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β-环糊精衍生物与环肽兰瑞肽的芳香族侧链结合。

β-Cyclodextrin derivatives bind aromatic side chains of the cyclic peptide lanreotide.

作者信息

Jafari Negar, Douglas Justin T, Neuenswander Sarah A, Kelich Payam, Hageman Michael J

机构信息

Pharmaceutical Chemistry, University of Kansas, USA.

NMR Core Lab, University of Kansas, Lawrence, USA.

出版信息

J Pharm Sci. 2025 Feb;114(2):878-886. doi: 10.1016/j.xphs.2024.10.042. Epub 2024 Nov 2.

Abstract

Cyclodextrin complexation has a potential to modulate the physicochemical properties of peptide drugs. The ability of peptides to form an inclusion complex can be influenced by factors such as size, amino acid sequence of peptide, and the size and charge of the cyclodextrin cavity. In this study, the inclusion complexes of the cyclic peptide drug lanreotide acetate with two common β-cyclodextrin derivatives, Sulfobutyl ether β-CD (SBEβ-CD) and hydroxypropyl β-CD (HPβ-CD) were investigated. NMR spectroscopy was used to examine the interaction between β-cyclodextrin derivatives and specific residues of lanreotide. It was observed that the hydrophobic side chain of aromatic residues in the lanreotide sequence can fit into the cavities of both β-cyclodextrin derivatives. Additionally, NMR revealed a lower diffusion coefficient and higher hydrodynamic radius of complex, indicative of binding to the cavities. Each aromatic residue was individually studied by substituting alanine in lanreotide to measure its association binding with both β-cyclodextrin derivatives. The alanine-substitute study indicated a stronger binding of SBEβ-CD to Lanreotide compared to HPβ-CD. Docking studies suggested that the 1:1 inclusion complex is more favorable than higher-order complexes due to the steric hindrance and size considerations. Docking analysis indicated the stable conformation of all three aromatic side chains with both β-cyclodextrin derivatives, SBEβ-CD and HPβ-CD.

摘要

环糊精包合作用具有调节肽类药物物理化学性质的潜力。肽形成包合物的能力会受到多种因素影响,如肽的大小、氨基酸序列以及环糊精空腔的大小和电荷等。在本研究中,对环肽药物醋酸兰瑞肽与两种常见的β-环糊精衍生物,磺丁基醚β-环糊精(SBEβ-CD)和羟丙基β-环糊精(HPβ-CD)的包合物进行了研究。利用核磁共振光谱法检测β-环糊精衍生物与兰瑞肽特定残基之间的相互作用。观察到兰瑞肽序列中芳香族残基的疏水侧链能够适配两种β-环糊精衍生物的空腔。此外,核磁共振显示复合物的扩散系数较低且流体力学半径较大,表明其与空腔发生了结合。通过将兰瑞肽中的丙氨酸逐个替换,对每个芳香族残基进行单独研究,以测定其与两种β-环糊精衍生物的缔合结合情况。丙氨酸替换研究表明,与HPβ-CD相比,SBEβ-CD与兰瑞肽的结合更强。对接研究表明,由于空间位阻和尺寸因素,1:1包合物比高阶复合物更有利。对接分析表明,所有三个芳香族侧链与两种β-环糊精衍生物SBEβ-CD和HPβ-CD均具有稳定构象。

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