Photoacoustic staging of nodal metastases using SPIOs: Comparison between in vivo, in toto and ex vivo imaging in a rat model

IF 0.3 Q4 SPECTROSCOPY Biomedical Spectroscopy and Imaging Pub Date : 2017-06-20 DOI:10.3233/BSI-150127
D. Grootendorst, Raluca M. Fratila, Joost J. Pouw, B. T. Haken, R. Wezel, S. Rottenberg, W. Steenbergen, S. Manohar, T. Ruers
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引用次数: 2

Abstract

Background and objectives: To determine prognosis and treatment, accurate nodal staging is essential in many tumor types. After injection of clinical grade superparamagnetic iron oxide (SPIO) nanoparticles, it has been shown that metastatic lymph nodes can be distinguished from benign specimens using MR imaging. However, MR does not benefit per-operative nodal staging which requires a non-ionizing, small volume, high resolution, fast imaging technique. In vivo non-invasive photoacoustic (PA) imaging of lymph nodes might facilitate nodal staging during surgery, thereby benefiting both surgeon and patient. Materials and methods: In order to investigate the feasibility of an in vivo nodal staging approach using photoacoustics, six Mat-lylu inoculated Copenhagen rats were photo-acoustically imaged after injection of a new Class IIa medical device SPIO magnetic tracer (Sienna+). Lymph nodes were imaged in vivo, in toto (after euthanization) and ex vivo using multiple wavelength illumination. Results were compared with MRI, immunohistochemistry and photographs of the sectioned nodes. Results: These experiments demonstrate that in an ex vivo setting, the PA contrast of Sienna+ is able to facilitate a distinction between metastatic and benign nodes. A non-invasive distinction between both groups is partially impeded by the low amount of PA contrast generated by the SPIO particles compared to that of endogenous absorbers such as hemoglobins. Conclusions: This comparison between in vivo, in toto and ex vivo PA imaging of lymph nodes after SPIO injection demonstrates that the clinical potential of combined PA/SPIO staging should initially be exploited in an ex vivo setting. Improved distinction between chromophores by for example multi-spectral unmixing might in the near future enable non-invasive assessment of nodal involvement.
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使用SPIO进行淋巴结转移的光声分期:大鼠模型中体内、全身和离体成像的比较
背景和目的:在许多肿瘤类型中,准确的淋巴结分期是确定预后和治疗的必要条件。注射临床级超顺磁性氧化铁(SPIO)纳米颗粒后,已经表明可以通过磁共振成像将转移性淋巴结与良性标本区分开来。然而,MR并不有利于术前淋巴结分期,后者需要非电离、小体积、高分辨率、快速成像技术。活体无创光声(PA)成像可以促进手术期间淋巴结的分期,从而使外科医生和患者都受益。材料和方法:为了研究光声学在体内淋巴结分期方法的可行性,6只接种Mat-lylu的哥本哈根大鼠在注射一种新型IIa类医疗器械SPIO磁示踪剂(Sienna+)后进行光声成像。采用多波长照明对体内、体内(安乐死后)和离体淋巴结进行成像。结果与MRI、免疫组化及淋巴结切片照片进行比较。结果:这些实验表明,在离体环境下,Sienna+的PA对比能够促进转移性和良性淋巴结的区分。与内源性吸收剂(如血红蛋白)相比,SPIO颗粒产生的PA造影剂量较低,这在一定程度上阻碍了两组之间的非侵入性区分。结论:SPIO注射后的体内、体内和离体淋巴结PA成像的比较表明,PA/SPIO联合分期的临床潜力应首先在离体环境中开发。在不久的将来,通过多光谱解混等方法改进的发色团之间的区分可能会使对淋巴结参与的非侵入性评估成为可能。
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期刊介绍: Biomedical Spectroscopy and Imaging (BSI) is a multidisciplinary journal devoted to the timely publication of basic and applied research that uses spectroscopic and imaging techniques in different areas of life science including biology, biochemistry, biotechnology, bionanotechnology, environmental science, food science, pharmaceutical science, physiology and medicine. Scientists are encouraged to submit their work for publication in the form of original articles, brief communications, rapid communications, reviews and mini-reviews. Techniques covered include, but are not limited, to the following: • Vibrational Spectroscopy (Infrared, Raman, Teraherz) • Circular Dichroism Spectroscopy • Magnetic Resonance Spectroscopy (NMR, ESR) • UV-vis Spectroscopy • Mössbauer Spectroscopy • X-ray Spectroscopy (Absorption, Emission, Photoelectron, Fluorescence) • Neutron Spectroscopy • Mass Spectroscopy • Fluorescence Spectroscopy • X-ray and Neutron Scattering • Differential Scanning Calorimetry • Atomic Force Microscopy • Surface Plasmon Resonance • Magnetic Resonance Imaging • X-ray Imaging • Electron Imaging • Neutron Imaging • Raman Imaging • Infrared Imaging • Terahertz Imaging • Fluorescence Imaging • Near-infrared spectroscopy.
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