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Bioinspired Second Harmonic Generation

机译:受生物启发的第二谐波产生

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Second harmonic generation (SHG) is a microscopic technique applicable to a broad spectrum of biological and medical imaging due to its excellent photostability, high signal-to-noise ratio (SNR) and narrow emission profile. Current SHG microscopy techniques rely on two main contrast modalities. These are endogenous SHG generated by tissue structures, which is clinically relevant but cannot be targeted to another location, or SHG nanoprobes, inorganic nanocrystals that can be directed to proteins and cells of interest, but cannot be applied for clinical imaging due to their chemical composition. Here we analyzed SHG signal generated by large-scale peptide assemblies. Our results show the sequence of peptides play an important role on both the morphology and SHG signal of the peptide assemblies. Changing peptide sequence allows confinement of large number of peptides to smaller voxels, generating intense SHG signal. With miniaturization of these peptides and their proper functionalization strategies, such bioinspired nanoparticles would emerge as valuable tools for clinical imaging.
机译:二次谐波产生(SHG)是一种显微技术,由于其出色的光稳定性,高信噪比(SNR)和狭窄的发射曲线,因此适用于广泛的生物和医学成像。当前的SHG显微镜技术依赖于两种主要的对比方式。这些是由组织结构产生的内源性SHG,具有临床相关性但不能靶向其他位置,或者是SHG纳米探针,可以定向到目标蛋白质和细胞但由于其化学组成而不能用于临床成像的无机纳米晶体。在这里,我们分析了由大规模肽组装产生的SHG信号。我们的结果表明,肽序列在肽装配体的形态和SHG信号中都起着重要作用。改变肽序列可将大量肽限制在较小的体素中,从而产生强烈的SHG信号。随着这些肽的小型化及其适当的功能化策略,这种受生物启发的纳米粒子将成为临床成像的有价值的工具。

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