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Photothermal Optical Coherence Tomography of Epidermal Growth Factor Receptor in Live Cells Using Immunotargeted Gold Nanospheres

机译:免疫靶向金纳米球在活细胞中的表皮生长因子受体的光热光学相干断层扫描。

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摘要

Molecular imaging is a powerful tool for investigating disease processes and potential therapies in both in vivo and in vitro systems. However, high resolution molecular imaging has been limited to relatively shallow penetration depths that can be accessed with microscopy. Optical coherence tomography (OCT) is an optical analogue to ultrasound with relatively good penetration depth (1-2 mm) and resolution (∼1-10 μm). We have developed and characterized photothermal OCT as a molecular contrast mechanism that allows for high resolution molecular imaging at deeper penetration depths than microscopy. Our photothermal system consists of an amplitude-modulated heating beam that spatially overlaps with the focused spot of the sample arm of a spectral-domain OCT microscope. Validation experiments in tissuelike phantoms containing gold nanospheres that absorb at 532 nm revealed a sensitivity of 14 ppm nanospheres (weight/weight) in a tissuelike environment. The nanospheres were then conjugated to anti-EGFR, and molecular targeting was confirmed in cells that overexpress EGFR (MDA-MB-468) and cells that express low levels of EGFR (MDA-MB-435). Molecular imaging in three-dimensional tissue constructs was confirmed with a significantly lower photothermal signal (p < 0.0001) from the constructs composed of cells that express low levels of EGFR compared to the overexpressing cell constructs (300% signal increase). This technique could potentially augment confocal and multiphoton microscopy as a method for deep-tissue, depth-resolved molecular imaging with relatively high resolution and target sensitivity, without photobleaching or cytotoxicity.
机译:分子成像是研究体内和体外系统中疾病过程和潜在疗法的强大工具。但是,高分辨率分子成像已被限制为可以通过显微镜进行检查的相对较浅的穿透深度。光学相干断层扫描(OCT)是超声的光学类似物,具有相对较好的穿透深度(1-2 mm)和分辨率(〜1-10μm)。我们已经开发并表征了光热OCT作为分子对比机制,该机制可在比显微镜更深的穿透深度进行高分辨率分子成像。我们的光热系统由振幅调制的加热束组成,该束在空间上与光谱域OCT显微镜的样品臂的聚焦点重叠。在包含在532 nm处吸收的金纳米球的组织状模型中的验证实验表明,在组织状环境中灵敏度为14 ppm纳米球(重量/重量)。然后将纳米球与抗EGFR偶联,并在过度表达EGFR的细胞(MDA-MB-468)和表达低水平EGFR的细胞(MDA-MB-435)中确认了分子靶向。与过表达的细胞构建体相比,在表达低水平EGFR的细胞组成的构建体中,三维组织构建体中的分子成像具有明显更低的光热信号(p <0.0001)。这种技术有可能增强共聚焦和多光子显微镜技术,作为一种具有相对高分辨率和目标灵敏度的深组织,深度分辨分子成像的方法,而不会发生光致漂白或细胞毒性。

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