实验细胞参数是众所周知的。通过基于密度泛函理论 (DFT) 的原子计算进行搜索。这些计算与 SN 的实验晶体结构相匹配,验证了 CNS 结果,并有助于分配我们的实验光谱 IR 波段。我们的计算还探索了 CNS 嵌入蒙脱石 (MNT) 的层间空间。我们的量子力学计算表明,这些肽的构象在嵌入 MNT 的受限层间空间期间发生显着变化。这种插层在能量上是有利的,表明这个过程可以成为治疗性抗炎应用的有用制剂,并显示出高稳定性和控释过程。

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