首页> 美国卫生研究院文献>Biophysical Journal >Noninvasive imaging of the distribution in oxygen in tissue in vivo using near-infrared phosphors.
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Noninvasive imaging of the distribution in oxygen in tissue in vivo using near-infrared phosphors.

机译:使用近红外荧光粉对体内组织中氧气的分布进行非侵入性成像。

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摘要

A newly developed water-soluble phosphor suitable for measuring oxygen pressure in the blood (Green 2W) was used for noninvasive, in vivo imaging of oxygen distribution in the vascular systems of mice. Oxygen quenches the phosphorescence of Green 2W, measured in the presence of 2% albumin, according to the Stern-volmer relationship. This oxygen-dependent quenching of phosphorescence has been used to obtain digital maps of the oxygen distribution in the tissue vasculature. EMT-6 mammary carcinoma tumors were grown by injecting 1 x 10(6) cells in 0.1-ml carrier into the subcutaneous space over the muscle on the hindquarter. When the tumors were approximately 8 mm in diameter, 300 micrograms of phosphorescence probe (Green 2W; absorption maximum 636 nm) was injected into the tail vein. The mice were immobilized with intraperotoneal Ketamine (133 mg/kg) and Xylazine (10 mg/kg) and illuminated with flashes (< 4-microseconds t1/2) of light of 630 +/- 12 nm. The emitted phosphorescence (790-nm maximum) was imaged an intensified CCD camera. Images were collected beginning at 30, 50, 80, 120, 180, 240, 420, and 2500 microseconds after the flash and used to calculate digital maps of the phosphorescence lifetimes and oxygen pressure. Both the illumination light and the phosphorescence were in the near-infrared region of the spectrum, where tissue has greatly decreased absorbance. The light therefore readily passed through the skin and centimeter thicknesses of tissue. The oxygen maps could be obtained by illuminating from the side of the mouse opposite the camera (and tumor). The tumors were readily observed as regions with oxygen pressures substantially below those of the surrounding tissue. Thus, phosphorescence measurements can noninvasively detect volumes of tissue with below-normal oxygen pressure in the presence of much larger volumes of tissue with normal oxygen pressures. In addition, tissue oxygen pressures can be monitored in real time, even through centimeter thicknesses of tissue.
机译:一种适用于测量血液中氧气压力(绿色2W)的新开发的水溶性荧光粉用于对小鼠血管系统中的氧气分布进行无创的体内成像。根据斯特恩-沃尔默关系,在2%白蛋白存在下测得的氧气会淬灭Green 2W的磷光。这种依赖氧的磷光猝灭已用于获得组织脉管系统中氧分布的数字图。通过将0.1 ml载体中的1 x 10(6)细胞注射到后肢肌肉上方的皮下空间中,来生长EMT-6乳腺癌肿瘤。当肿瘤的直径约为8 mm时,将300微克的磷光探针(绿色2W;最大吸收636 nm)注入尾静脉。用腹膜内氯胺酮(133mg / kg)和赛拉嗪(10mg / kg)固定小鼠,并用630 +/- 12nm的闪光(<4微秒t1 / 2)照明。发射的磷光(最大790 nm)用增强型CCD相机成像。在闪光后的30、50、80、120、180、240、420和2500微秒开始收集图像,并将其用于计算磷光寿命和氧气压力的数字图。照明光和磷光都在光谱的近红外区域,在该区域组织的吸光度大大降低。因此,光很容易穿过皮肤和1厘米厚的组织。氧气图可以通过从与相机(和肿瘤)相对的鼠标一侧照亮而获得。容易观察到肿瘤的氧压基本上低于周围组织的氧压。因此,磷光测量可以在存在大量具有正常氧气压力的组织的情况下以非侵入性的方式检测处于低于正常氧气压力的组织的体积。此外,甚至可以通过厘米厚度的组织实时监测组织的氧气压力。

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