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Hypoxia Targeted Carbon Nanotubes as a Sensitive Contrast Agent for Photoacoustic Imaging of Tumors

机译:缺氧靶向碳纳米管作为肿瘤光声成像的灵敏对比剂

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Development of new and efficient contrast agents is of fundamental importance to improve detection sensitivity of smaller lesions. Within the family of nanomaterials, carbon nanotubes (CNT) not only have emerged as a new alternative and efficient transporter and translocater of therapeutic molecules but also as a photoacoustic molecular imaging agent owing to its strong optical absorption in the near-infrared region. Drugs, Antibodies and nucleic acids could functionalize the CNT and prepare an appropriate system for delivering the cargos to cells and organs. In this work, we present a novel photoacoustic contrast agent which is based on a unique hypoxic marker in the near infrared region, 2-nitroimidazole -bis carboxylic acid derivative of Indocyanine Green conjugated to single walled carbon nanotube (SWCNT-2nitroimidazole-ICG). The 2-nitroimidazole-ICG has an absorption peak at 755 nm and an extinction coefficient of 20,5222 M~(-1)cm~(-1). The conjugation of this marker with SWCNT shows more than 25 times enhancement of optical absorption of carbon nanotubes in the near infrared region. This new conjugate has been optically evaluated and shows promising results for high contrast photoacoustic imaging of deeply located tumors. The conjugate specifically targets tumor hypoxia, an important indicator of tumor metabolism and tumor therapeutic response. The detection sensitivity of the new contrast agent has been evaluated in-vitro cell lines and with in-vivo tumors in mice.
机译:开发新型高效的造影剂对于提高较小病变的检测灵敏度至关重要。在纳米材料家族中,碳纳米管(CNT)不仅已成为治疗分子的新型替代且高效的转运体和易位子,而且由于其在近红外区域的强光吸收而已成为光声分子成像剂。药物,抗体和核酸可以使CNT功能化,并为将货物运送到细胞和器官准备合适的系统。在这项工作中,我们提出了一种新型的光声造影剂,它基于近红外区域中的独特缺氧标记物,吲哚菁绿的2-硝基咪唑-双羧酸衍生物与单壁碳纳米管共轭(SWCNT-2硝基咪唑-ICG)。 2-硝基咪唑-ICG在755 nm处有一个吸收峰,消光系数为20,5222 M〜(-1)cm〜(-1)。该标记物与SWCNT的结合显示出碳纳米管在近红外区域的光吸收提高了25倍以上。这种新的共轭物已经过光学评估,并显示了深部肿瘤的高对比度光声成像的有希望的结果。该缀合物专门针对肿瘤缺氧,肿瘤缺氧是肿瘤代谢和肿瘤治疗反应的重要指标。新的造影剂的检测灵敏度已在小鼠体内和体外肿瘤中进行了评估。

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