Department of Pediatrics and Adolescent Medicine, University Hospital Erlangen, Friedrich-Alexander-Universität (FAU) Erlangen-Nürnberg, 91054, Erlangen, Germany.
Department of Physics and Cancer Research UK Cambridge Institute, University of Cambridge, Cambridge, CB2 0RE, UK.
Adv Sci (Weinh). 2023 Jun;10(18):e2300564. doi: 10.1002/advs.202300564. Epub 2023 Apr 21.
Optoacoustic imaging (OAI) enables microscale imaging of endogenous chromophores such as hemoglobin at significantly higher penetration depths compared to other optical imaging technologies. Raster-scanning optoacoustic mesoscopy (RSOM) has recently been shown to identify superficial microvascular changes associated with human skin pathologies. In animal models, the imaging depth afforded by RSOM can enable entirely new capabilities for noninvasive imaging of vascular structures in the gastrointestinal tract, but exact localization of intra-abdominal organs is still elusive. Herein the development and application of a novel transrectal absorber guide for RSOM (TAG-RSOM) is presented to enable accurate transabdominal localization and assessment of colonic vascular networks in vivo. The potential of TAG-RSOM is demonstrated through application during mild and severe acute colitis in mice. TAG-RSOM enables visualization of transmural vascular networks, with changes in colon wall thickness, blood volume, and OAI signal intensities corresponding to colitis-associated inflammatory changes. These findings suggest TAG-RSOM can provide a novel monitoring tool in preclinical IBD models, refining animal procedures and underlines the capabilities of such technologies to address inflammatory bowel diseases in humans.
光声成像是一种能够对组织内固有发色团(如血红蛋白)进行微尺度成像的技术,与其他光学成像技术相比,它具有更高的穿透深度。最近的研究表明,光栅扫描光声介观成像(RSOM)可用于识别与人类皮肤病变相关的浅表微血管变化。在动物模型中,RSOM 提供的成像深度可实现对胃肠道内血管结构进行非侵入性成像的全新能力,但对腹腔内器官的确切定位仍难以实现。本文提出了一种新型经直肠吸收体引导的 RSOM(TAG-RSOM),用于实现对体内结肠血管网络的准确经腹定位和评估。通过在轻度和重度急性结肠炎小鼠中应用,证明了 TAG-RSOM 的潜力。TAG-RSOM 可实现对壁内血管网络的可视化,并且结肠壁厚度、血容量和光声信号强度的变化与结肠炎相关的炎症变化相对应。这些发现表明,TAG-RSOM 可为临床前 IBD 模型提供一种新型监测工具,完善动物操作流程,并强调了此类技术在治疗人类炎症性肠病方面的应用潜力。