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首页> 外文期刊>ACS nano >Length-Dependent Distinct Cytotoxic Effect of Amyloid Fibrils beyond Optical Diffraction Limit Revealed by Nanoscopic Imaging
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Length-Dependent Distinct Cytotoxic Effect of Amyloid Fibrils beyond Optical Diffraction Limit Revealed by Nanoscopic Imaging

机译:淀粉样蛋白原纤维的长度依赖性不同的细胞毒性效应超出光学衍射极限,纳米镜片成像显示

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摘要

Fibrillar species have been proposed to play an essential role in the cytotoxicity of amyloid peptide and the pathogenesis of neurodegenerative diseases. Discrimination of A beta aggregates in situ at high spatial resolution is therefore significant for the development of a therapeutic method. In this work, we adopt a rhodamine-like structure as luminescent centers to fabricate carbonized fluorescent nanoparticles (i.e., carbon dots, RhoCDs) with tunable emission wavelengths from green to red and burst-like photoblinking property for localization-based nanoscopic imaging. These RhoCDs contain lipophilic cationic and carboxyl groups which can specifically bind with A beta(1-40) aggregates via electrostatic interaction and hydrogen bonding. According to the nanoscopic imaging in the A beta(1-40) fibrillation and disaggregation process, different types of A beta(1-40) aggregates beyond the optical diffraction limit have been disclosed. Additionally, length-dependent toxic effect of A beta(1-40) aggregates beyond the optical diffraction limit is unveiled. Short amyloid assemblies with length of 187 +/- 3.9 nm in the early stage are more toxic than the elongated amyloid fibrils. Second, disassembly of long fibrils into short species by Gramicidin S (GS-2) peptide might enhance the cytotoxicity. These results lay the foundation to develop functional fluorophore for nanoscopic imaging and also provide deep insight into morphology-dependent cytotoxicity from amyloid peptides.
机译:纤维物种在淀粉样肽的细胞毒性和神经退行性疾病的发病机制中起着重要作用。因此,在高空间分辨率下对β聚集体进行原位识别对于开发治疗方法具有重要意义。在这项工作中,我们采用类似罗丹明的结构作为发光中心来制备碳化荧光纳米颗粒(即碳点、RhoCd),其发射波长从绿色到红色可调,并具有突发性光闪烁特性,用于基于定位的纳米级成像。这些RHOCD含有亲脂性阳离子和羧基,它们可以通过静电作用和氢键与β(1-40)聚集体特异性结合。根据β(1-40)纤颤和解聚过程中的纳米级成像,已经公开了超出光学衍射极限的不同类型的β(1-40)聚集体。此外,还揭示了超出光学衍射极限的β(1-40)聚集体的长度依赖性毒性效应。早期长度为187+/-3.9 nm的短淀粉样蛋白聚集体比细长的淀粉样纤维毒性更大。其次,用短杆菌肽S(GS-2)将长纤维分解成短纤维可能会增强细胞毒性。这些结果为纳米功能成像功能性荧光团的建立奠定了基础,也为淀粉样肽的形态依赖性细胞毒性提供了深入的了解。

著录项

  • 来源
    《ACS nano》 |2021年第1期|共10页
  • 作者单位

    Nankai Univ Coll Chem State Key Lab Med Chem Biol Tianjin Key Lab Biosensing &

    Mol Recognit Tianjin 300071 Peoples R China;

    Zhengzhou Univ Coll Chem Henan Joint Int Res Lab Green Construct Funct Mol Zhengzhou 450001 Peoples R China;

    Hunan Normal Univ Coll Chem &

    Chem Engn Changsha 410081 Peoples R China;

    Zhengzhou Univ Coll Chem Henan Joint Int Res Lab Green Construct Funct Mol Zhengzhou 450001 Peoples R China;

    Nankai Univ Coll Chem State Key Lab Med Chem Biol Tianjin Key Lab Biosensing &

    Mol Recognit Tianjin 300071 Peoples R China;

    Nankai Univ Coll Chem State Key Lab Med Chem Biol Tianjin Key Lab Biosensing &

    Mol Recognit Tianjin 300071 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子物理学、原子物理学;
  • 关键词

    amyloid fibrils; carbon dots; nanoscopic imaging; blinking; cytotoxicity;

    机译:淀粉样纤维;碳点;纳米成像;眨眼;细胞毒性;

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