In vivo positron emission tomography imaging with [11C]ABP688: binding variability and specificity for the metabotropic glutamate receptor subtype 5 in baboons

被引:48
作者
DeLorenzo, Christine [1 ]
Milak, Matthew S. [1 ,2 ]
Brennan, Kathleen G. [1 ]
Kumar, J. S. Dileep [1 ,2 ,3 ]
Mann, J. John [1 ,2 ,3 ]
Parsey, Ramin V. [1 ,2 ]
机构
[1] Columbia Univ Coll Phys & Surg, Dept Psychiat, Div Mol Imaging & Neuropathol, New York, NY USA
[2] New York State Psychiat Inst & Hosp, New York, NY 10032 USA
[3] Columbia Univ Coll Phys & Surg, Dept Radiol, New York, NY 10032 USA
关键词
(11)C]ABP688; Glutamate; Metabotropic glutamate receptor subtype 5; MTEP; Positron emission tomography; Occupancy; MGLU5; RECEPTOR; GRAPHICAL ANALYSIS; MODELING CONSIDERATIONS; ALLOSTERIC MODULATORS; PARKINSONS-DISEASE; ANTAGONIST MPEP; ANXIOLYTIC-LIKE; FRAGILE-X; PET; POTENT;
D O I
10.1007/s00259-010-1723-7
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Metabotropic glutamate receptor subtype 5 (mGluR5) dysfunction has been implicated in several disorders. [(11)C]ABP688, a positron emission tomography (PET) ligand targeting mGluR5, could be a valuable tool in the development of novel therapeutics for these disorders by establishing in vivo drug occupancy. Due to safety concerns in humans, these studies may be performed in nonhuman primates. Therefore, in vivo characterization of [(11)C]ABP688 in nonhuman primates is essential. Test-retest studies were performed in baboons (Papio anubis) to compare modeling approaches and determine the optimal reference region. The mGluR5-specific antagonist 3-((2-methyl-1,3-thiazol-4-yl)ethynyl)pyridine (MTEP) was then used in test-block studies, in which ligand binding was measured before and after MTEP administration. Test/block data were analyzed both by calculating changes in binding and using a graphical approach, which allowed estimation of both MTEP occupancy and nonspecific binding. Test-retest results, which have not been previously reported for [(11)C]ABP688, indicated that [(11)C]ABP688 variability is low using an unconstrained two-tissue compartment model. The most appropriate, though not ideal, reference region was found to be the gray matter of the cerebellum. Using these optimal modeling techniques on the test/block data, about 90% occupancy was estimated by the graphical approach. These studies are the first to demonstrate the specificity of [(11)C]ABP688 for mGluR5 with in vivo PET in nonhuman primates. The results indicate that, in baboons, occupancy of mGluR5 is detectable by in vivo PET, a useful finding for proceeding to human studies, or performing further baboon studies, quantifying the in vivo occupancy of novel therapeutics targeting mGluR5.
引用
收藏
页码:1083 / 1094
页数:12
相关论文
共 61 条
[1]   Protection but maintained dysfunction of nigral dopaminergic nerve cell bodies and striatal dopaminergic terminals in MPTP-lesioned mice after acute treatment with the mGluR5 antagonist MPEP [J].
Aguirre, JA ;
Kehr, J ;
Yoshitake, T ;
Liu, FL ;
Rivera, A ;
Fernandez-Espinola, S ;
Andbjer, B ;
Leo, G ;
Medhurst, AD ;
Agnati, LF ;
Fuxe, K .
BRAIN RESEARCH, 2005, 1033 (02) :216-220
[2]  
Ametamey SM, 2007, J NUCL MED, V48, P247
[3]  
Ametamey SM, 2006, J NUCL MED, V47, P698
[4]   In vivo receptor occupancy of mGlu5 receptor antagonists using the novel radioligand [3H]3-methoxy-5-(pyridin-2-ylethynyl)pyridine) [J].
Anderson, JJ ;
Bradbury, MJ ;
Giracello, DR ;
Chapman, DF ;
Holtz, G ;
Roppe, J ;
King, C ;
Cosford, NDP ;
Varney, MA .
EUROPEAN JOURNAL OF PHARMACOLOGY, 2003, 473 (01) :35-40
[5]   Quantitative comparison of algorithms for inter-subject registration of 3D volumetric brain MRI scans [J].
Ardekani, BA ;
Guckemus, S ;
Bachman, A ;
Hoptman, MJ ;
Wojtaszek, M ;
Nierenberg, J .
JOURNAL OF NEUROSCIENCE METHODS, 2005, 142 (01) :67-76
[6]   Expression and cell distribution of group I and group II metabotropic glutamate receptor subtypes in Taylor-type focal cortical dysplasia [J].
Aronica, E ;
Gorter, JA ;
Jansen, GH ;
van Veelen, CWM ;
van Rijen, PC ;
Ramkema, M ;
Troost, D .
EPILEPSIA, 2003, 44 (06) :785-795
[7]   Antidepressant-like effects of mGluR1 and mGluR5 antagonists in the rat forced swim and the mouse tail suspension tests [J].
Belozertseva, I. V. ;
Kos, T. ;
Popik, P. ;
Danysz, W. ;
Bespalov, A. Y. .
EUROPEAN NEUROPSYCHOPHARMACOLOGY, 2007, 17 (03) :172-179
[8]   The behavioral profile of the potent and selective mGlu5 receptor antagonist 3-[(2-methyl-1,3-thiazol-4-yl)ethynyl]pyridine, (MTEP) in rodent models of anxiety [J].
Busse, CS ;
Brodkin, J ;
Tattersall, D ;
Anderson, JJ ;
Warren, N ;
Tehrani, L ;
Bristow, LJ ;
Varney, MA ;
Cosford, NDP .
NEUROPSYCHOPHARMACOLOGY, 2004, 29 (11) :1971-1979
[9]   3-[(2-methyl-1,3-thiazol-4-yl)ethynyl]-pyridine: A potent and highly selective metabotropic glutamate subtype 5 receptor antagonist with anxiolytic activity [J].
Cosford, NDP ;
Tehrani, L ;
Roppe, J ;
Schweiger, E ;
Smith, ND ;
Anderson, J ;
Bristow, L ;
Brodkin, J ;
Jiang, XH ;
McDonald, I ;
Rao, S ;
Washburn, M ;
Varney, MA .
JOURNAL OF MEDICINAL CHEMISTRY, 2003, 46 (02) :204-206
[10]   [3H]-methoxymethyl-MTEP and [3H]-methoxy-PEPy:: Potent and selective radioligands for the metabotropic glutamate subtype 5 (mGlu5) receptor [J].
Cosford, NDP ;
Roppe, J ;
Tehrani, L ;
Schweiger, EJ ;
Seiders, TJ ;
Chaudary, A ;
Rao, S ;
Varney, MA .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 2003, 13 (03) :351-354