Skip to main content
Top
Published in: Journal of Neuro-Oncology 2/2012

01-04-2012 | Clinical Study - Patient Study

Increased tryptophan transport in epileptogenic dysembryoplastic neuroepithelial tumors

Authors: Bálint Alkonyi, Sandeep Mittal, Ian Zitron, Diane C. Chugani, William J. Kupsky, Otto Muzik, Harry T. Chugani, Sandeep Sood, Csaba Juhász

Published in: Journal of Neuro-Oncology | Issue 2/2012

Login to get access

Abstract

Dysembryoplastic neuroepithelial tumors (DNTs) are typically hypometabolic but can show increased amino acid uptake on positron emission tomography (PET). To better understand mechanisms of amino acid accumulation in epileptogenic DNTs, we combined quantitative α-[11C]methyl-l-tryptophan (AMT) PET with tumor immunohistochemistry. Standardized uptake values (SUVs) of AMT and glucose were measured in 11 children with temporal lobe DNT. Additional quantification for AMT transport and metabolism was performed in 9 DNTs. Tumor specimens were immunostained for the l-type amino acid transporter 1 (LAT1) and indoleamine 2,3-dioxygenase (IDO), a key enzyme of the immunomodulatory kynurenine pathway. All 11 tumors showed glucose hypometabolism, while mean AMT SUVs were higher than normal cortex in eight DNTs. Further quantification showed increased AMT transport in seven and high AMT metabolic rates in three DNTs. Two patients showing extratumoral cortical increases of AMT SUV had persistent seizures despite complete tumor resection. Resected DNTs showed moderate to strong LAT1 and mild to moderate IDO immunoreactivity, with the strongest expression in tumor vessels. These results indicate that accumulation of tryptophan in DNTs is driven by high amino acid transport, mediated by LAT1, which can provide the substrate for tumoral tryptophan metabolism through the kynurenine pathway, that can produce epileptogenic metabolites. Increased AMT uptake can extend to extratumoral cortex, and presence of such cortical regions may increase the likelihood of recurrent seizures following surgical excision of DNTs.
Literature
1.
go back to reference Daumas-Duport C, Scheithauer BW, Chodkiewicz JP, Laws ER Jr, Vedrenne C (1988) Dysembryoplastic neuroepithelial tumor: a surgically curable tumor of young patients with intractable partial seizures. Report of thirty-nine cases. Neurosurgery 23:545–556PubMedCrossRef Daumas-Duport C, Scheithauer BW, Chodkiewicz JP, Laws ER Jr, Vedrenne C (1988) Dysembryoplastic neuroepithelial tumor: a surgically curable tumor of young patients with intractable partial seizures. Report of thirty-nine cases. Neurosurgery 23:545–556PubMedCrossRef
3.
go back to reference Raymond AA, Halpin SF, Alsanjari N et al. (1994) Dysembryoplastic neuroepithelial tumor. Features in 16 patients. Brain 117 (Pt 3):461–475 Raymond AA, Halpin SF, Alsanjari N et al. (1994) Dysembryoplastic neuroepithelial tumor. Features in 16 patients. Brain 117 (Pt 3):461–475
4.
go back to reference Sharma MC, Jain D, Gupta A et al (2009) Dysembryoplastic neuroepithelial tumor: a clinicopathological study of 32 cases. Neurosurg Rev 32:161–169PubMedCrossRef Sharma MC, Jain D, Gupta A et al (2009) Dysembryoplastic neuroepithelial tumor: a clinicopathological study of 32 cases. Neurosurg Rev 32:161–169PubMedCrossRef
5.
go back to reference Kaplan AM, Lawson MA, Spataro J et al (1999) Positron emission tomography using [18F] fluorodeoxyglucose and [11C] l-methionine to metabolically characterize dysembryoplastic neuroepithelial tumors. J Child Neurol 14:673–677PubMedCrossRef Kaplan AM, Lawson MA, Spataro J et al (1999) Positron emission tomography using [18F] fluorodeoxyglucose and [11C] l-methionine to metabolically characterize dysembryoplastic neuroepithelial tumors. J Child Neurol 14:673–677PubMedCrossRef
6.
go back to reference Lee DY, Chung CK et al (2000) Dysembryoplastic neuroepithelial tumor: radiological findings (including PET, SPECT, and MRS) and surgical strategy. J Neurooncol 47:167–174PubMedCrossRef Lee DY, Chung CK et al (2000) Dysembryoplastic neuroepithelial tumor: radiological findings (including PET, SPECT, and MRS) and surgical strategy. J Neurooncol 47:167–174PubMedCrossRef
7.
go back to reference Phi JH, Paeng JC, Lee HS et al (2010) Evaluation of focal cortical dysplasia and mixed neuronal and glial tumors in pediatric epilepsy patients using 18F-FDG and 11C-methionine PET. J Nucl Med 51:728–734PubMedCrossRef Phi JH, Paeng JC, Lee HS et al (2010) Evaluation of focal cortical dysplasia and mixed neuronal and glial tumors in pediatric epilepsy patients using 18F-FDG and 11C-methionine PET. J Nucl Med 51:728–734PubMedCrossRef
8.
go back to reference Maehara T, Nariai T, Arai N et al (2004) Usefulness of [11C]methionine PET in the diagnosis of dysembryoplastic neuroepithelial tumor with temporal lobe epilepsy. Epilepsia 45:41–45PubMedCrossRef Maehara T, Nariai T, Arai N et al (2004) Usefulness of [11C]methionine PET in the diagnosis of dysembryoplastic neuroepithelial tumor with temporal lobe epilepsy. Epilepsia 45:41–45PubMedCrossRef
9.
go back to reference Rosenberg DS, Demarquay G, Jouvet A et al (2005) [11C]-Methionine PET: dysembryoplastic neuroepithelial tumours compared with other epileptogenic brain neoplasms. J Neurol Neurosurg Psychiatry 76:1686–1692PubMedCrossRef Rosenberg DS, Demarquay G, Jouvet A et al (2005) [11C]-Methionine PET: dysembryoplastic neuroepithelial tumours compared with other epileptogenic brain neoplasms. J Neurol Neurosurg Psychiatry 76:1686–1692PubMedCrossRef
10.
go back to reference Kasper BS, Struffert T, Kasper EM et al (2011) 18Fluoroethyl-l-tyrosine-PET in long-term epilepsy associated glioneuronal tumors. Epilepsia 52:35–44PubMedCrossRef Kasper BS, Struffert T, Kasper EM et al (2011) 18Fluoroethyl-l-tyrosine-PET in long-term epilepsy associated glioneuronal tumors. Epilepsia 52:35–44PubMedCrossRef
11.
go back to reference Juhasz C, Chugani DC, Muzik O et al (2006) In vivo uptake and metabolism of alpha-[11C]methyl-l-tryptophan in human brain tumors. J Cereb Blood Flow Metab 26:345–357PubMedCrossRef Juhasz C, Chugani DC, Muzik O et al (2006) In vivo uptake and metabolism of alpha-[11C]methyl-l-tryptophan in human brain tumors. J Cereb Blood Flow Metab 26:345–357PubMedCrossRef
12.
go back to reference Batista CE, Juhasz C, Muzik O et al (2009) Imaging correlates of differential expression of indoleamine 2,3-dioxygenase in human brain tumors. Mol Imaging Biol 11:460–466PubMedCrossRef Batista CE, Juhasz C, Muzik O et al (2009) Imaging correlates of differential expression of indoleamine 2,3-dioxygenase in human brain tumors. Mol Imaging Biol 11:460–466PubMedCrossRef
13.
go back to reference Juhasz C, Muzik O, Chugani DC et al (2011) Differential kinetics of alpha-[(11)C]methyl-l-tryptophan on PET in low-grade brain tumors. J Neurooncol 102:409–415PubMedCrossRef Juhasz C, Muzik O, Chugani DC et al (2011) Differential kinetics of alpha-[(11)C]methyl-l-tryptophan on PET in low-grade brain tumors. J Neurooncol 102:409–415PubMedCrossRef
14.
go back to reference Chugani DC, Muzik O, Chakraborty P, Mangner T, Chugani HT (1998) Human brain serotonin synthesis capacity measured in vivo with alpha-[C-11]methyl-l-tryptophan. Synapse 28:33–43PubMedCrossRef Chugani DC, Muzik O, Chakraborty P, Mangner T, Chugani HT (1998) Human brain serotonin synthesis capacity measured in vivo with alpha-[C-11]methyl-l-tryptophan. Synapse 28:33–43PubMedCrossRef
15.
go back to reference Chugani DC, Muzik O (2000) Alpha[C-11]methyl-l-tryptophan PET maps brain serotonin synthesis and kynurenine pathway metabolism. J Cereb Blood Flow Metab 20:2–9PubMedCrossRef Chugani DC, Muzik O (2000) Alpha[C-11]methyl-l-tryptophan PET maps brain serotonin synthesis and kynurenine pathway metabolism. J Cereb Blood Flow Metab 20:2–9PubMedCrossRef
16.
go back to reference Diksic M, Young SN (2001) Study of the brain serotonergic system with labeled alpha-methyl-l-tryptophan. J Neurochem 78:1185–1200PubMedCrossRef Diksic M, Young SN (2001) Study of the brain serotonergic system with labeled alpha-methyl-l-tryptophan. J Neurochem 78:1185–1200PubMedCrossRef
17.
go back to reference Fedi M, Reutens DC, Andermann F et al (2003) Alpha-[11C]-Methyl-l-tryptophan PET identifies the epileptogenic tuber and correlates with interictal spike frequency. Epilepsy Res 52:203–213PubMedCrossRef Fedi M, Reutens DC, Andermann F et al (2003) Alpha-[11C]-Methyl-l-tryptophan PET identifies the epileptogenic tuber and correlates with interictal spike frequency. Epilepsy Res 52:203–213PubMedCrossRef
18.
go back to reference Juhasz C, Chugani DC, Muzik O et al (2003) Alpha-methyl-l-tryptophan PET detects epileptogenic cortex in children with intractable epilepsy. Neurology 60:960–968PubMed Juhasz C, Chugani DC, Muzik O et al (2003) Alpha-methyl-l-tryptophan PET detects epileptogenic cortex in children with intractable epilepsy. Neurology 60:960–968PubMed
19.
go back to reference Kagawa K, Chugani DC, Asano E et al (2005) Epilepsy surgery outcome in children with tuberous sclerosis complex evaluated with alpha-[11C]methyl-l-tryptophan positron emission tomography (PET). J Child Neurol 20:429–438PubMedCrossRef Kagawa K, Chugani DC, Asano E et al (2005) Epilepsy surgery outcome in children with tuberous sclerosis complex evaluated with alpha-[11C]methyl-l-tryptophan positron emission tomography (PET). J Child Neurol 20:429–438PubMedCrossRef
20.
go back to reference Wakamoto H, Chugani DC, Juhasz C, Muzik O, Kupsky WJ, Chugani HT (2008) Alpha-methyl-l-tryptophan positron emission tomography in epilepsy with cortical developmental malformations. Pediatr Neurol 39:181–188PubMedCrossRef Wakamoto H, Chugani DC, Juhasz C, Muzik O, Kupsky WJ, Chugani HT (2008) Alpha-methyl-l-tryptophan positron emission tomography in epilepsy with cortical developmental malformations. Pediatr Neurol 39:181–188PubMedCrossRef
21.
go back to reference Chugani HT, Kumar A, Kupsky W, Asano E, Sood S, Juhász C (2011) Clinical and histopathological correlates of 11C-alpha-methyl-l-tryptophan (AMT) PET abnormalities in children with intractable epilepsy. Epilepsia 52:1692–1698PubMedCrossRef Chugani HT, Kumar A, Kupsky W, Asano E, Sood S, Juhász C (2011) Clinical and histopathological correlates of 11C-alpha-methyl-l-tryptophan (AMT) PET abnormalities in children with intractable epilepsy. Epilepsia 52:1692–1698PubMedCrossRef
22.
go back to reference Liimatainen S, Lehtimaki K, Raitala A et al (2011) Increased indoleamine 2,3-dioxygenase (IDO) activity in idiopathic generalized epilepsy. Epilepsy Res 94:206–212CrossRef Liimatainen S, Lehtimaki K, Raitala A et al (2011) Increased indoleamine 2,3-dioxygenase (IDO) activity in idiopathic generalized epilepsy. Epilepsy Res 94:206–212CrossRef
23.
go back to reference Majoie HJ, Rijkers K, Berfelo MW et al (2011) Vagus nerve stimulation in refractory epilepsy: effects on pro- and anti-inflammatory cytokines in peripheral blood. Neuroimmunomodulation 18:52–56PubMedCrossRef Majoie HJ, Rijkers K, Berfelo MW et al (2011) Vagus nerve stimulation in refractory epilepsy: effects on pro- and anti-inflammatory cytokines in peripheral blood. Neuroimmunomodulation 18:52–56PubMedCrossRef
24.
go back to reference Miyazaki T, Moritake K, Yamada K et al (2009) Indoleamine 2,3-dioxygenase as a new target for malignant glioma therapy. Laboratory investigation. J Neurosurg 111:230–237PubMedCrossRef Miyazaki T, Moritake K, Yamada K et al (2009) Indoleamine 2,3-dioxygenase as a new target for malignant glioma therapy. Laboratory investigation. J Neurosurg 111:230–237PubMedCrossRef
25.
go back to reference Okubo S, Zhen HN, Kawai N, Nishiyama Y, Haba R, Tamiya T (2010) Correlation of L-methyl-11C-methionine (MET) uptake with l-type amino acid transporter 1 in human gliomas. J Neurooncol 99:217–225PubMedCrossRef Okubo S, Zhen HN, Kawai N, Nishiyama Y, Haba R, Tamiya T (2010) Correlation of L-methyl-11C-methionine (MET) uptake with l-type amino acid transporter 1 in human gliomas. J Neurooncol 99:217–225PubMedCrossRef
26.
go back to reference Cizek J, Herholz K, Vollmar S, Schrader R, Klein J, Heiss WD (2004) Fast and robust registration of PET and MR images of human brain. Neuroimage 22:434–442PubMedCrossRef Cizek J, Herholz K, Vollmar S, Schrader R, Klein J, Heiss WD (2004) Fast and robust registration of PET and MR images of human brain. Neuroimage 22:434–442PubMedCrossRef
27.
go back to reference Patlak CS, Blasberg RG, Fenstermacher JD (1983) Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data. J Cereb Blood Flow Metab 3:1–7PubMedCrossRef Patlak CS, Blasberg RG, Fenstermacher JD (1983) Graphical evaluation of blood-to-brain transfer constants from multiple-time uptake data. J Cereb Blood Flow Metab 3:1–7PubMedCrossRef
28.
go back to reference Roelcke U, Radu E, Ametamey S, Pellikka R, Steinbrich W, Leenders KL (1996) Association of rubidium and C-methionine uptake in brain tumors measured by positron emission tomography. J Neurooncol 27:163–171PubMedCrossRef Roelcke U, Radu E, Ametamey S, Pellikka R, Steinbrich W, Leenders KL (1996) Association of rubidium and C-methionine uptake in brain tumors measured by positron emission tomography. J Neurooncol 27:163–171PubMedCrossRef
29.
go back to reference Jager PL, Vaalburg W, Pruim J, de Vries EG, Langen KJ, Piers DA (2001) Radiolabeled amino acids: basic aspects and clinical applications in oncology. J Nucl Med 42:432–445PubMed Jager PL, Vaalburg W, Pruim J, de Vries EG, Langen KJ, Piers DA (2001) Radiolabeled amino acids: basic aspects and clinical applications in oncology. J Nucl Med 42:432–445PubMed
30.
go back to reference Sadeghi N, Salmon I, Tang BN et al (2006) Correlation between dynamic susceptibility contrast perfusion MRI and methionine metabolism in brain gliomas: preliminary results. J Magn Reson Imaging 24:989–994PubMedCrossRef Sadeghi N, Salmon I, Tang BN et al (2006) Correlation between dynamic susceptibility contrast perfusion MRI and methionine metabolism in brain gliomas: preliminary results. J Magn Reson Imaging 24:989–994PubMedCrossRef
31.
go back to reference Di Ieva A, Grizzi F, Tschabitscher M et al (2010) Correlation of microvascular fractal dimension with positron emission tomography [(11)C]-methionine uptake in glioblastoma multiforme: preliminary findings. Microvasc Res 80:267–273PubMedCrossRef Di Ieva A, Grizzi F, Tschabitscher M et al (2010) Correlation of microvascular fractal dimension with positron emission tomography [(11)C]-methionine uptake in glioblastoma multiforme: preliminary findings. Microvasc Res 80:267–273PubMedCrossRef
32.
go back to reference Duelli R, Enerson BE, Gerhart DZ, Drewes LR (2000) Expression of large amino acid transporter LAT1 in rat brain endothelium. J Cereb Blood Flow Metab 20:1557–1562PubMedCrossRef Duelli R, Enerson BE, Gerhart DZ, Drewes LR (2000) Expression of large amino acid transporter LAT1 in rat brain endothelium. J Cereb Blood Flow Metab 20:1557–1562PubMedCrossRef
33.
go back to reference Kageyama T, Nakamura M, Matsuo A et al (2000) The 4F2hc/LAT1 complex transports l-DOPA across the blood–brain barrier. Brain Res 879:115–121PubMedCrossRef Kageyama T, Nakamura M, Matsuo A et al (2000) The 4F2hc/LAT1 complex transports l-DOPA across the blood–brain barrier. Brain Res 879:115–121PubMedCrossRef
34.
go back to reference Umeki N, Fukasawa Y, Ohtsuki S (2002) mRNA expression and amino acid transport characteristics of cultured human brain microvascular endothelial cells (hBME). Drug Metab Pharmacokinet 17:367–373PubMedCrossRef Umeki N, Fukasawa Y, Ohtsuki S (2002) mRNA expression and amino acid transport characteristics of cultured human brain microvascular endothelial cells (hBME). Drug Metab Pharmacokinet 17:367–373PubMedCrossRef
35.
go back to reference Nawashiro H, Otani N, Shinomiya N et al (2006) l-type amino acid transporter 1 as a potential molecular target in human astrocytic tumors. Int J Cancer 119:484–492PubMedCrossRef Nawashiro H, Otani N, Shinomiya N et al (2006) l-type amino acid transporter 1 as a potential molecular target in human astrocytic tumors. Int J Cancer 119:484–492PubMedCrossRef
36.
go back to reference Lim BC, Cho KY, Lim JS et al (2011) Increased expression of l-amino acid transporters in balloon cells of tuberous sclerosis. Childs Nerv Syst 27:63–70PubMedCrossRef Lim BC, Cho KY, Lim JS et al (2011) Increased expression of l-amino acid transporters in balloon cells of tuberous sclerosis. Childs Nerv Syst 27:63–70PubMedCrossRef
37.
go back to reference Ozaki Y, Edelstein MP, Duch DS (1988) Induction of indoleamine 2,3-dioxygenase: a mechanism of the antitumor activity of interferon gamma. Proc Natl Acad Sci U S A 85:1242–1246PubMedCrossRef Ozaki Y, Edelstein MP, Duch DS (1988) Induction of indoleamine 2,3-dioxygenase: a mechanism of the antitumor activity of interferon gamma. Proc Natl Acad Sci U S A 85:1242–1246PubMedCrossRef
38.
go back to reference Burke F, Knowles RG, East N, Balkwill FR (1995) The role of indoleamine 2,3-dioxygenase in the anti-tumour activity of human interferon-gamma in vivo. Int J Cancer 60:115–122PubMedCrossRef Burke F, Knowles RG, East N, Balkwill FR (1995) The role of indoleamine 2,3-dioxygenase in the anti-tumour activity of human interferon-gamma in vivo. Int J Cancer 60:115–122PubMedCrossRef
39.
go back to reference Uyttenhove C, Pilotte L, Theate I et al (2003) Evidence for a tumoral immune resistance mechanism based on tryptophan degradation by indoleamine 2,3-dioxygenase. Nat Med 9:1269–1274PubMedCrossRef Uyttenhove C, Pilotte L, Theate I et al (2003) Evidence for a tumoral immune resistance mechanism based on tryptophan degradation by indoleamine 2,3-dioxygenase. Nat Med 9:1269–1274PubMedCrossRef
40.
go back to reference Riesenberg R, Weiler C, Spring O et al (2007) Expression of indoleamine 2,3-dioxygenase in tumor endothelial cells correlates with long-term survival of patients with renal cell carcinoma. Clin Cancer Res 13:6993–7002PubMedCrossRef Riesenberg R, Weiler C, Spring O et al (2007) Expression of indoleamine 2,3-dioxygenase in tumor endothelial cells correlates with long-term survival of patients with renal cell carcinoma. Clin Cancer Res 13:6993–7002PubMedCrossRef
41.
go back to reference Ravizza T, Boer K, Redeker S et al (2006) The IL-1beta system in epilepsy-associated malformations of cortical development. Neurobiol Dis 24:128–143PubMedCrossRef Ravizza T, Boer K, Redeker S et al (2006) The IL-1beta system in epilepsy-associated malformations of cortical development. Neurobiol Dis 24:128–143PubMedCrossRef
42.
go back to reference Vezzani A, Balosso S, Ravizza T (2008) The role of cytokines in the pathophysiology of epilepsy. Brain Behav Immun 22:797–803PubMedCrossRef Vezzani A, Balosso S, Ravizza T (2008) The role of cytokines in the pathophysiology of epilepsy. Brain Behav Immun 22:797–803PubMedCrossRef
43.
go back to reference Vezzani A, French J, Bartfai T, Baram TZ (2011) The role of inflammation in epilepsy. Nat Rev Neurol 7:31–40PubMedCrossRef Vezzani A, French J, Bartfai T, Baram TZ (2011) The role of inflammation in epilepsy. Nat Rev Neurol 7:31–40PubMedCrossRef
44.
go back to reference Kwidzinski E, Bechmann I (2007) IDO expression in the brain: a double-edged sword. J Mol Med 85:1351–1359PubMedCrossRef Kwidzinski E, Bechmann I (2007) IDO expression in the brain: a double-edged sword. J Mol Med 85:1351–1359PubMedCrossRef
45.
go back to reference Ryu HJ, Kim JE, Kim MJ et al (2010) The protective effects of interleukin-18 and interferon-gamma on neuronal damages in the rat hippocampus following status epilepticus. Neuroscience 170:711–721PubMedCrossRef Ryu HJ, Kim JE, Kim MJ et al (2010) The protective effects of interleukin-18 and interferon-gamma on neuronal damages in the rat hippocampus following status epilepticus. Neuroscience 170:711–721PubMedCrossRef
46.
go back to reference Juhasz C, Chugani DC, Padhye UN et al (2004) Evaluation with alpha-[11C]methyl-l-tryptophan positron emission tomography for reoperation after failed epilepsy surgery. Epilepsia 45:124–130PubMedCrossRef Juhasz C, Chugani DC, Padhye UN et al (2004) Evaluation with alpha-[11C]methyl-l-tryptophan positron emission tomography for reoperation after failed epilepsy surgery. Epilepsia 45:124–130PubMedCrossRef
47.
go back to reference Aubert S, Wendling F, Regis J et al (2009) Local and remote epileptogenicity in focal cortical dysplasias and neurodevelopmental tumours. Brain 132:3072–3086PubMedCrossRef Aubert S, Wendling F, Regis J et al (2009) Local and remote epileptogenicity in focal cortical dysplasias and neurodevelopmental tumours. Brain 132:3072–3086PubMedCrossRef
Metadata
Title
Increased tryptophan transport in epileptogenic dysembryoplastic neuroepithelial tumors
Authors
Bálint Alkonyi
Sandeep Mittal
Ian Zitron
Diane C. Chugani
William J. Kupsky
Otto Muzik
Harry T. Chugani
Sandeep Sood
Csaba Juhász
Publication date
01-04-2012
Publisher
Springer US
Published in
Journal of Neuro-Oncology / Issue 2/2012
Print ISSN: 0167-594X
Electronic ISSN: 1573-7373
DOI
https://doi.org/10.1007/s11060-011-0750-y

Other articles of this Issue 2/2012

Journal of Neuro-Oncology 2/2012 Go to the issue