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Chirality Study inside Biological Tissue by Second Harmonic Generation Circular Dichroism

机译:第二谐波产生圆二色性在生物组织内的手性研究

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Many biological systems are composed of chiral molecules and their functions depend strongly on their chirality. For example, most amino acids are of left-handed chirality while most polysaccharides are of right-handed chiraliry. Both of them are vital for human life, so it is important to perform chiral detection inside bio-tissues. Here we demonstrated second harmonic generation circular dichroism (SHG-CD) as a novel chiral imaging contrast in thick bio-tissue. Compared with conventional chiral detection, SHG-CD provides at least three orders higher contrast. In addition, due to the nonlinear nature of SHG, this technique provides optical sectioning capability, so the axial contrast is much better. The advantages of nonlinear optical microscopy are optical sectioning and deep penetration capabilities. The SHG-CD achieved 100% signal contrast with sub-micrometer spatial resolution. This method is expected to offer a novel contrast mechanism of imaging chirality inside complex bio-tissues.
机译:许多生物系统由手性分子组成,其功能在很大程度上取决于手性。例如,大多数氨基酸具有左旋手性,而大多数多糖具有右旋手性。它们对人类生命都至关重要,因此在生物组织内部进行手性检测非常重要。在这里,我们展示了二次谐波生成圆二色性(SHG-CD)作为厚生物组织中的新型手性成像对比。与常规手性检测相比,SHG-CD的对比度至少高出三个数量级。另外,由于SHG的非线性特性,该技术提供了光学切片功能,因此轴向对比度要好得多。非线性光学显微镜的优点是光学切片和深穿透能力。 SHG-CD具有亚微米空间分辨率的100%信号对比度。该方法有望为复杂生物组织内部的手性成像提供一种新颖的对比机制。

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