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Photoacoustic molecular imaging of small animals in vivo

机译:体内小动物的光声分子成像

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Molecular imaging is a newly emerging field in which the modern tools of molecular and cell biology have been married to state-of-the-art technologies for noninvasive imaging. The study of molecular imaging will lead to better methods for understanding biological processes as well as diagnosing and managing disease. Here we present noninvasive in vivo spectroscopic photoacoustic tomography (PAT)-based molecular imaging of αvβ3 integrin in a nude mouse U87 brain tumor. PAT combines high optical absorption contrast and high ultrasonic resolution by employing short laser pulses to generate acoustic waves in biological tissues through thermoelastic expansion. Spectroscopic PAT-based molecular imaging offers the separation of the contributions from different absorbers based on the differences in optical absorption spectra among those absorbers. In our case, in the near infrared (NIR) range, oxy-heamoglobin (O2Hb), deoxy-heamoglobin (HHb) and the injected αvβ3-targeted peptide-ICG conjugated NIR fluorescent contrast agent are the three main absorbers. Therefore, with the excitation by multiple wavelength laser pulses, spectroscopic PAT-based molecular imaging not only provides the level of the contrast agent accumulation in the U87 glioblastoma tumor, which is related to the metabolism and angiogenesis of the tumor, but also offers the information on tumor angiogenesis and tumor hypoxia.
机译:分子成像是一种新的新兴领域,其中分子和细胞生物学的现代工具已与无创成像的最先进技术结婚。分子成像的研究将导致了解生物过程的更好方法以及诊断和管理疾病。在这里,我们在裸鼠U87脑肿瘤中基于体内光谱光声断层扫描(PAT)的αvβ3整联蛋白的分子成像存在的非侵入性。通过采用短激光脉冲通过热弹性膨胀,结合高光学吸收对比度和高超声波分辨率来产生生物组织中的声波。基于光谱的帕特基分子成像提供了基于这些吸收剂中的光学吸收光谱的差异来分离不同吸收剂的贡献。在我们的情况下,在近红外(NIR)范围内,氧 - 铰孔叶蛋白(O 2 HB),脱氧 - 铰孔叶蛋白(HHB)和注射αvβ3靶向肽-CIR缀合的NIR荧光造环剂是三个主要吸收剂。因此,随着多个波长激光脉冲的激发,光谱帕特基分子成像不仅提供了U87胶质母细胞瘤肿瘤中造影剂积累的水平,这与肿瘤的代谢和血管生成有关,也提供了信息论肿瘤血管生成和肿瘤缺氧。

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