Cross-scale tracing of nanoparticles and tumors at the single-cell level using the whole-lung atlas

Author:

Cao Zeying12ORCID,Zhao Yanli3,Sun Hongyu1,Sun Xian4,Zhang Yu4,Zhang Shuo3,Wang Caifen1,Xiong Ting15,Naeem Abid6,Zhang Jiwen12567ORCID,Yin Xianzhen34ORCID

Affiliation:

1. Center for Drug Delivery System, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.

2. University of Chinese Academy of Sciences, Beijing 100049, China.

3. Lingang Laboratory, Shanghai 201602, China.

4. Center for MOST and Image Fusion Analysis, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201210, China.

5. College of Pharmacy, Shenyang Pharmaceutical University, Shenyang 110016, China.

6. Key Laboratory of Modern Preparation of TCM, Ministry of Education, Jiangxi University of Traditional Chinese Medicine, Nanchang, 330004, China.

7. NMPA Key Laboratory for Quality Research and Evaluation of Pharmaceutical Excipients, National Institutes for Food and Drug Control, Beijing 100050, China.

Abstract

Currently, the effectiveness of oncotherapy is limited by tumor heterogeneities, which presents a huge challenge for the development of nanotargeted drug delivery systems (DDSs). Therefore, it is important to resolve the spatiotemporal interactions between tumors and nanoparticles. However, targeting evaluation has been limited by particle visualization due to the gap between whole-organ scale and subcellular precision. Here, a high-precision three-dimensional (3D) visualization of tumor structure based on the micro-optical sectioning tomography (MOST) system and fluorescence MOST (fMOST) system is presented to clarify 3D spatial distribution of nanoparticles within the tumor. We demonstrate that through the MOST/fMOST system, it is possible to reveal multidimensional and cross-scale correlations between the tumor structure and nanoparticle distribution to remodel the tumor microenvironment and explore the structural parameters of vasculature. This visualization methodology provides an accurate assessment of the efficacy, distribution, and targeting efficiency of DDSs for oncotherapy compared to available approaches.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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