Literature DB >> 27272542

Systematic Evaluation of Amide Proton Chemical Exchange Saturation Transfer at 3 T: Effects of Protein Concentration, pH, and Acquisition Parameters.

Holger Schmidt1, Nina F Schwenzer, Sergios Gatidis, Thomas Küstner, Konstantin Nikolaou, Fritz Schick, Petros Martirosian.   

Abstract

OBJECTIVE: The goal of this work was to systematically evaluate the reproducibility of amide proton transfer chemical exchange saturation transfer (APT-CEST) at 3 T and its signal dependence on pH, protein concentration, and acquisition parameters. An in vitro system based on bovine serum albumin (BSA) was used, and its limitations were tested by comparing it to in vivo measurements. The contribution of small endogenous metabolites on the APT-CEST signal at 3 T was also investigated. In addition, the reliability of different z-spectrum interpolations as well as the use of only a few frequency offset data points instead of a whole z-spectrum were tested.
MATERIALS AND METHODS: We created both a BSA phantom at different concentrations and pH values and a metabolite phantom with different small molecules. Chemical exchange saturation transfer data were acquired using a 2-dimensional fast spoiled gradient-echo sequence with pulsed CEST preparation at different saturation durations and power levels. Healthy volunteer measurements were taken for comparison. Z-spectra were interpolated using a 24th-order polynomial (Poly), an eighth-order Fourier series (Fourier), and a smoothing Spline (sSpline) algorithm. To evaluate reduced data sets, only 6 to 14 frequency offsets of the z-spectrum were used and interpolated via a cubic Spline. Region of interest (ROI) evaluations were used to investigate the reproducibility of amide magnetization transfer ratio asymmetry [MTRasym(3.5 ppm)] and to analyze the MTRasym and z-spectra.
RESULTS: Interscan standard deviations of MTRasym(3.5 ppm) were always below 0.3%. MTRasym(3.5 ppm) increased when the BSA concentrations increased and decreased when the pH increased. The amine MTRasym signal of small molecules was very small compared with BSA and was only detectable using short saturation times and higher power levels. The MTRasym(3.5 ppm) between BSA concentration steps and between nearly all pH steps was significantly different for all 3 fitting methods. The Fourier and sSpline methods showed no statistically significant differences; however, the results for the Poly method were significantly higher at some concentrations and pH values. Using only few frequency offsets resulted in less significant differences compared with fitting the complete z-spectrum. In general, MTRasym(3.5 ppm) of gray matter, white matter, and ventricle ROIs from volunteer scans increased with an increase in saturation power and partially decreased with an increase in saturation duration. Intra-ROI covariances of MTRasym(3.5 ppm) revealed the highest variations for Poly, whereas using reduced spectral data resulted in an increased signal variation.
CONCLUSIONS: Amide proton transfer-CEST imaging is a highly reproducible method in which absolute signal differences of approximately 0.5% are detectable in principle. For in vivo applications, Fourier or sSpline interpolations of z-spectra are preferable. Using reduced data sets delivers similar results but with increased variation and therefore decreased (pH/concentration) differentiation capability. Differentiation capability increases with increases in the saturation duration and power level. The results from the in vitro BSA system cannot be directly transferred to the in vivo situation due to different chemical environments resulting in, for example, higher asymmetric macromolecular cMT effects in vivo. Amine signals from small molecules are unlikely to contribute to APT-CEST at 3 T (except for creatine); however, signals can be enhanced by using short saturation times and higher power levels.

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Year:  2016        PMID: 27272542     DOI: 10.1097/RLI.0000000000000292

Source DB:  PubMed          Journal:  Invest Radiol        ISSN: 0020-9996            Impact factor:   6.016


  7 in total

1.  Differentiation of Malignant and Benign Head and Neck Tumors with Amide Proton Transfer-Weighted MR Imaging.

Authors:  Lu Yu; Chunmei Li; Xiaojie Luo; Jinyuan Zhou; Chen Zhang; Yi Zhang; Min Chen
Journal:  Mol Imaging Biol       Date:  2019-04       Impact factor: 3.488

2.  Repeatability of amide proton transfer-weighted signals in the brain according to clinical condition and anatomical location.

Authors:  Jung Bin Lee; Ji Eun Park; Seung Chai Jung; Youngheun Jo; Donghyun Kim; Ho Sung Kim; Choong-Gon Choi; Sang Joon Kim; Dong-Wha Kang
Journal:  Eur Radiol       Date:  2019-07-23       Impact factor: 5.315

Review 3.  Clinical translation of amide proton transfer (APT) MRI for ischemic stroke: a systematic review (2003-2020).

Authors:  Lee Sze Foo; George Harston; Amit Mehndiratta; Wun-She Yap; Yan Chai Hum; Khin Wee Lai; Shahizon Azura Mohamed Mukari; Faizah Mohd Zaki; Yee Kai Tee
Journal:  Quant Imaging Med Surg       Date:  2021-08

4.  APT Weighted MRI as an Effective Imaging Protocol to Predict Clinical Outcome After Acute Ischemic Stroke.

Authors:  Guisen Lin; Caiyu Zhuang; Zhiwei Shen; Gang Xiao; Yanzi Chen; Yuanyu Shen; Xiaodan Zong; Renhua Wu
Journal:  Front Neurol       Date:  2018-10-23       Impact factor: 4.003

5.  Amide Proton Transfer Contrast Distribution in Different Brain Regions in Young Healthy Subjects.

Authors:  Thomas Sartoretti; Elisabeth Sartoretti; Michael Wyss; Árpád Schwenk; Arash Najafi; Christoph Binkert; Carolin Reischauer; Jinyuan Zhou; Shanshan Jiang; Anton S Becker; Sabine Sartoretti-Schefer
Journal:  Front Neurosci       Date:  2019-05-22       Impact factor: 4.677

6.  Chemical exchange saturation transfer imaging in hepatic encephalopathy.

Authors:  Helge Jörn Zöllner; Markus Butz; Markus Jördens; Nur-Deniz Füllenbach; Dieter Häussinger; Benjamin Schmitt; Hans-Jörg Wittsack; Alfons Schnitzler
Journal:  Neuroimage Clin       Date:  2019-03-04       Impact factor: 4.881

Review 7.  Review and consensus recommendations on clinical APT-weighted imaging approaches at 3T: Application to brain tumors.

Authors:  Jinyuan Zhou; Moritz Zaiss; Linda Knutsson; Phillip Zhe Sun; Sung Soo Ahn; Silvio Aime; Peter Bachert; Jaishri O Blakeley; Kejia Cai; Michael A Chappell; Min Chen; Daniel F Gochberg; Steffen Goerke; Hye-Young Heo; Shanshan Jiang; Tao Jin; Seong-Gi Kim; John Laterra; Daniel Paech; Mark D Pagel; Ji Eun Park; Ravinder Reddy; Akihiko Sakata; Sabine Sartoretti-Schefer; A Dean Sherry; Seth A Smith; Greg J Stanisz; Pia C Sundgren; Osamu Togao; Moriel Vandsburger; Zhibo Wen; Yin Wu; Yi Zhang; Wenzhen Zhu; Zhongliang Zu; Peter C M van Zijl
Journal:  Magn Reson Med       Date:  2022-04-22       Impact factor: 3.737

  7 in total

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