首页> 外文期刊>Cancer research: The official organ of the American Association for Cancer Research, Inc >Phosphorescent light-emitting iridium complexes serve as a hypoxia-sensing probe for tumor imaging in living animals.
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Phosphorescent light-emitting iridium complexes serve as a hypoxia-sensing probe for tumor imaging in living animals.

机译:发出磷光的铱配合物可作为低氧传感探针,用于活体动物的肿瘤成像。

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摘要

Iridium complex is a promising organic light-emitting diode material for next generation video displays that emits phosphorescence quenched by oxygen. We used this oxygen-quenching feature for imaging tumor hypoxia. Red light-emitting Ir(btp)(2)(acac) (BTP) presented hypoxia-dependent light emission in culture cell lines, whose intensity was in parallel with hypoxia-inducible factor-1alpha images. BTP was further applied to imaging five nude mouse transplanted with tumors. All tumors presented a bright BTP-emitting image even 5 minutes after injection. The minimal image recognition size was approximately 2 mm in diameter. By morphologic examination and phosphorescence lifetime measurement, BTP appeared to localize to the tumor cells. Because BTP is easily modifiable, we synthesized BTP analogues with a longer excitation/emission wavelength. One of them, BTPHSA, depicted clear imaging from tumors transplanted 6 to 7 mm deep from the skin surface. We suggest that iridium complex materials have a vast potential for imaging hypoxic lesions such as tumor tissues.
机译:铱配合物是用于下一代视频显示器的有前途的有机发光二极管材料,该材料可发出被氧气淬灭的磷光。我们使用这种氧猝灭功能来成像肿瘤缺氧。发出红色光的Ir(btp)(2)(acac)(BTP)在培养细胞系中呈现低氧依赖性发光,其强度与低氧诱导因子1α图像平行。 BTP进一步应用于对五只移植有肿瘤的裸鼠进行成像。注射后5分钟,所有肿瘤均呈现出明亮的BTP发射图像。最小图像识别尺寸约为直径2毫米。通过形态学检查和磷光寿命测量,BTP似乎定位于肿瘤细胞。由于BTP易于修改,因此我们合成了具有更长激发/发射波长的BTP类似物。其中之一,BTPHSA,描绘了从距皮肤表面6至7毫米深的移植肿瘤的清晰影像。我们建议铱复合材料具有成像缺氧性病变(如肿瘤组织)的巨大潜力。

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