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通过荧光、圆二色光谱和 SPR 评估德拉马尼/制剂与人血清白蛋白的生物分子相互作用:对蛋白质构象、动力学和热力学参数的影响。

Evaluating the biomolecular interaction between delamanid/formulations and human serum albumin by fluorescence, CD spectroscopy and SPR: Effects on protein conformation, kinetic and thermodynamic parameters.

机构信息

Drug Delivery System Excellence Center, Department of Pharmaceutical Technology, Faculty of Pharmaceutical Sciences, Prince of Songkla University, Hat Yai, Songkhla 90110, Thailand.

Univ. Bourgogne Franche - Comté, L'Institut Agro, Université de Bourgogne, INRAE, UMR PAM 1517, Joint Unit Food Processing and Microbiology, Food and Wine Physico-Chemistry Unit, 1 esplanade Erasme, Dijon 21000, France.

出版信息

Colloids Surf B Biointerfaces. 2024 Jul;239:113964. doi: 10.1016/j.colsurfb.2024.113964. Epub 2024 May 14.

Abstract

Delamanid is an anti-tuberculosis drug used for the treatment of drug-resistant tuberculosis. Since delamanid has a high protein bound potential, even patients with low albumin levels should experience high and rapid delamanid clearance. However, the interaction between delamanid and albumin should be better controlled to optimize drug efficacy. This study was designed to evaluate the binding characteristics of delamanid to human serum albumin (HSA) using various methods: fluorescence spectroscopy, circular dichroism (CD), surface plasmon resonance (SPR), and molecular docking simulation. The fluorescence emission band without any shift indicated the interaction was not affected by the polarity of the fluorophore microenvironment. The reduction of fluorescence intensity at 344 nm was proportional to the increment of delamanid concentration as a fluorescence quencher. UV-absorbance measurement at the maximum wavelength (λ, 280 nm) was evaluated using inner filter effect correction. The HSA conformation change was explained by the intermolecular energy transfer between delamanid and HSA during complex formation. The study, which was conducted at temperatures of 298 K, 303 K, and 310 K, revealed a static quenching mechanism that correlated with a decreased of bimolecular quenching rate constant (kq) and binding constant (Ka) at increased temperatures. The Ka was 1.75-3.16 × 10 M with a specific binding site with stoichiometry 1:1. The negative enthalpy change, negative entropy change, and negative Gibbs free energy change demonstrated an exothermic-spontaneous reaction while van der Waals forces and hydrogen bonds played a vital role in the binding. The molecular displacement approach and molecular docking confirmed that the binding occurred mainly in subdomain IIA, which is a hydrophobic pocket of HSA, with a theoretical binding free energy of -9.33 kcal/mol. SPR exhibited a real time negative sensorgram that resulted from deviation of the reflex angle due to ligand delamanid-HSA complex forming. The binding occurred spontaneously after delamanid was presented to the HSA surface. The SPR mathematical fitting model revealed that the association rate constant (k) was 2.62 × 10 sM and the dissociation rate constant (k) was 5.65 × 10 s. The complexes were performed with an association constant (K) of 4.64 × 10 M and the dissociation constant (K) of 2.15 × 10 M. The binding constant indicated high binding affinity and high stability of the complex in an equilibrium. Modified CD spectra revealed that conformation of the HSA structure was altered by the presence of delamanid during preparation of the proliposomes that led to the reduction of secondary structure stabilization. This was indicated by the percentage decrease of α-helix. These findings are beneficial to understanding delamanid-HSA binding characteristics as well as the drug administration regimen.

摘要

德拉马尼是一种抗结核药物,用于治疗耐药结核病。由于德拉马尼具有很高的蛋白结合潜力,即使白蛋白水平较低的患者也会经历德拉马尼的高清除率和快速清除。然而,应该更好地控制德拉马尼与白蛋白之间的相互作用,以优化药物疗效。本研究旨在使用各种方法评估德拉马尼与人血清白蛋白(HSA)的结合特征:荧光光谱法、圆二色性(CD)、表面等离子体共振(SPR)和分子对接模拟。没有任何位移的荧光发射带表明,相互作用不受荧光团微环境极性的影响。在 344nm 处荧光强度的降低与作为荧光猝灭剂的德拉马尼浓度的增加成正比。在最大波长(λ,280nm)处使用内滤光效应校正评估紫外吸收测量。在复合物形成过程中,德拉马尼和 HSA 之间的分子间能量转移解释了 HSA 构象的变化。在 298K、303K 和 310K 的温度下进行的研究表明,这是一种静态猝灭机制,与升高温度时双分子猝灭速率常数(kq)和结合常数(Ka)的降低有关。Ka 值为 1.75-3.16×10 M,具有特异性结合位点,配体计量比为 1:1。负焓变、负熵变和负吉布斯自由能变化表明是一个放热自发反应,而范德华力和氢键在结合中起着重要作用。分子置换法和分子对接证实,结合主要发生在 HSA 的亚域 IIA 中,这是 HSA 的一个疏水口袋,理论结合自由能为-9.33kcal/mol。SPR 显示实时负传感器图,由于配体德拉马尼-HSA 复合物的形成导致反射角的偏差而导致。德拉马尼被递送到 HSA 表面后,结合自发发生。SPR 数学拟合模型显示,缔合速率常数(k)为 2.62×10 sM,解离速率常数(k)为 5.65×10 s。复合物的缔合常数(K)为 4.64×10 M,解离常数(K)为 2.15×10 M。结合常数表明在平衡时复合物具有高结合亲和力和高稳定性。修饰后的 CD 光谱表明,在制备前体脂质体过程中,德拉马尼的存在改变了 HSA 结构的构象,导致二级结构稳定性降低。这表现为α-螺旋的百分比下降。这些发现有助于理解德拉马尼-HSA 结合特征以及药物管理方案。

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