Integrated Systems and Technologies Hyperpolarized C Spectroscopy Detects Early Changes in Tumor Vasculature and Metabolism after VEGF Neutralization
نویسندگان
چکیده
No clinically validated biomarkers exist to image tumor responses to antiangiogenic therapy. Here, we report the utility of hyperpolarized C magnetic resonance spectroscopy (MRS) to detect the early effects of anti-VEGF therapy. In two colorectal cancer xenograft models, displaying differential sensitivity to VEGF blockade, we compared hyperpolarized MRS with measurements of tumor perfusion using dynamic contrast agent–enhanced (DCE)-MRI and tumor cellularity using diffusion-weighted MRI of the apparent diffusion coefficient (ADC) of tissue water. In tumors sensitive to anti-VEGF therapy, C flux between hyperpolarized [1-C]pyruvate and [1-C]lactate decreased after anti-VEGF therapy and correlated with reduced perfusion. Production of [1,4-C2]malate from hyperpolarized [1,4C2]fumarate increased in parallel with tumor cell necrosis, preceding any change in tumorADC. In contrast, tumors thatwere less sensitive to anti-VEGF therapy showed an increase in C flux from hyperpolarized [1-C]pyruvate and an increase in uptake of a gadolinium contrast agent, whereas tumor ADC decreased. Increased label flux could be explained by vascular normalization after VEGF blockade, increasing delivery of hyperpolarized [1-C]pyruvate as observed. Despite the minimal response of these tumors to treatment, with only a minor increase in necrosis observed histologically, production of [1,4-C2]malate from hyperpolarized [1,4-C2]fumarate in therapy-resistant tumors also increased. Together, our findings show that hyperpolarized C MRS detects early responses to anti-VEGF therapy, including vascular normalization or vascular destruction and cell death. Cancer Res; 72(4); 854–64. 2012 AACR.
منابع مشابه
13C-MR Spectroscopic Imaging with Hyperpolarized [1-13C]pyruvate Detects Early Response to Radiotherapy in SCC Tumors and HT-29 Tumors.
PURPOSE X-ray irradiation of tumors causes diverse effects on the tumor microenvironment, including metabolism. Recent developments of hyperpolarized (13)C-MRI enabled detecting metabolic changes in tumors using a tracer [1-(13)C]pyruvate, which participates in important bioenergetic processes that are altered in cancers. Here, we investigated the effects of X-ray irradiation on pyruvate metabo...
متن کاملGlycolytic phenotype and AMP kinase modify the pathologic response of tumor xenografts to VEGF neutralization.
VEGF antagonists are now widely used cancer therapeutics, but predictive biomarkers of response or toxicity remain unavailable. In this study, we analyzed the effects of anti-VEGF therapy on tumor metabolism and therapeutic response by using an integrated set of imaging techniques, including bioluminescence metabolic imaging, 18-fluorodeoxyglucose positron emission tomography, and MRI imaging a...
متن کاملIntegrated Systems and Technologies IDH1 Mutation Induces Reprogramming of Pyruvate Metabolism
Mutant isocitrate dehydrogenase 1 (IDH1) catalyzes the production of 2-hydroxyglutarate but also elicits additional metabolic changes. Levels of both glutamate and pyruvate dehydrogenase (PDH) activity have been shown to be affected in U87 glioblastoma cells or normal human astrocyte (NHA) cells expressing mutant IDH1, as compared with cells expressing wild-type IDH1. In this study, we show how...
متن کاملDetection of tumor response to a vascular disrupting agent by hyperpolarized 13C magnetic resonance spectroscopy.
Nuclear spin hyperpolarization can dramatically increase the sensitivity of the (13)C magnetic resonance experiment, allowing dynamic measurements of the metabolism of hyperpolarized (13)C-labeled substrates in vivo. Here, we report a preclinical study of the response of lymphoma tumors to the vascular disrupting agent (VDA), combretastatin-A4-phosphate (CA4P), as detected by measuring changes ...
متن کاملPreclinical Development Detection of Tumor Response to a Vascular Disrupting Agent by Hyperpolarized C Magnetic Resonance Spectroscopy
Nuclear spin hyperpolarization can dramatically increase the sensitivity of the C magnetic resonance experiment, allowing dynamic measurements of the metabolism of hyperpolarized C-labeled substrates in vivo. Here, we report a preclinical study of the response of lymphoma tumors to the vascular disrupting agent (VDA), combretastatin-A4-phosphate (CA4P), as detected by measuring changes in tumor...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2012