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Erschienen in: European Journal of Nuclear Medicine and Molecular Imaging 5/2015

01.04.2015 | Original Article

Clinically relevant strategies for lowering cardiomyocyte glucose uptake for 18F-FDG imaging of myocardial inflammation in mice

verfasst von: James T. Thackeray, Jens P. Bankstahl, Yong Wang, Kai C. Wollert, Frank M. Bengel

Erschienen in: European Journal of Nuclear Medicine and Molecular Imaging | Ausgabe 5/2015

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Abstract

Purpose

Myocardial inflammation is an emerging target for novel therapies and thus for molecular imaging. Positron emission tomography (PET) with 18F-fluorodeoxyglucose (FDG) has been employed, but requires an approach for suppression of cardiomyocyte uptake. We tested clinically viable strategies for their suitability in mouse models in order to optimize preclinical imaging protocols.

Methods

C57BL/6 mice (n = 56) underwent FDG PET under various conditions. In healthy animals, the effect of low-dose (5 units/kg) or high-dose (500 units/kg, 15 min prior) intravenous heparin, extended fasting (18 h) and the impact of conscious injection with limited, late application of isoflurane anaesthesia after 40 min of conscious uptake were examined in comparison to ketamine/xylazine anaesthesia. Conscious injection/uptake strategies were further evaluated at 3 days after permanent coronary artery occlusion.

Results

Under continuous isoflurane anaesthesia, neither heparin administration nor extended fasting significantly impacted myocardial 18F-FDG accumulation. Injection with 40 min uptake in awake mice resulted in a marked reduction of global myocardial 18F-FDG uptake compared to standard isoflurane anaesthesia (5.7 ± 1.1 %ID/g vs 30.2 ± 7.9 %ID/g, p < 0.01). Addition of heparin and fasting further reduced uptake compared to conscious injection alone (3.8 ± 1.5 %ID/g, p < 0.01) similar to ketamine/xylazine (2.4 ± 2.2 %ID/g, p < 0.001). In the inflammatory phase, 3 days after myocardial infarction, conscious injection/uptake with and without heparin/fasting identified a marked increase in myocardial 18F-FDG accumulation that was similar to that observed under ketamine/xylazine.

Conclusion

Continuous isoflurane anaesthesia obscures any suppressive effect of heparin or fasting on cardiomyocyte glucose utilization. Conscious injection of FDG in rodents significantly reduces cardiomyocyte uptake and enables further suppression by heparin and fasting, similar to clinical observations. In contrast to ketamine/xylazine, this represents a more physiological, translatable strategy for suppression of cardiomyocyte 18F-FDG uptake when targeting myocardial inflammation.
Literatur
1.
Zurück zum Zitat Anzai T. Post-infarction inflammation and left ventricular remodeling: a double-edged sword. Circ J 2013;77:580–7.CrossRefPubMed Anzai T. Post-infarction inflammation and left ventricular remodeling: a double-edged sword. Circ J 2013;77:580–7.CrossRefPubMed
2.
Zurück zum Zitat Ishimaru S, Tsujino I, Takei T, Tsukamoto E, Sakaue S, Kamigaki M, et al. Focal uptake on 18F-fluoro-2-deoxyglucose positron emission tomography images indicates cardiac involvement of sarcoidosis. Eur Heart J 2005;26:1538–43. doi:10.1093/eurheartj/ehi180.CrossRefPubMed Ishimaru S, Tsujino I, Takei T, Tsukamoto E, Sakaue S, Kamigaki M, et al. Focal uptake on 18F-fluoro-2-deoxyglucose positron emission tomography images indicates cardiac involvement of sarcoidosis. Eur Heart J 2005;26:1538–43. doi:10.​1093/​eurheartj/​ehi180.CrossRefPubMed
7.
Zurück zum Zitat Wykrzykowska J, Lehman S, Williams G, Parker JA, Palmer MR, Varkey S, et al. Imaging of inflamed and vulnerable plaque in coronary arteries with 18F-FDG PET/CT in patients with suppression of myocardial uptake using a low-carbohydrate, high-fat preparation. J Nucl Med 2009;50:563–8. doi:10.2967/jnumed.108.055616.CrossRefPubMed Wykrzykowska J, Lehman S, Williams G, Parker JA, Palmer MR, Varkey S, et al. Imaging of inflamed and vulnerable plaque in coronary arteries with 18F-FDG PET/CT in patients with suppression of myocardial uptake using a low-carbohydrate, high-fat preparation. J Nucl Med 2009;50:563–8. doi:10.​2967/​jnumed.​108.​055616.CrossRefPubMed
8.
Zurück zum Zitat Minamimoto R, Morooka M, Kubota K, Ito K, Masuda-Miyata Y, Mitsumoto T, et al. Value of FDG-PET/CT using unfractionated heparin for managing primary cardiac lymphoma and several key findings. J Nucl Cardiol 2011;18:516–20. doi:10.1007/s12350-011-9358-z.CrossRefPubMed Minamimoto R, Morooka M, Kubota K, Ito K, Masuda-Miyata Y, Mitsumoto T, et al. Value of FDG-PET/CT using unfractionated heparin for managing primary cardiac lymphoma and several key findings. J Nucl Cardiol 2011;18:516–20. doi:10.​1007/​s12350-011-9358-z.CrossRefPubMed
9.
Zurück zum Zitat Lee KH, Ko BH, Paik JY, Jung KH, Choe YS, Choi Y, et al. Effects of anesthetic agents and fasting duration on 18F-FDG biodistribution and insulin levels in tumor-bearing mice. J Nucl Med 2005;46:1531–6.PubMed Lee KH, Ko BH, Paik JY, Jung KH, Choe YS, Choi Y, et al. Effects of anesthetic agents and fasting duration on 18F-FDG biodistribution and insulin levels in tumor-bearing mice. J Nucl Med 2005;46:1531–6.PubMed
10.
Zurück zum Zitat Flores JE, McFarland LM, Vanderbilt A, Ogasawara AK, Williams SP. The effects of anesthetic agent and carrier gas on blood glucose and tissue uptake in mice undergoing dynamic FDG-PET imaging: sevoflurane and isoflurane compared in air and in oxygen. Mol Imaging Biol 2008;10:192–200. doi:10.1007/s11307-008-0137-4.CrossRefPubMed Flores JE, McFarland LM, Vanderbilt A, Ogasawara AK, Williams SP. The effects of anesthetic agent and carrier gas on blood glucose and tissue uptake in mice undergoing dynamic FDG-PET imaging: sevoflurane and isoflurane compared in air and in oxygen. Mol Imaging Biol 2008;10:192–200. doi:10.​1007/​s11307-008-0137-4.CrossRefPubMed
11.
Zurück zum Zitat Thackeray JT, Bankstahl JP, Wang Y, Korf-Klingebiel M, Walte A, Wittneben A, et al. Targeting post-infarct inflammation by PET imaging: comparison of 68Ga-citrate and 68Ga-DOTATATE with 18F-FDG in a mouse model. Eur J Nucl Med Mol Imaging 2014. doi:10.1007/s00259-014-2884-6. Thackeray JT, Bankstahl JP, Wang Y, Korf-Klingebiel M, Walte A, Wittneben A, et al. Targeting post-infarct inflammation by PET imaging: comparison of 68Ga-citrate and 68Ga-DOTATATE with 18F-FDG in a mouse model. Eur J Nucl Med Mol Imaging 2014. doi:10.​1007/​s00259-014-2884-6.
12.
Zurück zum Zitat Kempf T, Zarbock A, Widera C, Butz S, Stadtmann A, Rossaint J, et al. GDF-15 is an inhibitor of leukocyte integrin activation required for survival after myocardial infarction in mice. Nat Med 2011;17:581–8. doi:10.1038/nm.2354.CrossRefPubMed Kempf T, Zarbock A, Widera C, Butz S, Stadtmann A, Rossaint J, et al. GDF-15 is an inhibitor of leukocyte integrin activation required for survival after myocardial infarction in mice. Nat Med 2011;17:581–8. doi:10.​1038/​nm.​2354.CrossRefPubMed
13.
Zurück zum Zitat Thorn SL, deKemp RA, Dumouchel T, Klein R, Renaud JM, Wells RG, et al. Repeatable noninvasive measurement of mouse myocardial glucose uptake with 18F-FDG: evaluation of tracer kinetics in a type 1 diabetes model. J Nucl Med 2013;54:1637–44. doi:10.2967/jnumed.112.110114.CrossRefPubMed Thorn SL, deKemp RA, Dumouchel T, Klein R, Renaud JM, Wells RG, et al. Repeatable noninvasive measurement of mouse myocardial glucose uptake with 18F-FDG: evaluation of tracer kinetics in a type 1 diabetes model. J Nucl Med 2013;54:1637–44. doi:10.​2967/​jnumed.​112.​110114.CrossRefPubMed
14.
Zurück zum Zitat Hildebrandt IJ, Su H, Weber WA. Anesthesia and other considerations for in vivo imaging of small animals. ILAR J 2008;49:17–26.CrossRefPubMed Hildebrandt IJ, Su H, Weber WA. Anesthesia and other considerations for in vivo imaging of small animals. ILAR J 2008;49:17–26.CrossRefPubMed
15.
Zurück zum Zitat Fueger BJ, Czernin J, Hildebrandt I, Tran C, Halpern BS, Stout D, et al. Impact of animal handling on the results of 18F-FDG PET studies in mice. J Nucl Med 2006;47:999–1006.PubMed Fueger BJ, Czernin J, Hildebrandt I, Tran C, Halpern BS, Stout D, et al. Impact of animal handling on the results of 18F-FDG PET studies in mice. J Nucl Med 2006;47:999–1006.PubMed
19.
Zurück zum Zitat Constantinides C, Mean R, Janssen BJ. Effects of isoflurane anesthesia on the cardiovascular function of the C57BL/6 mouse. ILAR J 2011;52:e21–31.PubMedCentralPubMed Constantinides C, Mean R, Janssen BJ. Effects of isoflurane anesthesia on the cardiovascular function of the C57BL/6 mouse. ILAR J 2011;52:e21–31.PubMedCentralPubMed
21.
Zurück zum Zitat Wollenweber T, Roentgen P, Schäfer A, Schatka I, Zwadlo C, Brunkhorst T, et al. Characterizing the inflammatory tissue response to acute myocardial infarction by clinical multimodality noninvasive imaging. Circ Cardiovasc Imaging 2014;7:811–8. doi:10.1161/CIRCIMAGING.114.001689.CrossRefPubMed Wollenweber T, Roentgen P, Schäfer A, Schatka I, Zwadlo C, Brunkhorst T, et al. Characterizing the inflammatory tissue response to acute myocardial infarction by clinical multimodality noninvasive imaging. Circ Cardiovasc Imaging 2014;7:811–8. doi:10.​1161/​CIRCIMAGING.​114.​001689.CrossRefPubMed
Metadaten
Titel
Clinically relevant strategies for lowering cardiomyocyte glucose uptake for 18F-FDG imaging of myocardial inflammation in mice
verfasst von
James T. Thackeray
Jens P. Bankstahl
Yong Wang
Kai C. Wollert
Frank M. Bengel
Publikationsdatum
01.04.2015
Verlag
Springer Berlin Heidelberg
Erschienen in
European Journal of Nuclear Medicine and Molecular Imaging / Ausgabe 5/2015
Print ISSN: 1619-7070
Elektronische ISSN: 1619-7089
DOI
https://doi.org/10.1007/s00259-014-2956-7

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