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Ductal Carcinoma in Situ: X-ray Fluorescence Microscopy and Dynamic Contrast-enhanced MR Imaging Reveals Gadolinium Uptaken within Neoplastic Mammary Ducts in a Murine Model

机译:乳腺导管原位癌:X射线荧光显微镜和动态对比度增强的MR成像揭示了小鼠模型中肿瘤性乳腺导管内摄取的d。

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Purpose: To combine dynamic contrast material–enhanced (DCE) magnetic resonance (MR) imaging with x-ray fluorescence microscopy (XFM) of mammary gland tissue samples from mice to identify the spatial distribution of gadolinium after intravenous injection. Materials and Methods: C3(1) Sv-40 large T antigen transgenic mice (n = 23) were studied with institutional animal care and use committee approval. Twelve mice underwent DCE MR imaging after injection of gadodiamide, and gadolinium concentration–time curves were fit to a two-compartment pharmacokinetic model with the following parameters: transfer constant (Ktrans) and volume of extravascular extracellular space per unit volume of tissue (ve). Eleven mice received gadodiamide before XFM. These mice were sacrificed 2 minutes after injection, and frozen slices containing ducts distended with murine ductal carcinoma in situ (DCIS) were prepared for XFM. One mouse received saline and served as the control animal. Elemental gadolinium concentrations were measured in and around the ducts with DCIS. Hematoxylin-eosin–stained slices of mammary tissues were obtained after DCE MR imaging and XFM. Results: Ducts containing DCIS were unambiguously identified on MR images. DCE MR imaging revealed gadolinium uptake along the length of ducts with DCIS, with an average Ktrans of 0.21 min−1 ± 0.14 (standard deviation) and an average ve of 0.40 ± 0.16. XFM revealed gadolinium uptake inside ducts with DCIS, with an average concentration of 0.475 mmol/L ± 0.380; the corresponding value for DCE MR imaging was 0.30 mmol/L ± 0.13. Conclusion: These results provide insight into the physiologic basis of contrast enhancement of DCIS lesions on DCE MR images: Gadolinium penetrates and collects inside neoplastic ducts. © RSNA, 2009
机译:目的:将动态对比材料增强(DCE)磁共振(MR)成像与小鼠乳腺组织样品的X射线荧光显微镜(XFM)结合起来,以确定静脉注射后g的空间分布。材料和方法:在机构动物护理和使用委员会批准下,研究了C3(1)Sv-40大T抗原转基因小鼠(n = 23)。注射of二酰胺后对12只小鼠进行DCE MR成像,g浓度-时间曲线拟合到具有以下参数的两室药代动力学模型:转移常数(K trans )和血管外细胞空间的体积每单位体积的组织(v e )。 XFM之前有11只小鼠接受了gadodiamide。这些小鼠在注射后2分钟被处死,并准备了含有X射线管扩张的小鼠原位导管(DCIS)的冷冻切片。一只小鼠接受盐水并作为对照动物。用DCIS测量导管内和导管周围的元素g浓度。经苏木精-伊红染色的乳腺组织切片是在DCE MR成像和XFM后获得的。结果:在MR图像上清楚地识别出包含DCIS的管道。 DCE MR成像显示DCIS沿导管长度吸收g,平均K trans 为0.21 min -1 ±0.14(标准差),平均v e 为0.40±0.16。 XFM显示DCIS在导管内摄取up,平均浓度为0.475 mmol / L±0.380; DCE MR成像的相应值为0.30 mmol / L±0.13。结论:这些结果为DCE MR图像上DCIS病变增强对比的生理基础提供了见识:d渗透并聚集在肿瘤导管内。 ©RSNA,2009年

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