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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Interaction of Trastuzumab with biomembrane models at air-water interfaces mimicking cancer cell surfaces
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Interaction of Trastuzumab with biomembrane models at air-water interfaces mimicking cancer cell surfaces

机译:曲妥珠单抗与生物膜模型的相互作用在模仿癌细胞表面的空气界面

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Trastuzumab (Tmab) is a monoclonal antibody administered as targeted therapy for HER2-positive breast cancer whose molecular interactions at the HER2 receptor microenvironment are not completely clarified yet. This paper describes the influence of Tmab in the molecular organization of films of biological-relevant molecules at the air water interface. For that, we spread components of tumorigenic and non-tumorigenic cells directly on the air-water interface. The physicochemical properties of the films were investigated with surface pressure-area isotherms and Brewster angle microscopy, and distinction between the cellular lines with higher or lower amount of HER2 could be detected based on the physicochemical properties of the interfacial films. The systems organized at the air-water interface were transferred to solid supports as Langmuir-Blodgett films and the nanoscale morphology investigated with atomic force microscopy. The overall results related to Tmab interacting with the films lead to the conclusion that Tmab tends to condense rich-HER2 films, causing irregular dimerization of the receptor protein, changing the membrane topography of the films, with formation of phases with different levels of reflectivity and aggregation morphology, and finally revealing that the interaction of the antibody with proteo-lipidic biointerfaces is modulated by the film composition. We believe that novel perspectives concerning the molecular interactions in the plasma membrane microenvironment through Langmuir monolayers can be obtained from this work in order to enhance the Tmab-based cancer therapy.
机译:Trastuzumab(TMAB)是作为靶向治疗的单克隆抗体,其用于HER2阳性乳腺癌,其MER2受体微环境的分子相互作用尚未完全阐明。本文介绍了TMAB在空气界面处的生物相关分子薄膜中的影响。为此,我们将致瘤和非致荷细胞的组分直接在空气水界面上传播。研究了膜的物理化学性质,用表面压力区域等温线和毛衣角显微镜检查,并且可以基于界面膜的物理化学特性检测具有较高或更低的HER2的细胞系之间的区分。将在空气 - 水界面组织的系统转移至固体载体作为Langmuir-Blodgett薄膜和用原子力显微镜研究的纳米级形态。与TMAB与薄膜相互作用的总结果导致TMAB倾向于浓缩的HER2薄膜,导致受体蛋白的不规则化,改变膜的膜形貌,形成具有不同水平的反射率和不同水平的相位聚集形态,最后揭示抗体与蛋白质 - 脂性生物融合的相互作用被膜组合物调节。我们认为,通过Langmuir Monolayers通过Langmuir Monolayers将关于血浆膜微环境中的分子相互作用的新颖性观点可以从该工作中获得,以提高TMAB的癌症治疗。

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