Zhang Yawen, Wu Weiyue, Shen Hongdou, Xu Juan, Jiang Qing, Han Xiaodong, Cai Pingqiang
Medical School, Nanjing University, Nanjing 210093, P. R. China.
Chemistry and Biomedicine Innovation Center Nanjing University, Nanjing 210093, P. R. China.
Chem Biomed Imaging. 2024 Jun 18;2(8):542-559. doi: 10.1021/cbmi.4c00013. eCollection 2024 Aug 26.
The quest for high spatial resolution in molecular identification is critical across various domains, including physiology, pathology, and pharmaceutical research. Super-resolution microscopy has made strides by surpassing the Abbe diffraction limit, but it relies on sophisticated equipment and is limited by the sample size to handle. Expansion microscopy, an emerging technique, has broadened the scope of subdiffraction imaging. It chemically preserves tissues at a large scale and physically enlarges them 4-20 times linearly, enabling super-resolution observation. This review begins by exploring the foundational concepts of tissue clearing and the latest methodologies in the field. It then delves into the core tenets of expansion microscopy, covering a range of protocols. The review spotlights advancements in enhancing resolution, improving labeling efficiency, and ensuring isotropic tissue expansion. Finally, the review offers insights into the prospective evolution of expansion microscopy. It emphasizes the potential role of machine learning in refining image quality and in the autonomous extraction of data, which could revolutionize the way we visualize and understand biological tissues.
在包括生理学、病理学和药物研究在内的各个领域,追求分子识别中的高空间分辨率至关重要。超分辨率显微镜已取得进展,超越了阿贝衍射极限,但它依赖于复杂的设备,并且受限于可处理的样本大小。膨胀显微镜作为一种新兴技术,拓宽了亚衍射成像的范围。它能大规模化学保存组织,并将其线性物理放大4至20倍,实现超分辨率观察。本综述首先探讨组织透明化的基础概念以及该领域的最新方法。然后深入研究膨胀显微镜的核心原则,涵盖一系列方案。该综述突出了在提高分辨率、改善标记效率和确保各向同性组织膨胀方面的进展。最后,该综述对膨胀显微镜的未来发展提供了见解。它强调了机器学习在改善图像质量和自主提取数据方面的潜在作用,这可能会彻底改变我们可视化和理解生物组织的方式。