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Erschienen in: Journal of Neuro-Oncology 2/2015

01.04.2015 | Laboratory Investigation

Preclinical impact of bevacizumab on brain and tumor distribution of irinotecan and temozolomide

verfasst von: Lauriane Goldwirt, Kevin Beccaria, Alexandre Carpentier, Ahmed Idbaih, Charlotte Schmitt, Camille Levasseur, Marianne Labussiere, Aline Milane, Robert Farinotti, Christine Fernandez

Erschienen in: Journal of Neuro-Oncology | Ausgabe 2/2015

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Abstract

Glioblastoma (GBM) is the most common primary malignant brain tumour in adults. Prognosis of GBM patients is poor with median overall survival around 15 months. Temozolomide is the chemotherapeutic agent used in the standard of care of newly diagnosed GBM patients relying on radiotherapy with concurrent chemotherapy followed by chemotherapy alone. Irinotecan has shown some efficacy in recurrent malignant gliomas. Bevacizumab has been combined with irinotecan in the treatment of recurrent GBM and with temozolomide in newly diagnosed GBM. As the efficacy of GBM treatments relies on their brain distribution through the blood brain barrier, the aim of the present preclinical work was to study, in in vivo models, the impact of bevacizumab on brain and tumor distribution of temozolomide and irinotecan. Our results show that bevacizumab pre-treatment was associated with a reduced temozolomide brain distribution in tumor-free mice. In tumor bearing mice, bevacizumab increased temozolomide tumor distribution, although not statistically significant. In both tumor-free and tumor-bearing mice, bevacizumab does not modify brain distribution of irinotecan and its metabolite SN-38. Bevacizumab impacts brain distribution of some anti-tumor drugs and potentially their efficacy in GBM. Further studies are warranted to investigate other therapeutic combination.
Literatur
1.
Zurück zum Zitat Jansen M, de Witt Hamer PC, Witmer AN, Troost D, van Noorden CJF (2004) Current perspectives on antiangiogenesis strategies in the treatment of malignant gliomas. Brain Res Rev 45(3):143–163CrossRefPubMed Jansen M, de Witt Hamer PC, Witmer AN, Troost D, van Noorden CJF (2004) Current perspectives on antiangiogenesis strategies in the treatment of malignant gliomas. Brain Res Rev 45(3):143–163CrossRefPubMed
2.
Zurück zum Zitat Steiner H-H, Karcher S, Mueller MM, Nalbantis E, Kunze S, Herold-Mende C (2004) Autocrine pathways of the vascular endothelial growth factor (VEGF) in glioblastoma multiforme: clinical relevance of radiation-induced increase of VEGF levels. J Neurooncol 66(1):129–138CrossRefPubMed Steiner H-H, Karcher S, Mueller MM, Nalbantis E, Kunze S, Herold-Mende C (2004) Autocrine pathways of the vascular endothelial growth factor (VEGF) in glioblastoma multiforme: clinical relevance of radiation-induced increase of VEGF levels. J Neurooncol 66(1):129–138CrossRefPubMed
3.
Zurück zum Zitat Cordon-Cardo C, O’Brien JP, Casals D, Rittman-Grauer L, Biedler JL, Melamed MR, Bertino JR (1989) Multidrug-resistance gene (P-glycoprotein) is expressed by endothelial cells at blood-brain barrier sites. PNAS 86(2):695–698CrossRefPubMedCentralPubMed Cordon-Cardo C, O’Brien JP, Casals D, Rittman-Grauer L, Biedler JL, Melamed MR, Bertino JR (1989) Multidrug-resistance gene (P-glycoprotein) is expressed by endothelial cells at blood-brain barrier sites. PNAS 86(2):695–698CrossRefPubMedCentralPubMed
4.
Zurück zum Zitat Jetté L, Murphy GF, Leclerc J-M, BÈliveau R (1995) Interaction of drugs with P-glycoprotein in brain capillaries. Biochem Pharmacol 50(10):1701–1709CrossRefPubMed Jetté L, Murphy GF, Leclerc J-M, BÈliveau R (1995) Interaction of drugs with P-glycoprotein in brain capillaries. Biochem Pharmacol 50(10):1701–1709CrossRefPubMed
5.
Zurück zum Zitat Schinkel AH, Wagenaar E, Mol CA, van Deemter L (1996) P-glycoprotein in the blood-brain barrier of mice influences the brain penetration and pharmacological activity of many drugs. J Clin Investig 97(11):2517–2524CrossRefPubMedCentralPubMed Schinkel AH, Wagenaar E, Mol CA, van Deemter L (1996) P-glycoprotein in the blood-brain barrier of mice influences the brain penetration and pharmacological activity of many drugs. J Clin Investig 97(11):2517–2524CrossRefPubMedCentralPubMed
6.
Zurück zum Zitat Terasaki T, K-i Hosoya (1999) The blood-brain barrier efflux transporters as a detoxifying system for the brain. Adv Drug Deliv Rev 36(2–3):195–209CrossRefPubMed Terasaki T, K-i Hosoya (1999) The blood-brain barrier efflux transporters as a detoxifying system for the brain. Adv Drug Deliv Rev 36(2–3):195–209CrossRefPubMed
8.
9.
Zurück zum Zitat Demeule M, Shedid D, Beaulieu E, Del Maestro RF, Moghrabi A, Ghosn PB, Moumdjian R, Berthelet F, Beliveau R (2001) Expression of multidrug-resistance P-glycoprotein (MDR1) in human brain tumors. Int J Cancer 93(1):62–66CrossRefPubMed Demeule M, Shedid D, Beaulieu E, Del Maestro RF, Moghrabi A, Ghosn PB, Moumdjian R, Berthelet F, Beliveau R (2001) Expression of multidrug-resistance P-glycoprotein (MDR1) in human brain tumors. Int J Cancer 93(1):62–66CrossRefPubMed
10.
Zurück zum Zitat Stupp R, Mason WP, van den Bent MJ, Weller M, Fisher B, Taphoorn MJB, Belanger K, Brandes AA, Marosi C, Bogdahn U, Curschmann Jr, Janzer RC, Ludwin SK, Gorlia T, Allgeier A, Lacombe D, Cairncross JG, Eisenhauer E, Mirimanoff RO (2005) Radiotherapy plus concomitant and adjuvant temozolomide for glioblastoma. N Engl J Med 352(10):987–996. doi:10.1056/NEJMoa043330 CrossRefPubMed Stupp R, Mason WP, van den Bent MJ, Weller M, Fisher B, Taphoorn MJB, Belanger K, Brandes AA, Marosi C, Bogdahn U, Curschmann Jr, Janzer RC, Ludwin SK, Gorlia T, Allgeier A, Lacombe D, Cairncross JG, Eisenhauer E, Mirimanoff RO (2005) Radiotherapy plus concomitant and adjuvant temozolomide for glioblastoma. N Engl J Med 352(10):987–996. doi:10.​1056/​NEJMoa043330 CrossRefPubMed
11.
Zurück zum Zitat Lai A, Tran A, Nghiemphu PL, Pope WB, Solis OE, Selch M, Filka E, Yong WH, Mischel PS, Liau LM, Phuphanich S, Black K, Peak S, Green RM, Spier CE, Kolevska T, Polikoff J, Fehrenbacher L, Elashoff R, Cloughesy T (2010) Phase II study of bevacizumab plus temozolomide during and after radiation therapy for patients with newly diagnosed glioblastoma multiforme. J Clin Oncol. doi:10.1200/jco.2010.30.2729 Lai A, Tran A, Nghiemphu PL, Pope WB, Solis OE, Selch M, Filka E, Yong WH, Mischel PS, Liau LM, Phuphanich S, Black K, Peak S, Green RM, Spier CE, Kolevska T, Polikoff J, Fehrenbacher L, Elashoff R, Cloughesy T (2010) Phase II study of bevacizumab plus temozolomide during and after radiation therapy for patients with newly diagnosed glioblastoma multiforme. J Clin Oncol. doi:10.​1200/​jco.​2010.​30.​2729
12.
Zurück zum Zitat Chinot OL, Wick W, Mason W, Henriksson R, Saran F, Nishikawa R, Carpentier AF, Hoang-Xuan K, Kavan P, Cernea D, Brandes AA, Hilton M, Abrey L, Cloughesy T (2014) Bevacizumab plus radiotherapy-temozolomide for newly diagnosed glioblastoma. N Engl J Med 370(8):709–722CrossRefPubMed Chinot OL, Wick W, Mason W, Henriksson R, Saran F, Nishikawa R, Carpentier AF, Hoang-Xuan K, Kavan P, Cernea D, Brandes AA, Hilton M, Abrey L, Cloughesy T (2014) Bevacizumab plus radiotherapy-temozolomide for newly diagnosed glioblastoma. N Engl J Med 370(8):709–722CrossRefPubMed
13.
Zurück zum Zitat Gilbert MR, Dignam JJ, Armstrong TS, Wefel JS, Blumenthal DT, Vogelbaum MA, Colman H, Chakravarti A, Pugh S, Won M, Jeraj R, Brown PD, Jaeckle KA, Schiff D, Stieber VW, Brachman DG, Werner-Wasik M, Tremont-Lukats IW, Sulman EP, Aldape KD, Curran WJ, Mehta MP (2014) A randomized trial of bevacizumab for newly diagnosed glioblastoma. N Engl J Med 370(8):699–708CrossRefPubMedCentralPubMed Gilbert MR, Dignam JJ, Armstrong TS, Wefel JS, Blumenthal DT, Vogelbaum MA, Colman H, Chakravarti A, Pugh S, Won M, Jeraj R, Brown PD, Jaeckle KA, Schiff D, Stieber VW, Brachman DG, Werner-Wasik M, Tremont-Lukats IW, Sulman EP, Aldape KD, Curran WJ, Mehta MP (2014) A randomized trial of bevacizumab for newly diagnosed glioblastoma. N Engl J Med 370(8):699–708CrossRefPubMedCentralPubMed
14.
Zurück zum Zitat Kawato Y, Aonuma M, Hirota Y, Kuga H, Sato K (1991) Intracellular roles of SN-38, a metabolite of the camptothecin derivative CPT-11, in the antitumor effect of CPT-11. Cancer Res 51(16):4187–4191PubMed Kawato Y, Aonuma M, Hirota Y, Kuga H, Sato K (1991) Intracellular roles of SN-38, a metabolite of the camptothecin derivative CPT-11, in the antitumor effect of CPT-11. Cancer Res 51(16):4187–4191PubMed
16.
Zurück zum Zitat Iyer L, Ramírez J, Shepard D, Bingham C, Hossfeld D-K, Ratain M, Mayer U (2002) Biliary transport of irinotecan and metabolites in normal and P-glycoprotein-deficient mice. Cancer Chemother Pharmacol 49(4):336–341CrossRefPubMed Iyer L, Ramírez J, Shepard D, Bingham C, Hossfeld D-K, Ratain M, Mayer U (2002) Biliary transport of irinotecan and metabolites in normal and P-glycoprotein-deficient mice. Cancer Chemother Pharmacol 49(4):336–341CrossRefPubMed
17.
Zurück zum Zitat Smith NF, Figg WD, Sparreboom A (2006) Pharmacogenetics of irinotecan metabolism and transport: an update. Toxicol In Vitro 20(2):163–175CrossRefPubMed Smith NF, Figg WD, Sparreboom A (2006) Pharmacogenetics of irinotecan metabolism and transport: an update. Toxicol In Vitro 20(2):163–175CrossRefPubMed
18.
Zurück zum Zitat Blaney SM, Takimoto C, Murry DJ, Kuttesch N, McCully C, Cole DE, Godwin K, Balis FM (1998) Plasma and cerebrospinal fluid pharmacokinetics of 9-aminocamptothecin (9-AC), irinotecan (CPT-11), and SN-38 in nonhuman primates. Cancer Chemother Pharmacol 41(6):464–468. doi:10.1007/s002800050768 CrossRefPubMed Blaney SM, Takimoto C, Murry DJ, Kuttesch N, McCully C, Cole DE, Godwin K, Balis FM (1998) Plasma and cerebrospinal fluid pharmacokinetics of 9-aminocamptothecin (9-AC), irinotecan (CPT-11), and SN-38 in nonhuman primates. Cancer Chemother Pharmacol 41(6):464–468. doi:10.​1007/​s002800050768 CrossRefPubMed
19.
Zurück zum Zitat Friedman HS, Petros WP, Friedman AH, Schaaf LJ, Kerby T, Lawyer J, Parry M, Houghton PJ, Lovell S, Rasheed K, Cloughsey T, Stewart ES, Colvin OM, Provenzale JM, McLendon RE, Bigner DD, Cokgor I, Haglund M, Rich J, Ashley D, Malczyn J, Elfring GL, Miller LL (1999) Irinotecan therapy in adults with recurrent or progressive malignant glioma. J Clin Oncol 17(5):1516PubMed Friedman HS, Petros WP, Friedman AH, Schaaf LJ, Kerby T, Lawyer J, Parry M, Houghton PJ, Lovell S, Rasheed K, Cloughsey T, Stewart ES, Colvin OM, Provenzale JM, McLendon RE, Bigner DD, Cokgor I, Haglund M, Rich J, Ashley D, Malczyn J, Elfring GL, Miller LL (1999) Irinotecan therapy in adults with recurrent or progressive malignant glioma. J Clin Oncol 17(5):1516PubMed
20.
Zurück zum Zitat Prados MD, Lamborn K, Yung WKA, Jaeckle K, Robins HI, Mehta M, Fine HA, Wen PY, Cloughesy T, Chang S, Nicholas MK, Schiff D, Greenberg H, Junck L, Fink K, Hess K, Kuhn J (2006) A phase 2 trial of irinotecan (CPT-11) in patients with recurrent malignant glioma: a North American brain tumor consortium study. Neuro-Oncology 8(2):189–193. doi:10.1215/15228517-2005-010 CrossRefPubMedCentralPubMed Prados MD, Lamborn K, Yung WKA, Jaeckle K, Robins HI, Mehta M, Fine HA, Wen PY, Cloughesy T, Chang S, Nicholas MK, Schiff D, Greenberg H, Junck L, Fink K, Hess K, Kuhn J (2006) A phase 2 trial of irinotecan (CPT-11) in patients with recurrent malignant glioma: a North American brain tumor consortium study. Neuro-Oncology 8(2):189–193. doi:10.​1215/​15228517-2005-010 CrossRefPubMedCentralPubMed
21.
Zurück zum Zitat Baumann BC, Dorsey JF, Benci JL, Joh DY, Kao GD (2012) Stereotactic intracranial implantation and in vivo bioluminescent imaging of tumor xenografts in a mouse model system of glioblastoma multiforme. J Vis Exp 67:e4089. doi:10.3791/4089 Baumann BC, Dorsey JF, Benci JL, Joh DY, Kao GD (2012) Stereotactic intracranial implantation and in vivo bioluminescent imaging of tumor xenografts in a mouse model system of glioblastoma multiforme. J Vis Exp 67:e4089. doi:10.​3791/​4089
22.
Zurück zum Zitat Brehar FM, Ciurea AV, Chivu M, Zarnescu O, Radulescu R, Dragu D (2008) The development of xenograft glioblastoma implants in nude mice brain. J Med Life 1(3):275–286PubMed Brehar FM, Ciurea AV, Chivu M, Zarnescu O, Radulescu R, Dragu D (2008) The development of xenograft glioblastoma implants in nude mice brain. J Med Life 1(3):275–286PubMed
23.
Zurück zum Zitat Szentirmai O, Baker CH, Lin N, Szucs S, Takahashi M, Kiryu S, Kung AL, Mulligan RC, Carter BS (2006) Noninvasive bioluminescence imaging of luciferase expressing intracranial U87 xenografts: correlation with magnetic resonance imaging determined tumor volume and longitudinal use in assessing tumor growth and antiangiogenic treatment effect. Neurosurgery 58(2):365–372CrossRefPubMed Szentirmai O, Baker CH, Lin N, Szucs S, Takahashi M, Kiryu S, Kung AL, Mulligan RC, Carter BS (2006) Noninvasive bioluminescence imaging of luciferase expressing intracranial U87 xenografts: correlation with magnetic resonance imaging determined tumor volume and longitudinal use in assessing tumor growth and antiangiogenic treatment effect. Neurosurgery 58(2):365–372CrossRefPubMed
24.
Zurück zum Zitat Goldwirt L, Zahr N, Farinotti R, Fernandez C (2013) Development of a new UPLC-MSMS method for the determination of temozolomide in mice: application to plasma pharmacokinetics and brain distribution study. Biomed Chromatogr 27(7):889–893. doi:10.1002/bmc.2877 CrossRefPubMed Goldwirt L, Zahr N, Farinotti R, Fernandez C (2013) Development of a new UPLC-MSMS method for the determination of temozolomide in mice: application to plasma pharmacokinetics and brain distribution study. Biomed Chromatogr 27(7):889–893. doi:10.​1002/​bmc.​2877 CrossRefPubMed
25.
Zurück zum Zitat Goldwirt L, Lemaitre F, Zahr N, Farinotti R, Fernandez C (2012) A new UPLC-MS/MS method for the determination of irinotecan and 7-ethyl-10-hydroxycamptothecin (SN-38) in mice: application to plasma and brain pharmacokinetics. J Pharm Biomed Anal 66:325–333. doi:10.1016/j.jpba.2012.04.003 CrossRefPubMed Goldwirt L, Lemaitre F, Zahr N, Farinotti R, Fernandez C (2012) A new UPLC-MS/MS method for the determination of irinotecan and 7-ethyl-10-hydroxycamptothecin (SN-38) in mice: application to plasma and brain pharmacokinetics. J Pharm Biomed Anal 66:325–333. doi:10.​1016/​j.​jpba.​2012.​04.​003 CrossRefPubMed
27.
Zurück zum Zitat Maity A, Pore N, Lee J, Solomon D, Rourke DM (2000) Epidermal growth factor receptor transcriptionally up-regulates vascular endothelial growth factor expression in human glioblastoma cells via a pathway involving phosphatidylinositol 3-kinase and distinct from that induced by hypoxia. Cancer Res 60(20):5879–5886PubMed Maity A, Pore N, Lee J, Solomon D, Rourke DM (2000) Epidermal growth factor receptor transcriptionally up-regulates vascular endothelial growth factor expression in human glioblastoma cells via a pathway involving phosphatidylinositol 3-kinase and distinct from that induced by hypoxia. Cancer Res 60(20):5879–5886PubMed
28.
Zurück zum Zitat Oka N, Soeda A, Inagaki A, Onodera M, Maruyama H, Hara A, Kunisada T, Mori H, Iwama T (2007) VEGF promotes tumorigenesis and angiogenesis of human glioblastoma stem cells. Biochem Biophys Res Commun 360(3):553–559CrossRefPubMed Oka N, Soeda A, Inagaki A, Onodera M, Maruyama H, Hara A, Kunisada T, Mori H, Iwama T (2007) VEGF promotes tumorigenesis and angiogenesis of human glioblastoma stem cells. Biochem Biophys Res Commun 360(3):553–559CrossRefPubMed
29.
Zurück zum Zitat Chan ASY, Leung SY, Wong MP, Yuen ST, Cheung N, Fan YW, Chung LP (1998) Expression of vascular endothelial growth factor and its receptors in the anaplastic progression of astrocytoma, oligodendroglioma, and ependymoma. Am J Surg Pathol 22(7):816–826CrossRefPubMed Chan ASY, Leung SY, Wong MP, Yuen ST, Cheung N, Fan YW, Chung LP (1998) Expression of vascular endothelial growth factor and its receptors in the anaplastic progression of astrocytoma, oligodendroglioma, and ependymoma. Am J Surg Pathol 22(7):816–826CrossRefPubMed
30.
Zurück zum Zitat Leon SP, Folkerth RD, Black PM (1996) Microvessel density is a prognostic indicator for patients with astroglial brain tumors. Cancer 77(2):362–372CrossRefPubMed Leon SP, Folkerth RD, Black PM (1996) Microvessel density is a prognostic indicator for patients with astroglial brain tumors. Cancer 77(2):362–372CrossRefPubMed
31.
Zurück zum Zitat Weindel K, Moringlane JR, Marm D, Weich HA (1994) Detection and quantification of vascular endothelial growth factor/vascular permeability factor in brain tumor tissue and cyst fluid: the key to angiogenesis? Neurosurgery 35(3):439–449CrossRefPubMed Weindel K, Moringlane JR, Marm D, Weich HA (1994) Detection and quantification of vascular endothelial growth factor/vascular permeability factor in brain tumor tissue and cyst fluid: the key to angiogenesis? Neurosurgery 35(3):439–449CrossRefPubMed
32.
Zurück zum Zitat Kim KJ, Li B, Winer J, Armanini M, Gillett N, Phillips HS, Ferrara N (1993) Inhibition of vascular endothelial growth factor-induced angiogenesis suppresses tumour growth in vivo. Nature 362(6423):841–844CrossRefPubMed Kim KJ, Li B, Winer J, Armanini M, Gillett N, Phillips HS, Ferrara N (1993) Inhibition of vascular endothelial growth factor-induced angiogenesis suppresses tumour growth in vivo. Nature 362(6423):841–844CrossRefPubMed
33.
Zurück zum Zitat von Baumgarten L, Brucker D, Tirniceru A, Kienast Y, Grau S, Burgold S, Herms J, Winkler F (2011) Bevacizumab has differential and dose-dependent effects on glioma blood vessels and tumor cells. Clin Cancer Res 17(19):6192–6205. doi:10.1158/1078-0432.ccr-10-1868 CrossRef von Baumgarten L, Brucker D, Tirniceru A, Kienast Y, Grau S, Burgold S, Herms J, Winkler F (2011) Bevacizumab has differential and dose-dependent effects on glioma blood vessels and tumor cells. Clin Cancer Res 17(19):6192–6205. doi:10.​1158/​1078-0432.​ccr-10-1868 CrossRef
34.
Zurück zum Zitat Mathieu V, De Neve N, Le Mercier M, Dewelle J, Gaussin JF, Dehoux M, Kiss R, Lefranc F (2008) Combining bevacizumab with temozolomide increases the antitumor efficacy of temozolomide in a human glioblastoma orthotopic xenograft model. Neoplasia 10(12):1383–1392PubMedCentralPubMed Mathieu V, De Neve N, Le Mercier M, Dewelle J, Gaussin JF, Dehoux M, Kiss R, Lefranc F (2008) Combining bevacizumab with temozolomide increases the antitumor efficacy of temozolomide in a human glioblastoma orthotopic xenograft model. Neoplasia 10(12):1383–1392PubMedCentralPubMed
35.
Zurück zum Zitat Gerber H-P, Ferrara N (2005) Pharmacology and pharmacodynamics of bevacizumab as monotherapy or in combination with cytotoxic therapy in preclinical studies. Cancer Res 65(3):671–680PubMed Gerber H-P, Ferrara N (2005) Pharmacology and pharmacodynamics of bevacizumab as monotherapy or in combination with cytotoxic therapy in preclinical studies. Cancer Res 65(3):671–680PubMed
37.
Zurück zum Zitat Winkler F, Kozin SV, Tong RT, Chae SS, Booth MF, Garkavtsev I, Xu L, Hicklin DJ, Fukumura D, di Tomaso E, Munn LL, Jain RK (2004) Kinetics of vascular normalization by VEGFR2 blockade governs brain tumor response to radiation: role of oxygenation, angiopoietin-1, and matrix metalloproteinases. Cancer Cell 6:553–563PubMed Winkler F, Kozin SV, Tong RT, Chae SS, Booth MF, Garkavtsev I, Xu L, Hicklin DJ, Fukumura D, di Tomaso E, Munn LL, Jain RK (2004) Kinetics of vascular normalization by VEGFR2 blockade governs brain tumor response to radiation: role of oxygenation, angiopoietin-1, and matrix metalloproteinases. Cancer Cell 6:553–563PubMed
38.
Zurück zum Zitat EMEA (2005) Bevacizumab European public assessment report—Scientific Discussion EMEA (2005) Bevacizumab European public assessment report—Scientific Discussion
39.
Zurück zum Zitat Goldwirt L, Beccaria K, Carpentier A, Farinotti R, Fernandez C (2014) Irinotecan and temozolomide brain distribution: a focus on ABCB1. Cancer Chemother Pharmacol 74(1):185–193CrossRefPubMed Goldwirt L, Beccaria K, Carpentier A, Farinotti R, Fernandez C (2014) Irinotecan and temozolomide brain distribution: a focus on ABCB1. Cancer Chemother Pharmacol 74(1):185–193CrossRefPubMed
40.
Zurück zum Zitat Kemper EM, Leenders W, Küsters B, Lyons S, Buckle T, Heerschap A, Boogerd W, Beijnen JH, van Tellingen O (2006) Development of luciferase tagged brain tumour models in mice for chemotherapy intervention studies. Eur J Cancer 42(18):3294–3303. doi:10.1016/j.ejca.2006.07.013 CrossRefPubMed Kemper EM, Leenders W, Küsters B, Lyons S, Buckle T, Heerschap A, Boogerd W, Beijnen JH, van Tellingen O (2006) Development of luciferase tagged brain tumour models in mice for chemotherapy intervention studies. Eur J Cancer 42(18):3294–3303. doi:10.​1016/​j.​ejca.​2006.​07.​013 CrossRefPubMed
42.
Zurück zum Zitat Schaich M, Kestel L, Pfirrmann M, Robel K, Illmer T, Kramer M, Dill C, Ehninger G, Schackert G, Krex D (2009) A MDR1 (ABCB1) gene single nucleotide polymorphism predicts outcome of temozolomide treatment in glioblastoma patients. Ann Oncol 20(1):175–181. doi:10.1093/annonc/mdn548 CrossRefPubMed Schaich M, Kestel L, Pfirrmann M, Robel K, Illmer T, Kramer M, Dill C, Ehninger G, Schackert G, Krex D (2009) A MDR1 (ABCB1) gene single nucleotide polymorphism predicts outcome of temozolomide treatment in glioblastoma patients. Ann Oncol 20(1):175–181. doi:10.​1093/​annonc/​mdn548 CrossRefPubMed
44.
Zurück zum Zitat Ellingson BM, Cloughesy TF, Lai A, Nghiemphu PL, Lalezari S, Zaw T, Motevalibashinaeini K, Mischel PS, Pope WB (2012) Quantification of edema reduction using differential quantitative T2 (DQT2) relaxometry mapping in recurrent glioblastoma treated with bevacizumab. J Neurooncol 106(1):111–119. doi:10.1007/s11060-011-0638-x CrossRefPubMed Ellingson BM, Cloughesy TF, Lai A, Nghiemphu PL, Lalezari S, Zaw T, Motevalibashinaeini K, Mischel PS, Pope WB (2012) Quantification of edema reduction using differential quantitative T2 (DQT2) relaxometry mapping in recurrent glioblastoma treated with bevacizumab. J Neurooncol 106(1):111–119. doi:10.​1007/​s11060-011-0638-x CrossRefPubMed
46.
Zurück zum Zitat Lin F, Marchetti S, Pluim D, Iusuf D, Mazzanti R, Schellens JHM, Beijnen JH, van Tellingen O (2013) Abcc4 together with Abcb1 and Abcg2 form a robust cooperative drug efflux system that restricts the brain entry of camptothecin analogues. Clin Cancer Res 19(8):2084–2095. doi:10.1158/1078-0432.ccr-12-3105 CrossRefPubMed Lin F, Marchetti S, Pluim D, Iusuf D, Mazzanti R, Schellens JHM, Beijnen JH, van Tellingen O (2013) Abcc4 together with Abcb1 and Abcg2 form a robust cooperative drug efflux system that restricts the brain entry of camptothecin analogues. Clin Cancer Res 19(8):2084–2095. doi:10.​1158/​1078-0432.​ccr-12-3105 CrossRefPubMed
Metadaten
Titel
Preclinical impact of bevacizumab on brain and tumor distribution of irinotecan and temozolomide
verfasst von
Lauriane Goldwirt
Kevin Beccaria
Alexandre Carpentier
Ahmed Idbaih
Charlotte Schmitt
Camille Levasseur
Marianne Labussiere
Aline Milane
Robert Farinotti
Christine Fernandez
Publikationsdatum
01.04.2015
Verlag
Springer US
Erschienen in
Journal of Neuro-Oncology / Ausgabe 2/2015
Print ISSN: 0167-594X
Elektronische ISSN: 1573-7373
DOI
https://doi.org/10.1007/s11060-015-1717-1

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