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In-Cell Determination of Lactate Dehydrogenase Activity in a Luminal Breast Cancer Model – ex vivo Investigation of Excised Xenograft Tumor Slices Using dDNP Hyperpolarized 1-13Cpyruvate

机译:细胞内测定乳酸乳腺癌模型中乳酸脱氢酶活性的研究–使用dDNP超极化1-13C丙酮酸盐对异种移植肿瘤切片进行离体研究

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摘要

[1-13C]pyruvate, the most widely used compound in dissolution-dynamic nuclear polarization (dDNP) magnetic resonance (MR), enables the visualization of lactate dehydrogenase (LDH) activity. This activity had been demonstrated in a wide variety of cancer models, ranging from cultured cells, to xenograft models, to human tumors in situ. Here we quantified the LDH activity in precision cut tumor slices (PCTS) of breast cancer xenografts. The Michigan Cancer Foundation-7 (MCF7) cell-line was chosen as a model for the luminal breast cancer type which is hormone responsive and is highly prevalent. The LDH activity, which was manifested as [1-13C]lactate production in the tumor slices, ranged between 3.8 and 6.1 nmolemole adenosine tri-phosphate (ATP) in 1 min (average 4.6 ± 1.0) on three different experimental set-ups consisting of arrested vs. continuous perfusion and non-selective and selective RF pulsation schemes and combinations thereof. This rate was converted to an expected LDH activity in a mass ranging between 3.3 and 5.2 µmole/g in 1 min, using the ATP level of these tumors. This indicated the likely utility of this approach in clinical dDNP of the human breast and may be useful as guidance for treatment response assessment in a large number of tumor types and therapies ex vivo.
机译:[1- 13 C]丙酮酸盐是溶解动态核极化(dDNP)磁共振(MR)中使用最广泛的化合物,可实现乳酸脱氢酶(LDH)活性的可视化。在从培养细胞到异种移植模型再到原位人类肿瘤的各种癌症模型中都证明了这种活性。在这里,我们量化了乳腺癌异种移植的精确切割肿瘤切片(PCTS)中的LDH活性。选择密歇根州癌症基金会-7(MCF7)细胞系作为管腔型乳腺癌的模型,该模型具有激素反应性并且非常普遍。 LDH活性在肿瘤切片中表现为[1- 13 C]乳酸生成,在1分钟内的ATP浓度为3.8至6.1 nmole / nmol三磷酸腺苷(平均4.6± 1.0)在三个不同的实验装置上进行,这些装置包括停滞与连续灌注,非选择性和选择性RF脉动方案及其组合。使用这些肿瘤的ATP浓度,可以在1分钟内将该速率转换为预期的LDH活性,其质量范围为3.3至5.2 µmole / g。这表明该方法在人乳腺的临床dDNP中的可能效用,并且可作为大量体内肿瘤类型和疗法的治疗反应评估的指导。

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