Langmuir. 2020 Apr 7;36(13):3611-3623. doi: 10.1021/acs.langmuir.0c00087. Epub 2020 Mar 24.
Among numerous compounds found in marine organisms, triterpenes have attracted considerable research interest due to a beneficial impact on health including anti-inflammatory, antitumor, antiviral, and antioxidation effects. Specifically, new functionalities of oleanolic acid (OLA) have been revealed recently, indicating possible applications in nutrition and pharmaceuticals. However, this bioactive material has limited value due to low water solubility and stability. Therefore, oleanolic acid needs a carrier that protects it and enables controlled release in the human body. Innovative drug delivery systems provide a promising strategy for overcoming these problems. However, the development of those systems requires a comprehensive understanding of the physicochemical properties of triterpenes and their carriers as well as the interactions between them. Among numerous substances, human serum albumin (HSA) has been widely studied as a drug carrier. In addition, human serum albumin is the main blood plasma protein responsible for the transport of drugs and metabolites; therefore, the interactions between that protein and other substances are of physiological and pharmaceutical importance. Moreover, sensing the HSA level in blood plasma is an important challenge that requires binding studies on a molecular scale. The aim of this study was to investigate the properties of oleanolic acid in the presence of human serum albumin in terms of thermodynamics, morphology, and viscoelasticity at the air/water interface. Moreover, the wettability, surface free energy, and topography of the films after deposition on the solid substrate were determined. The results have been discussed in terms of providing physicochemical insight into the interfacial behavior of the OLA-HSA complex, which is crucial for pharmaceutical and bioanalytical applications.
在海洋生物中发现的众多化合物中,三萜类化合物因其对健康的有益影响而引起了相当大的研究兴趣,包括抗炎、抗肿瘤、抗病毒和抗氧化作用。特别是,最近发现了齐墩果酸 (OLA) 的新功能,表明其在营养和制药方面可能有应用。然而,由于其水溶性和稳定性有限,这种生物活性物质的价值有限。因此,齐墩果酸需要一种载体来保护它并使其在人体内能够控制释放。创新的药物输送系统为克服这些问题提供了有希望的策略。然而,这些系统的开发需要全面了解三萜类化合物及其载体的物理化学性质以及它们之间的相互作用。在众多物质中,人血清白蛋白 (HSA) 已被广泛研究作为药物载体。此外,人血清白蛋白是负责运输药物和代谢物的主要血浆蛋白;因此,该蛋白质与其他物质之间的相互作用具有生理和药物重要性。此外,检测血浆中人血清白蛋白的水平是一个重要的挑战,需要在分子尺度上进行结合研究。本研究的目的是从热力学、形态学和粘弹性方面研究在人血清白蛋白存在的情况下齐墩果酸在空气/水界面的性质。此外,还测定了在固体基底上沉积后薄膜的润湿性、表面自由能和形貌。结果从提供对 OLA-HSA 复合物界面行为的物理化学见解的角度进行了讨论,这对于药物和生物分析应用至关重要。