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Enzyme-responsive chiral self-sorting in amyloid-inspired minimalistic peptide amphiphiles

机译:Enzyme-responsive手性self-sorting在amyloid-inspired简约肽双

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Self-sorting is a spontaneous phenomenon that ensures the formation of complex yet ordered multicomponent systems and conceptualizes the design of artificial and orthogonally functional compartments. In the present study, we envisage chirality-mediated self-sorting in beta-amyloid-inspired minimalistic peptide amphiphile (C-10-l/d-VFFAKK)-based nanofibers. The fidelity and stereoselectivity of chiral self-sorting was ascertained by Forster resonance energy transfer (FRET) by the judicious choice of a pyrene (Py)-hydroxy coumarin (HOCou) donor-acceptor pair tethered to the peptide sequences. Seed-promoted elongation of the homochiral peptide amphiphiles investigated by AFM image analyses and Thioflavin-T (ThT) binding study further validated the chiral recognition of thel/dpeptide nanofibers. Moreover, direct visualization of the chirality-driven self-sorted nanofibers is reported using super-resolution microscopy that exhibits enantioselective enzymatic degradation forl-peptide fibers. Such enantioselective weakening of the hydrogels may be used for designing stimuli-responsive orthogonal compartments for delivery applications.
机译:Self-sorting是一种自然现象确保形成复杂的命令多组分系统和总结设计的人工和垂直的功能隔间。chirality-mediated self-sorting在beta-amyloid-inspired简约肽亲水脂分子(C-10-l / d-VFFAKK)的纳米纤维。手性的忠诚和立体选择性self-sorting被福斯特确定共振能量转移(烦恼)的明智的选择芘(Py)羟基香豆素(HOCou)施主-受主对拴在肽序列。homochiral肽双性调查AFM图像分析和Thioflavin-T(阻)绑定手性识别的研究进一步验证thel / dpeptide纳米纤维。可视化的chirality-driven self-sorted纳米纤维是使用超分辨率报道显微镜,展品拆分酶促降解forl-peptide纤维。拆分削弱的水凝胶被用于设计stimuli-responsive正交隔间交付应用程序。

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