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Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)

Metabolic Magnetic Resonance Imaging Hyperpolarization techniques increase nuclear spin polarization by more than four orders of magnitude, enabling metabolic MRI. In article number 2303441, Stephan Knecht, Michael Keim, Franz Schilling, Ilai Schwartz, and co‐workers demonstrate a polarization proce...

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Autores principales: Nagel, Luca, Gierse, Martin, Gottwald, Wolfgang, Ahmadova, Zumrud, Grashei, Martin, Wolff, Pascal, Josten, Felix, Karaali, Senay, Müller, Christoph A., Lucas, Sebastian, Scheuer, Jochen, Müller, Christoph, Blanchard, John, Topping, Geoffrey J., Wendlinger, Andre, Setzer, Nadine, Sühnel, Sandra, Handwerker, Jonas, Vassiliou, Christophoros, van Heijster, Frits H.A., Knecht, Stephan, Keim, Michael, Schilling, Franz, Schwartz, Ilai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602494/
http://dx.doi.org/10.1002/advs.202370208
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author Nagel, Luca
Gierse, Martin
Gottwald, Wolfgang
Ahmadova, Zumrud
Grashei, Martin
Wolff, Pascal
Josten, Felix
Karaali, Senay
Müller, Christoph A.
Lucas, Sebastian
Scheuer, Jochen
Müller, Christoph
Blanchard, John
Topping, Geoffrey J.
Wendlinger, Andre
Setzer, Nadine
Sühnel, Sandra
Handwerker, Jonas
Vassiliou, Christophoros
van Heijster, Frits H.A.
Knecht, Stephan
Keim, Michael
Schilling, Franz
Schwartz, Ilai
author_facet Nagel, Luca
Gierse, Martin
Gottwald, Wolfgang
Ahmadova, Zumrud
Grashei, Martin
Wolff, Pascal
Josten, Felix
Karaali, Senay
Müller, Christoph A.
Lucas, Sebastian
Scheuer, Jochen
Müller, Christoph
Blanchard, John
Topping, Geoffrey J.
Wendlinger, Andre
Setzer, Nadine
Sühnel, Sandra
Handwerker, Jonas
Vassiliou, Christophoros
van Heijster, Frits H.A.
Knecht, Stephan
Keim, Michael
Schilling, Franz
Schwartz, Ilai
author_sort Nagel, Luca
collection PubMed
description Metabolic Magnetic Resonance Imaging Hyperpolarization techniques increase nuclear spin polarization by more than four orders of magnitude, enabling metabolic MRI. In article number 2303441, Stephan Knecht, Michael Keim, Franz Schilling, Ilai Schwartz, and co‐workers demonstrate a polarization procedure of [1(‐13)C]pyruvate based on parahydrogen‐induced polarization by side‐arm hydrogenation (PHIP‐SAH). It is benchmarked in preclinical in vivo experiments against a commercial dissolution dynamic nuclear polarization (DNP) device. The safety profile, image quality, as well as the quantitative perfusion and lactate‐topyruvate ratios, are equivalent for PHIP and DNP, rendering PHIP a viable alternative to established hyperpolarization techniques. [Image: see text]
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spelling pubmed-106024942023-10-27 Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023) Nagel, Luca Gierse, Martin Gottwald, Wolfgang Ahmadova, Zumrud Grashei, Martin Wolff, Pascal Josten, Felix Karaali, Senay Müller, Christoph A. Lucas, Sebastian Scheuer, Jochen Müller, Christoph Blanchard, John Topping, Geoffrey J. Wendlinger, Andre Setzer, Nadine Sühnel, Sandra Handwerker, Jonas Vassiliou, Christophoros van Heijster, Frits H.A. Knecht, Stephan Keim, Michael Schilling, Franz Schwartz, Ilai Adv Sci (Weinh) Inside Back Cover Metabolic Magnetic Resonance Imaging Hyperpolarization techniques increase nuclear spin polarization by more than four orders of magnitude, enabling metabolic MRI. In article number 2303441, Stephan Knecht, Michael Keim, Franz Schilling, Ilai Schwartz, and co‐workers demonstrate a polarization procedure of [1(‐13)C]pyruvate based on parahydrogen‐induced polarization by side‐arm hydrogenation (PHIP‐SAH). It is benchmarked in preclinical in vivo experiments against a commercial dissolution dynamic nuclear polarization (DNP) device. The safety profile, image quality, as well as the quantitative perfusion and lactate‐topyruvate ratios, are equivalent for PHIP and DNP, rendering PHIP a viable alternative to established hyperpolarization techniques. [Image: see text] John Wiley and Sons Inc. 2023-10-26 /pmc/articles/PMC10602494/ http://dx.doi.org/10.1002/advs.202370208 Text en © 2023 Wiley‐VCH GmbH https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Inside Back Cover
Nagel, Luca
Gierse, Martin
Gottwald, Wolfgang
Ahmadova, Zumrud
Grashei, Martin
Wolff, Pascal
Josten, Felix
Karaali, Senay
Müller, Christoph A.
Lucas, Sebastian
Scheuer, Jochen
Müller, Christoph
Blanchard, John
Topping, Geoffrey J.
Wendlinger, Andre
Setzer, Nadine
Sühnel, Sandra
Handwerker, Jonas
Vassiliou, Christophoros
van Heijster, Frits H.A.
Knecht, Stephan
Keim, Michael
Schilling, Franz
Schwartz, Ilai
Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title_full Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title_fullStr Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title_full_unstemmed Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title_short Parahydrogen‐Polarized [1‐(13)C]Pyruvate for Reliable and Fast Preclinical Metabolic Magnetic Resonance Imaging (Adv. Sci. 30/2023)
title_sort parahydrogen‐polarized [1‐(13)c]pyruvate for reliable and fast preclinical metabolic magnetic resonance imaging (adv. sci. 30/2023)
topic Inside Back Cover
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10602494/
http://dx.doi.org/10.1002/advs.202370208
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