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游离态和病毒衣壳纳米包裹态近红外染料的光学特性和肿瘤成像能力

Optical Characteristics and Tumor Imaging Capabilities of Near Infrared Dyes in Free and Nano-Encapsulated Formulations Comprised of Viral Capsids.

机构信息

Department of Bioengineering, University of California , Riverside, California 92521, United States.

出版信息

ACS Appl Mater Interfaces. 2017 Jun 14;9(23):19601-19611. doi: 10.1021/acsami.7b03373. Epub 2017 May 31.

Abstract

Near infrared (NIR) fluorescent molecules and nanosized structures can serve as potential optical probes for image-guided removal of small tumor nodules (≲ 1 mm diameter). Although indocyanine green (ICG) remains as the only FDA-approved NIR dye, other organic dyes are under extensive development for enhanced imaging capabilities. One such dye is BrCy106-NHS where bromine is substituted for aromatic structures in cyanine dyes. Herein, we investigate the absorption and fluorescence characteristics of ICG and BrCy106-NHS, and quantitatively assess their tumor imaging capabilities in free (non-encapsulated) and a nano-encapsulated form that utilizes the capsid protein (CP) from genome-depleted plant-infecting brome mosaic virus as the encapsulating shell. We refer to these nanoconstructs as optical viral ghosts (OVGs). For example, when fabricated at CP to dye concentration ratio of 200, value of the spectrally integrated fluorescence emission for BrCy106-NHS-doped OVGs is ∼60 times higher than that of ICG-doped OVGs. Our analysis of homogenized mice intraperitoneal tumors indicate that the averaged total fluorescence emission associated with the use of BrCy106-NHS-doped can be at least about 44 times greater than that of ICG-doped OVGs. Our results suggest that OVGs containing BrCy106-NHS may potentially serve as effective optical probes for tumor imaging.

摘要

近红外(NIR)荧光分子和纳米结构可以作为潜在的光学探针,用于引导切除小肿瘤结节(≲1 毫米直径)。虽然吲哚菁绿(ICG)仍然是唯一获得 FDA 批准的 NIR 染料,但其他有机染料也在广泛开发中,以增强成像能力。其中一种染料是 BrCy106-NHS,其中溴取代了菁染料中的芳构结构。在此,我们研究了 ICG 和 BrCy106-NHS 的吸收和荧光特性,并定量评估了它们在游离(非封装)和纳米封装形式下的肿瘤成像能力,纳米封装形式利用基因组缺失的植物感染 Bromus mosaic virus 的衣壳蛋白(CP)作为封装壳。我们将这些纳米结构称为光学病毒幽灵(OVG)。例如,当 CP 与染料的浓度比为 200 时,掺杂 BrCy106-NHS 的 OVG 的光谱积分荧光发射值大约是掺杂 ICG 的 OVG 的 60 倍。我们对匀浆化的小鼠腹腔肿瘤的分析表明,使用掺杂 BrCy106-NHS 的 OVG 时,与总荧光发射相关的平均值至少可以比掺杂 ICG 的 OVG 高约 44 倍。我们的结果表明,含有 BrCy106-NHS 的 OVG 可能潜在地作为肿瘤成像的有效光学探针。

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