Institute of Advanced Materials, Faculty of Chemistry, Wroclaw University of Science and Technology, 50-370 Wroclaw, Poland.
Laboratoire Charles Coulomb (L2C), UMR5221, Université de Montpellier (CNRS), 34095 Montpellier, France.
ACS Appl Mater Interfaces. 2023 Jul 12;15(27):32717-32731. doi: 10.1021/acsami.3c05656. Epub 2023 Jun 27.
Non-invasive imaging of morphological changes in biologically relevant lipidic mesophases is essential for the understanding of membrane-mediated processes. However, its methodological aspects need to be further explored, with particular attention paid to the design of new excellent fluorescent probes. Here, we have demonstrated that bright and biocompatible folic acid-derived carbon nanodots (FA CNDs) may be successfully applied as fluorescent markers in one- and two-photon imaging of bioinspired myelin figures (MFs). Structural and optical properties of these new FA CNDs were first extensively characterized; they revealed remarkable fluorescence performance in linear and non-linear excitation regimes, justifying further applications. Then, confocal fluorescence microscopy and two-photon excited fluorescence microscopy were used to investigate a three-dimensional distribution of FA CNDs within the phospholipid-based MFs. Our results showed that FA CNDs are effective markers for imaging various forms and parts of multilamellar microstructures.
生物相关脂相形态变化的无创成像对于理解膜介导的过程至关重要。然而,其方法学方面需要进一步探索,特别关注新的优秀荧光探针的设计。在这里,我们已经证明,明亮且生物相容的叶酸衍生碳纳米点(FA CNDs)可用作仿生髓鞘图形(MFs)的单光子和双光子成像中的荧光标记物。首先对这些新型 FA CND 的结构和光学性质进行了广泛的表征;它们在线性和非线性激发状态下表现出出色的荧光性能,为进一步的应用提供了依据。然后,使用共聚焦荧光显微镜和双光子激发荧光显微镜研究了基于磷脂的 MFs 中 FA CNDs 的三维分布。我们的结果表明,FA CNDs 是用于成像各种形式和部分多层微结构的有效标记物。