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3T下TRAMP小鼠的超极化碳-13光谱成像——初步经验

Hyperpolarized C-13 spectroscopic imaging of the TRAMP mouse at 3T-initial experience.

作者信息

Chen Albert P, Albers Mark J, Cunningham Charles H, Kohler Susan J, Yen Yi-Fen, Hurd Ralph E, Tropp James, Bok Robert, Pauly John M, Nelson Sarah J, Kurhanewicz John, Vigneron Daniel B

机构信息

Department of Radiology, University of California-San Francisco, San Francisco, California, USA.

出版信息

Magn Reson Med. 2007 Dec;58(6):1099-106. doi: 10.1002/mrm.21256.

Abstract

The transgenic adenocarcinoma of mouse prostate (TRAMP) mouse is a well-studied murine model of prostate cancer with histopathology and disease progression that mimic the human disease. To investigate differences in cellular bioenergetics between normal prostate epithelial cells and prostate tumor cells, in vivo MR spectroscopic (MRS) studies with non-proton nuclei, such as (13)C, in the TRAMP model would be extremely useful. The recent development of a method for retaining dynamic nuclear polarization (DNP) in solution permits high signal-to-noise ratio (SNR) (13)C MRI or MRSI data to be obtained following injection of a hyperpolarized (13)C agent. In this transgenic mouse study, this method was applied using a double spin-echo (DSE) pulse sequence with a small-tip-angle excitation RF pulse, hyperbolic-secant refocusing pulses, and a flyback echo-planar readout trajectory for fast (10-14 s) MRSI of (13)C pyruvate (pyr) and its metabolic products at 0.135 cm(3) nominal spatial resolution. Elevated (13)C lactate (lac) was observed in both primary and metastatic tumors, demonstrating the feasibility of studying cellular bioenergetics in vivo with DNP hyperpolarized (13)C MRSI.

摘要

转基因小鼠前列腺腺癌(TRAMP)小鼠是一种经过充分研究的前列腺癌小鼠模型,其组织病理学和疾病进展情况与人类疾病相似。为了研究正常前列腺上皮细胞与前列腺肿瘤细胞之间细胞生物能量学的差异,在TRAMP模型中使用非质子核(如¹³C)进行体内磁共振波谱(MRS)研究将非常有用。最近开发的一种在溶液中保持动态核极化(DNP)的方法,使得在注射超极化¹³C试剂后能够获得高信噪比(SNR)的¹³C磁共振成像(MRI)或磁共振波谱成像(MRSI)数据。在这项转基因小鼠研究中,该方法采用双自旋回波(DSE)脉冲序列,带有小角度激发射频脉冲、双曲正割重聚焦脉冲以及回扫回波平面读出轨迹,用于以0.135 cm³的标称空间分辨率对¹³C丙酮酸(pyr)及其代谢产物进行快速(10 - 14秒)的MRSI。在原发性和转移性肿瘤中均观察到¹³C乳酸(lac)升高,这证明了用DNP超极化¹³C MRSI在体内研究细胞生物能量学的可行性。

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