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利用叶酸受体靶向近红外分子成像进行经支气管实时肺肿瘤定位:动物模型中的概念验证研究

Transbronchial real-time lung tumor localization with folate receptor-targeted near-infrared molecular imaging: A proof of concept study in animal models.

作者信息

Ishiwata Tsukasa, Hiraishi Yoshihisa, Bernards Nicholas, Sata Yuki, Gregor Alexander, Aragaki Masato, Yasufuku Kazuhiro

机构信息

Division of Thoracic Surgery, Toronto General Hospital, University Health Network, Toronto, Ontario, Canada.

Division of Thoracic Surgery, Toronto General Hospital, University Health Network, Toronto, Ontario, Canada.

出版信息

J Thorac Cardiovasc Surg. 2023 Jun;165(6):e240-e251. doi: 10.1016/j.jtcvs.2022.09.042. Epub 2022 Sep 28.

Abstract

OBJECTIVE

The diagnostic yield of bronchoscopy is not satisfactory, even with recent navigation technologies, especially for tumors located outside of the bronchial lumen. Our objective was to perform a preclinical assessment of folate receptor-targeted near-infrared imaging-guided bronchoscopy to detect peribronchial tumors.

METHODS

Pafolacianine, a folate receptor-targeted molecular imaging agent, was used as a near-infrared fluorescent imaging agent. An ultra-thin composite optical fiberscope was used for laser irradiation and fluorescence imaging. Subcutaneous xenografts of KB cells in mice were used as folate receptor-positive tumors. Tumor-to-background ratio was calculated by the fluorescence intensity value of muscle tissues acquired by the ultra-thin composite optical fiberscope system and validated using a separate spectral imaging system. Ex vivo swine lungs into which pafolacianine-laden KB tumors were transplanted at various sites were used as a peribronchial tumor model.

RESULTS

With the in vivo murine model, tumor-to-background ratio observed by ultra-thin composite optical fiberscope peaked at 24 hours after pafolacianine injection (tumor-to-background ratio: 2.56 at 0.05 mg/kg, 2.03 at 0.025 mg/kg). The fluorescence intensity ratios between KB tumors and normal mouse lung parenchyma postmortem were 6.09 at 0.05 mg/kg and 5.08 at 0.025 mg/kg. In the peribronchial tumor model, the ultra-thin composite optical fiberscope system could successfully detect fluorescence from pafolacianine-laden folate receptor-positive tumors with 0.05 mg/kg at the carina and those with 0.025 mg/kg and 0.05 mg/kg in the peripheral airway.

CONCLUSIONS

Transbronchial detection of pafolacianine-laden folate receptor-positive tumors by near-infrared imaging was feasible in ex vivo swine lungs. Further in vivo preclinical assessment is needed to confirm the feasibility of this technology.

摘要

目的

即使采用了最新的导航技术,支气管镜检查的诊断率仍不尽人意,尤其是对于位于支气管腔外的肿瘤。我们的目的是对叶酸受体靶向近红外成像引导的支气管镜检查进行临床前评估,以检测支气管周围肿瘤。

方法

帕氟拉西阿尼,一种叶酸受体靶向分子成像剂,用作近红外荧光成像剂。使用超薄复合光纤镜进行激光照射和荧光成像。将KB细胞皮下异种移植到小鼠体内作为叶酸受体阳性肿瘤。通过超薄复合光纤镜系统获取的肌肉组织荧光强度值计算肿瘤与背景比值,并使用单独的光谱成像系统进行验证。将负载帕氟拉西阿尼的KB肿瘤移植到不同部位的离体猪肺用作支气管周围肿瘤模型。

结果

在体内小鼠模型中,超薄复合光纤镜观察到的肿瘤与背景比值在注射帕氟拉西阿尼后24小时达到峰值(肿瘤与背景比值:0.05mg/kg时为2.56,0.025mg/kg时为2.03)。死后KB肿瘤与正常小鼠肺实质之间的荧光强度比值在0.05mg/kg时为6.09,在0.025mg/kg时为5.08。在支气管周围肿瘤模型中,超薄复合光纤镜系统能够成功检测到隆突处0.05mg/kg以及外周气道中0.025mg/kg和0.05mg/kg负载帕氟拉西阿尼的叶酸受体阳性肿瘤的荧光。

结论

在离体猪肺中,通过近红外成像经支气管检测负载帕氟拉西阿尼的叶酸受体阳性肿瘤是可行的。需要进一步的体内临床前评估来确认该技术的可行性。

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