首页> 外文期刊>The Journal of Nuclear Medicine >FDG uptake, GLUT-1 glucose transporter and cellularity in human pancreatic tumors.
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FDG uptake, GLUT-1 glucose transporter and cellularity in human pancreatic tumors.

机译:人胰腺肿瘤中FDG的摄取,GLUT-1葡萄糖转运蛋白和细胞性。

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摘要

We previously reported that grading of GLUT-1 glucose transporter expression was related closely to FDG accumulation in FDG PET in human cancers. But in this strong GLUT-1 expression group, there was an enormous range of standardized uptake values (SUVs) within them. METHODS: To evaluate other factors determining the FDG PET uptake, FDG PET was performed in 36 preoperative patients (mean age 62.0 yr) suspected of having pancreatic tumors, including 33 malignant and 3 benign neoplastic tumors. FDG uptake at 50 min after injection of 185 MBq 18F-FDG with > 5 hr fasting condition was semiquantitatively analyzed as SUVs. The GLUT-1 expression was studied by immunohistochemistry of paraffin sections from these tumors after the operation using the antiGLUT-1 antibody. The number of tumor cells within a 5- x 5-mm square was counted manually using x200 magnification photographs and was graded immunohistochemically as strong, weak or negative. RESULTS: In all 36 cases there were 3 cases of GLUT-1 negative, 8 of GLUT-1 weak positive and 25 of GLUT-1 strong positive. In all cases, the total number of tumor cells had no significant value for SUVs. Among 33 GLUT-1 positive cases, the number of GLUT-1 positive tumor cells correlated significantly with SUVs (p < 0.01). Only in 25 strong grade cases, the number of GLUT-1 strong positive tumor cells had a more significant value for SUVs (p < 0.005). Computational multivariate analysis using multiple regression for SUVs was performed evaluating the five variables as follows: tumor size, GLUT-1 immunohistochemical grading, number of total tumor cells, number of total GLUT-1 positive tumor cells and number of GLUT-1 strong positive cells. This analysis revealed that only the variable, the number of GLUT-1 strong positive cells, had a significant regression coefficient for SUVs (standard regression coefficient = 0.855, p < 0.0001). CONCLUSION: These data indicate that GLUT-1 expression plays an essential role in higher FDG accumulation in pancreatic tumor FDG PET, and the cellularity has a significant influence on SUVs only in the condition of GLUT-1 strong positive expression.
机译:我们先前曾报道,在人类癌症中,GLUT-1葡萄糖转运蛋白表达的等级与FDG PET中的FDG积累密切相关。但是,在这个强大的GLUT-1表达组中,其中存在大量的标准化摄取值(SUV)。方法:为评估影响FDG PET摄取的其他因素,对36名怀疑患有胰腺肿瘤的术前患者(平均年龄62.0岁)进行了FDG PET,其中包括33例恶性肿瘤和3例良性肿瘤性肿瘤。禁食条件大于5小时的185 MBq 18F-FDG注射后50分钟的FDG摄取量作为SUV进行了半定量分析。使用抗GLUT-1抗体在手术后通过来自这些肿瘤的石蜡切片的免疫组织化学研究了GLUT-1的表达。使用200倍放大照片手动计数5 x 5毫米见方内的肿瘤细胞数量,并将其免疫组织化学分级为强,弱或阴性。结果:在全部36例中,GLUT-1阴性3例,GLUT-1弱阳性8例,GLUT-1强阳性25例。在所有情况下,肿瘤细胞总数对SUV均无显着价值。在33例GLUT-1阳性病例中,GLUT-1阳性肿瘤细胞的数量与SUV显着相关(p <0.01)。仅在25个强等级病例中,GLUT-1强阳性肿瘤细胞的数量对SUV具有更显着的价值(p <0.005)。使用SUV的多元回归进行了计算多元分析,评估了以下五个变量:肿瘤大小,GLUT-1免疫组织化学分级,总肿瘤细胞数,总GLUT-1阳性肿瘤细胞数和GLUT-1强阳性细胞数。该分析表明,只有变量GLUT-1强阳性细胞的数量才对SUV具有显着的回归系数(标准回归系数= 0.855,p <0.0001)。结论:这些数据表明GLUT-1表达在胰腺肿瘤FDG PET中较高的FDG积累中起着重要作用,并且仅在GLUT-1强阳性表达的情况下,细胞性才对SUV有重要影响。

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