首页> 美国卫生研究院文献>Contrast Media Molecular Imaging >Mapping Extracellular pH of Gliomas in Presence of Superparamagnetic Nanoparticles: Towards Imaging the Distribution of Drug-Containing Nanoparticles and Their Curative Effect on the Tumor Microenvironment
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Mapping Extracellular pH of Gliomas in Presence of Superparamagnetic Nanoparticles: Towards Imaging the Distribution of Drug-Containing Nanoparticles and Their Curative Effect on the Tumor Microenvironment

机译:映射超顺磁性纳米粒子存在下胶质瘤的细胞外pH:成像含药纳米粒子的分布及其对肿瘤微环境的治疗作用

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摘要

Since brain's microvasculature is compromised in gliomas, intravenous injection of tumor-targeting nanoparticles containing drugs (D-NPs) and superparamagnetic iron oxide (SPIO-NPs) can deliver high payloads of drugs while allowing MRI to track drug distribution. However, therapeutic effect of D-NPs remains poorly investigated because superparamagnetic fields generated by SPIO-NPs perturb conventional MRI readouts. Because extracellular pH (pHe) is a tumor hallmark, mapping pHe is critical. Brain pHe is measured by biosensor imaging of redundant deviation in shifts (BIRDS) with lanthanide agents, by detecting paramagnetically shifted resonances of nonexchangeable protons on the agent. To test the hypothesis that BIRDS-based pHe readout remains uncompromised by presence of SPIO-NPs, we mapped pHe in glioma-bearing rats before and after SPIO-NPs infusion. While SPIO-NPs accumulation in the tumor enhanced MRI contrast, the pHe inside and outside the MRI-defined tumor boundary remained unchanged after SPIO-NPs infusion, regardless of the tumor type (9L versus RG2) or agent injection method (renal ligation versus coinfusion with probenecid). These results demonstrate that we can simultaneously and noninvasively image the specific location and the healing efficacy of D-NPs, where MRI contrast from SPIO-NPs can track their distribution and BIRDS-based pHe can map their therapeutic impact.
机译:由于脑的微血管在神经胶质瘤中受损,因此静脉内注射含有药物(D-NPs)和超顺磁性氧化铁(SPIO-NPs)的靶向肿瘤的纳米颗粒可以输送大量药物,同时允许MRI追踪药物分布。然而,由于SPIO-NP产生的超顺磁场干扰了常规MRI读数,因此D-NP的治疗效果仍未得到很好的研究。由于细胞外pH(pHe)是肿瘤的标志,因此绘制pHe至关重要。通过检测镧系元素的位移的冗余偏差(BIRDS),通过检测该剂上不可交换质子的顺磁位移共振,通过生物传感器成像来测量大脑的pHe。为了测试基于SPIR-NP的存在仍然不会损害基于BIRDS的pHe读数的假设,我们在SPIO-NPs输注之前和之后绘制了胶质瘤大鼠的pHe图。尽管SPIO-NPs在肿瘤中的积累增强了MRI的对比度,但SPIO-NPs输注后MRI定义的肿瘤边界内外的pHe保持不变,无论肿瘤类型(9L与RG2)还是药物注射方法(肾脏结扎与共融合)与丙磺舒)。这些结果表明,我们可以同时对D-NPs的特定位置和愈合效果进行无创成像,其中SPIO-NPs的MRI造影剂可以追踪其分布,而基于BIRDS的pHe可以绘制其治疗效果。

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