Ilangovan Govindasamy, Bratasz Anna, Li Haiquan, Schmalbrock Petra, Zweier Jay L, Kuppusamy Periannan
Center for Biomedical EPR Spectroscopy and Imaging, Davis Heart and Lung Research Institute, Department of Internal Medicine, Ohio State University, Columbus, USA.
Magn Reson Med. 2004 Sep;52(3):650-7. doi: 10.1002/mrm.20188.
Tumor tissue oxygenation is an important parameter that is positively correlated to the chemo- or radiation treatment outcome of certain tumors. Hence, methods to accurately and noninvasively determine the concentration of oxygen (pO2) in tumors will be valuable. In this study, electron paramagnetic resonance (EPR) spectroscopy, utilizing microcrystalline particulates of lithium phthalocyanine (LiPc), was used to perform repeated measurements of pO2 as a function of tumor growth. We permanently embedded the particulates in the tumor by coimplanting them with RIF-1 tumor cells during inoculation in mice. This procedure enabled repeated measurements of oxygen concentration in the tumor to be obtained for >2 weeks during its growth phase. The particulates were stable and nontoxic to the tumor cells. Both an in vitro clonogenic assay and an in vivo tumor growth rate examination in C3H mice showed no apparent effect on cell proliferation or tumor growth rate. The measurements indicated that the pO2 of the tumor decreased exponentially with tumor growth and reached hypoxic levels ( approximately 4 mmHg) within 4 days after inoculation of the tumor cells. Spatial EPR imaging revealed a nonuniform distribution of the embedded particulates, which were localized mainly in the middle of the tumor volume. Oxygen mapping of the tumor, obtained by spectroscopic EPR imaging, showed significant variation of pO2 within the tumor. In summary, EPR spectroscopy and imaging with an embedded oximetry probe enabled accurate and repeated measurements of pO2 to be obtained in growing tumors under nonperturbing conditions.
肿瘤组织氧合是一个重要参数,与某些肿瘤的化疗或放疗结果呈正相关。因此,准确且无创地测定肿瘤中氧浓度(pO2)的方法将具有重要价值。在本研究中,利用锂酞菁(LiPc)微晶颗粒的电子顺磁共振(EPR)光谱法被用于对pO2随肿瘤生长的变化进行重复测量。我们在给小鼠接种时将这些颗粒与RIF-1肿瘤细胞共同植入,从而将它们永久嵌入肿瘤中。这一操作使得在肿瘤生长阶段能够在超过2周的时间内对肿瘤中的氧浓度进行重复测量。这些颗粒稳定且对肿瘤细胞无毒。体外克隆形成试验和C3H小鼠体内肿瘤生长速率检查均显示对细胞增殖或肿瘤生长速率无明显影响。测量结果表明,肿瘤的pO2随肿瘤生长呈指数下降,在接种肿瘤细胞后4天内达到低氧水平(约4 mmHg)。空间EPR成像显示嵌入颗粒分布不均匀,主要集中在肿瘤体积的中部。通过光谱EPR成像获得的肿瘤氧分布图显示肿瘤内pO2有显著变化。总之,使用嵌入式血氧测定探针的EPR光谱法和成像能够在不干扰的条件下对生长中的肿瘤准确且重复地测量pO2。