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动态合成扫描光声追踪技术可在体内监测外源性探针的肝脏和肾脏清除途径。

Dynamic synthetic-scanning photoacoustic tracking monitors hepatic and renal clearance pathway of exogeneous probes in vivo.

作者信息

Lv Jing, Lan Hengrong, Qin Aoji, Sun Tong, Shao Dan, Gao Fei, Yao Junjie, Avanaki Kamran, Nie Liming

机构信息

Guangdong Cardiovascular Institute, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Guangzhou, 510080, China.

Medical Research Institute, Guangdong Provincial People's Hospital, Guangdong Academy of Medical Sciences, Southern Medical University, Guangzhou, 510080, China.

出版信息

Light Sci Appl. 2024 Oct 31;13(1):304. doi: 10.1038/s41377-024-01644-6.

Abstract

Advancements in precision medicine necessitate understanding drug clearance pathways, especially in organs like the liver and kidneys. Traditional techniques such as PET/CT pose radiation hazards, whereas optical imaging poses challenges in maintaining both depth penetration and high resolution. Moreover, very few longitudinal studies have been performed for drug candidates for different symptoms. Leveraging non-ionizing photoacoustic tomography for deep tissue imaging, we developed a spatiotemporally resolved clearance pathway tracking (SRCPT) method, providing unprecedented insights into drug clearance dynamics within vital organs. SRCPT addresses challenges like laser fluence attenuation, enabling dynamic visualization of drug clearance pathways and essential parameter extraction. We employed a novel frequency component selection based synthetic aperture focusing technique (FCS-SAFT) with respiratory-artifacts-free weighting factors to enhance three-dimensional imaging resolutions. Inspired by this, we investigated the clearance pathway of a clinical drug, mitoxantrone, revealing reduced liver clearance when hepatic function is impaired. Furthermore, immunoglobulin G clearance analysis revealed significant differences among mice with varying renal injury degrees. The accuracy of our method was validated using a double-labeled probe [Ga]DFO-IRDye800CW, showing a strong positive correlation between SRCPT and PET. We believe that this powerful SRCPT promises precise mapping of drug clearance pathways and enhances diagnosis and treatment of liver and kidney-related diseases.

摘要

精准医学的进步需要了解药物清除途径,尤其是在肝脏和肾脏等器官中。传统技术如PET/CT存在辐射危害,而光学成像在保持深度穿透和高分辨率方面面临挑战。此外,针对不同症状的候选药物进行的纵向研究非常少。利用非电离光声断层扫描进行深层组织成像,我们开发了一种时空分辨清除途径追踪(SRCPT)方法,为重要器官内的药物清除动力学提供了前所未有的见解。SRCPT解决了激光能量衰减等挑战,能够动态可视化药物清除途径并提取关键参数。我们采用了一种基于新型频率分量选择的合成孔径聚焦技术(FCS-SAFT)以及无呼吸伪影加权因子来提高三维成像分辨率。受此启发,我们研究了临床药物米托蒽醌的清除途径,发现肝功能受损时肝脏清除率降低。此外,免疫球蛋白G清除分析揭示了不同肾损伤程度小鼠之间的显著差异。我们使用双标记探针[Ga]DFO-IRDye800CW验证了我们方法的准确性,显示SRCPT与PET之间存在强正相关。我们相信,这种强大的SRCPT有望精确绘制药物清除途径,并提高肝脏和肾脏相关疾病的诊断和治疗水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70e0/11528052/29c2ae4f7c59/41377_2024_1644_Fig1_HTML.jpg

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