Literature DB >> 31437326

Hyperpolarized 13 C magnetic resonance spectroscopy detects toxin-induced neuroinflammation in mice.

Lydia M Le Page1,2, Caroline Guglielmetti1,2, Chloé F Najac3, Brice Tiret1,2, Myriam M Chaumeil1,2.   

Abstract

Lipopolysaccharide (LPS) is a commonly used agent for induction of neuroinflammation in preclinical studies. Upon injection, LPS causes activation of microglia and astrocytes, whose metabolism alters to favor glycolysis. Assessing in vivo neuroinflammation and its modulation following therapy remains challenging, and new noninvasive methods allowing for longitudinal monitoring would be highly valuable. Hyperpolarized (HP) 13 C magnetic resonance spectroscopy (MRS) is a promising technique for assessing in vivo metabolism. In addition to applications in oncology, the most commonly used probe of [1-13 C] pyruvate has shown potential in assessing neuroinflammation-linked metabolism in mouse models of multiple sclerosis and traumatic brain injury. Here, we aimed to investigate LPS-induced neuroinflammatory changes using HP [1-13 C] pyruvate and HP 13 C urea. 2D chemical shift imaging following simultaneous intravenous injection of HP [1-13 C] pyruvate and HP 13 C urea was performed at baseline (day 0) and at days 3 and 7 post-intracranial injection of LPS (n = 6) or saline (n = 5). Immunofluorescence (IF) analyses were performed for Iba1 (resting and activated microglia/macrophages), GFAP (resting and reactive astrocytes) and CD68 (activated microglia/macrophages). A significant increase in HP [1-13 C] lactate production was observed at days 3 and 7 following injection, in the injected (ipsilateral) side of the LPS-treated mouse brain, but not in either the contralateral side or saline-injected animals. HP 13 C lactate/pyruvate ratio, without and with normalization to urea, was also significantly increased in the ipsilateral LPS-injected brain at 7 days compared with baseline. IF analyses showed a significant increase in CD68 and GFAP staining at 3 days, followed by increased numbers of Iba1 and GFAP positive cells at 7 days post-LPS injection. In conclusion, we can detect LPS-induced changes in the mouse brain using HP 13 C MRS, in alignment with increased numbers of microglia/macrophages and astrocytes. This study demonstrates that HP 13 C spectroscopy has substantial potential for providing noninvasive information on neuroinflammation.
© 2019 John Wiley & Sons, Ltd.

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Keywords:  hyperpolarized 13C MRS; lipopolysaccharide; metabolism; neuroinflammation

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Year:  2019        PMID: 31437326      PMCID: PMC6817388          DOI: 10.1002/nbm.4164

Source DB:  PubMed          Journal:  NMR Biomed        ISSN: 0952-3480            Impact factor:   4.044


  63 in total

1.  Lipopolysaccharide-Induced Apoptosis of Astrocytes: Therapeutic Intervention by Minocycline.

Authors:  Arpita Sharma; Nisha Patro; Ishan K Patro
Journal:  Cell Mol Neurobiol       Date:  2015-07-19       Impact factor: 5.046

2.  Imaging of blood flow using hyperpolarized [(13)C]urea in preclinical cancer models.

Authors:  Cornelius von Morze; Peder E Z Larson; Simon Hu; Kayvan Keshari; David M Wilson; Jan Henrik Ardenkjaer-Larsen; Andrei Goga; Robert Bok; John Kurhanewicz; Daniel B Vigneron
Journal:  J Magn Reson Imaging       Date:  2011-03       Impact factor: 4.813

3.  An RNA-sequencing transcriptome and splicing database of glia, neurons, and vascular cells of the cerebral cortex.

Authors:  Ye Zhang; Kenian Chen; Steven A Sloan; Mariko L Bennett; Anja R Scholze; Sean O'Keeffe; Hemali P Phatnani; Paolo Guarnieri; Christine Caneda; Nadine Ruderisch; Shuyun Deng; Shane A Liddelow; Chaolin Zhang; Richard Daneman; Tom Maniatis; Ben A Barres; Jian Qian Wu
Journal:  J Neurosci       Date:  2014-09-03       Impact factor: 6.167

4.  Differential effects of lipopolysaccharide on energy metabolism in murine microglial N9 and cholinergic SN56 neuronal cells.

Authors:  Joanna Klimaszewska-Łata; Sylwia Gul-Hinc; Hanna Bielarczyk; Anna Ronowska; Marlena Zyśk; Katarzyna Grużewska; Tadeusz Pawełczyk; Andrzej Szutowicz
Journal:  J Neurochem       Date:  2015-01-04       Impact factor: 5.372

5.  Detection of inflammatory arthritis by using hyperpolarized 13C-pyruvate with MR imaging and spectroscopy.

Authors:  John D MacKenzie; Yi-Fen Yen; Dirk Mayer; James S Tropp; Ralph E Hurd; Daniel M Spielman
Journal:  Radiology       Date:  2011-03-15       Impact factor: 11.105

6.  The effect of lipopolysaccharide (LPS) on inflammatory markers in blood and brain and on behavior in individually-housed pigs.

Authors:  Janicke Nordgreen; Camilla Munsterhjelm; Frida Aae; Anastasija Popova; Preben Boysen; Birgit Ranheim; Mari Heinonen; Joanna Raszplewicz; Petteri Piepponen; Andreas Lervik; Anna Valros; Andrew M Janczak
Journal:  Physiol Behav       Date:  2018-08-02

7.  Dynamic hyperpolarized carbon-13 MR metabolic imaging of nonhuman primate brain.

Authors:  Ilwoo Park; Peder E Z Larson; James L Tropp; Lucas Carvajal; Galen Reed; Robert Bok; Fraser Robb; John Bringas; Adrian Kells; Philip Pivirotto; Krystof Bankiewicz; Daniel B Vigneron; Sarah J Nelson
Journal:  Magn Reson Med       Date:  2013-11-11       Impact factor: 4.668

8.  Metabolic imaging of energy metabolism in traumatic brain injury using hyperpolarized [1-13C]pyruvate.

Authors:  Stephen J DeVience; Xin Lu; Julie Proctor; Parisa Rangghran; Elias R Melhem; Rao Gullapalli; Gary M Fiskum; Dirk Mayer
Journal:  Sci Rep       Date:  2017-05-15       Impact factor: 4.379

9.  Hyperpolarized [1-13C] pyruvate MR spectroscopy detect altered glycolysis in the brain of a cognitively impaired mouse model fed high-fat diet.

Authors:  Young-Suk Choi; Somang Kang; Sang-Yoon Ko; Saeram Lee; Jae Young Kim; Hansol Lee; Jae Eun Song; Dong-Hyun Kim; Eosu Kim; Chul Hoon Kim; Lisa Saksida; Ho-Taek Song; Jong Eun Lee
Journal:  Mol Brain       Date:  2018-12-18       Impact factor: 4.041

10.  Microglial activation is required for Abeta clearance after intracranial injection of lipopolysaccharide in APP transgenic mice.

Authors:  Donna L Herber; Mary Mercer; Lisa M Roth; Keisha Symmonds; Jessica Maloney; Nedda Wilson; Melissa J Freeman; Dave Morgan; Marcia N Gordon
Journal:  J Neuroimmune Pharmacol       Date:  2007-03-27       Impact factor: 7.285

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  7 in total

Review 1.  Imaging Brain Metabolism Using Hyperpolarized 13C Magnetic Resonance Spectroscopy.

Authors:  Lydia M Le Page; Caroline Guglielmetti; Celine Taglang; Myriam M Chaumeil
Journal:  Trends Neurosci       Date:  2020-04-08       Impact factor: 13.837

Review 2.  Cardiovascular magnetic resonance imaging for inflammatory heart diseases.

Authors:  Andrew J M Lewis; Matthew K Burrage; Vanessa M Ferreira
Journal:  Cardiovasc Diagn Ther       Date:  2020-06

Review 3.  Integrative metabolic flux analysis reveals an indispensable dimension of phenotypes.

Authors:  Richard C Law; Aliya Lakhani; Samantha O'Keeffe; Sevcan Erşan; Junyoung O Park
Journal:  Curr Opin Biotechnol       Date:  2022-03-09       Impact factor: 10.279

Review 4.  Clinical Cardiovascular Applications of Hyperpolarized Magnetic Resonance.

Authors:  Andrew J M Lewis; Damian J Tyler; Oliver Rider
Journal:  Cardiovasc Drugs Ther       Date:  2020-04       Impact factor: 3.727

Review 5.  Hyperpolarized 13 C magnetic resonance imaging for noninvasive assessment of tissue inflammation.

Authors:  Stephanie Anderson; James T Grist; Andrew Lewis; Damian J Tyler
Journal:  NMR Biomed       Date:  2020-12-08       Impact factor: 4.044

6.  Probing Cerebral Metabolism with Hyperpolarized 13C Imaging after Opening the Blood-Brain Barrier with Focused Ultrasound.

Authors:  Edward P Hackett; Bhavya R Shah; Bingbing Cheng; Evan LaGue; Vamsidihara Vemireddy; Manuel Mendoza; Chenchen Bing; Robert M Bachoo; Kelvin L Billingsley; Rajiv Chopra; Jae Mo Park
Journal:  ACS Chem Neurosci       Date:  2021-07-22       Impact factor: 5.780

7.  Non-Invasive Differentiation of M1 and M2 Activation in Macrophages Using Hyperpolarized 13C MRS of Pyruvate and DHA at 1.47 Tesla.

Authors:  Kai Qiao; Lydia M Le Page; Myriam M Chaumeil
Journal:  Metabolites       Date:  2021-06-22
  7 in total

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