Raju Gagan, Gratiet Aymeric Le, Sancataldo Giuseppe, Zhuo Guan-Yu, Kistenev Yury, Das Subir, Patil Ajeetkumar, Mazumder Nirmal
Department of Biophysics, Manipal School of Life Sciences, Manipal Academy of Higher Education, Manipal, Karnataka 576104, India.
Universite de Rennes, CNRS, Institut FOTON - UMR 6082, F‑22305 Lannion France.
Adv Drug Deliv Rev. 2025 Mar;218:115520. doi: 10.1016/j.addr.2025.115520. Epub 2025 Jan 20.
Light sheet fluorescence microscopy (LSFM) has emerged as a transformative imaging technique in the study of drug delivery and embryonic development, offering high-resolution, real-time visualization with minimal phototoxicity. This review examines the application of LSFM in tracking drug pharmacokinetics, tissue-specific targeting, and drug efficacy during critical phases of embryonic development. Recent advancements in fluorescent labeling and machine learning integration have enabled more precise monitoring of drug release, distribution, and interaction with developing tissues. The ability of LSFM to capture long-term dynamics at single-cell resolution has revolutionized drug discovery, especially in nanomedicine and targeted therapies. By integrating LSFM with multimodal imaging and AI-driven data analysis, researchers are now better equipped to explore complex biological processes and optimize drug delivery in a highly controlled, minimally invasive manner. Finally, the review highlights the pivotal role of LSFM in advancing drug delivery research, addressing existing challenges, and unlocking new frontiers in clinical applications.
光片荧光显微镜(LSFM)已成为药物递送和胚胎发育研究中的一种变革性成像技术,它能以最小的光毒性实现高分辨率的实时可视化。本文综述了LSFM在胚胎发育关键阶段追踪药物药代动力学、组织特异性靶向和药物疗效方面的应用。荧光标记和机器学习整合方面的最新进展使得对药物释放、分布以及与发育中组织相互作用的监测更加精确。LSFM以单细胞分辨率捕获长期动态变化的能力彻底改变了药物发现,尤其是在纳米医学和靶向治疗领域。通过将LSFM与多模态成像和人工智能驱动的数据分析相结合,研究人员现在能够更好地探索复杂的生物过程,并以高度可控、微创的方式优化药物递送。最后,本文综述强调了LSFM在推进药物递送研究、应对现有挑战以及开拓临床应用新领域方面的关键作用。