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Tunable Semicrystalline Thin Film Cellulose Substrate for High-Resolution, In-Situ AFM Characterization of Enzymatic Cellulose Degradation

机译:可调谐半结晶薄膜纤维素基质,用于酶促纤维素降解的高分辨率,原位AFM表征

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摘要

In the field of enzymatic cellulose degradation, fundamental interactions between different enzymes and polymorphic cellulose materials are of essential importance but still not understood in full detail. One technology with the potential of direct visualization of such bioprocesses is atomic force microscopy (AFM) due to its capability of real-time in situ;investigations with spatial resolutions down to the molecular scale. To,exploit the full capabilities of this technology and unravel fundamental enzyme-cellulose bioprocesses, appropriate Cellulose substrates are decisive. In this study, we introduce a semicrystalline-thin-film-cellulose (SCFTC) substrate which fulfills the strong demands on such ideal cellulose substrates by means of (1) tunable polymorphism via:Variable contents of homogeneously sized cellulose nanocrystals embedded in an amorphous cellulose matrix; (2) nanoflat surface topology for high-resolution and high-speed AFM; and (3) fast, simple, and reproducible fabrication. The study starts with a detailed description of SCTFC preparation protocols including an in-depth material characterization. In the second part, we demonstrate the suitability of SCTFC substrates for enzymatic degradation studies by combined, individual, and sequential exposure to TrCel6A/TrCel7A cellulases (Trichoderma reesei) to visualize synergistic effects down to the nanoscale.
机译:在酶促纤维素降解的领域中,不同酶与多晶型纤维素材料之间的基本相互作用至关重要,但仍不能完全详细地理解。可以直接可视化这种生物过程的一项技术是原子力显微镜(AFM),因为它具有实时原位成像的能力;可以进行低至分子规模的空间分辨率的研究。为了充分利用该技术的功能并阐明基本的酶-纤维素生物过程,适当的纤维素底物至关重要。在这项研究中,我们介绍了一种半结晶薄膜纤维素(SCFTC)底物,该底物通过(1)可调节的多态性通过以下方式满足对此类理想纤维素底物的强烈要求:嵌入在无定形纤维素中的均一大小的纤维素纳米晶体的各种含量矩阵; (2)用于高分辨率和高速原子力显微镜的纳米平面拓扑; (3)快速,简单和可重复制造。该研究从对SCTFC制备方案的详细描述开始,包括深入的材料表征。在第二部分中,我们通过组合,单独和依次暴露于TrCel6A / TrCel7A纤维素酶(里氏木霉)来展示SCTFC底物在酶促降解研究中的适用性,以可视化观察到纳米级的协同效应。

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