Szulczewski Joseph M, Yesilkoy Filiz, Ulland Tyler K, Bartels Randy, Millis Bryan A, Boppart Stephen A, Eliceiri Kevin W
University of North Carolina-Chapel Hill, Department of Pharmacology, Chapel Hill, North Carolina, United States.
University of Wisconsin-Madison, Department of Biomedical Engineering, Madison, Wisconsin, United States.
J Biomed Opt. 2024 Jun;29(Suppl 2):S22717. doi: 10.1117/1.JBO.29.S2.S22717. Epub 2024 Dec 20.
Advances in label-free imaging have impacted many areas of biological and biomedical imaging ranging from cell biology and cancer to pathology and neuroscience. Despite the great progress and advantages of these methods, it is clear that to realize their full potential, validation by extrinsic labels and probes is critically needed.
This perspective calls for developing and applying innovative labels and probes to validate both existing and emerging label-free imaging methods.
Major representative types of label-free imaging methods are briefly presented discussing their advantages and differing contrasts. Their biological applications are also reviewed with a focus on how validation of label-free methods with carefully developed labeling approaches will greatly aid in further intrinsic contrast imaging adoption and likely lead to more sophisticated image-based biomarkers and a better understanding of the underlying signals.
Expanded efforts in extrinsic label validation will significantly push forward the utilization and adoption of label-free methods both in basic research and clinical models.
无标记成像技术的进步已影响到生物和生物医学成像的许多领域,从细胞生物学、癌症到病理学和神经科学。尽管这些方法取得了巨大进展并具有诸多优势,但显然要充分发挥其潜力,迫切需要通过外在标记和探针进行验证。
本观点呼吁开发和应用创新的标记和探针,以验证现有的和新兴的无标记成像方法。
简要介绍了无标记成像方法的主要代表性类型,讨论了它们的优势和不同的对比度。还回顾了它们的生物学应用,重点关注如何通过精心开发的标记方法对无标记方法进行验证,这将极大地有助于进一步采用内在对比度成像,并可能产生更复杂的基于图像的生物标志物,以及更好地理解潜在信号。
在外在标记验证方面加大努力将显著推动无标记方法在基础研究和临床模型中的应用和采用。