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1.
Mol Imaging Biol ; 24(1): 157-166, 2022 02.
Article in English | MEDLINE | ID: mdl-34542805

ABSTRACT

PURPOSE: In this study we compared the recently developed TSPO tracer [18F]F-DPA, with [18F]DPA-714 and [11C]PBR28 by performing in vivo PET imaging on the same Alzheimer's disease mouse model APP/PS1-21 (TG) and wild-type (WT) mice with all three radiotracers. PROCEDURES: To compare the radiotracer uptake, percentage of injected dose/mL (%ID/mL), standardized uptake value ratios to cerebellum (SUVRCB), and voxel-wise analyses were performed. RESULTS: The peak uptake of [18F]F-DPA was higher than 4.3% ID/mL, while [18F]DPA-714 reached just over 3% ID/mL, and [11C]PBR28 was over 4% ID/mL in only one brain region in the WT mice. The peak/60-min uptake ratios of [18F]F-DPA were significantly higher (p < 0.001) than those of [18F]DPA-714 and [11C]PBR28. The differences in [18F]F-DPA SUVRCB between WT and TG mice were highly significant (p < 0.001) in the three studied time periods after injection. [18F]DPA-714 uptake was significantly higher in TG mice starting in the 20-40-min timeframe and increased thereafter, whereas [11C]PBR28 uptake became significant at 10-20 min (p < 0.05). The voxel-wise analysis confirmed the differences between the radiotracers. CONCLUSIONS: [18F]F-DPA displays higher brain uptake, higher TG-to-WT SUVRCB ratios, and faster clearance than [18F]DPA-714 and [11C]PBR28, and could prove useful for detecting low levels of inflammation and allow for shorter dynamic PET scans.


Subject(s)
Alzheimer Disease , Alzheimer Disease/diagnostic imaging , Animals , Brain/diagnostic imaging , Mice , Neuroinflammatory Diseases , Positron-Emission Tomography/methods , Pyrazoles , Pyrimidines
2.
Neuro Oncol ; 22(7): 1030-1043, 2020 07 07.
Article in English | MEDLINE | ID: mdl-32047908

ABSTRACT

BACKGROUND: Tumor-associated microglia and macrophages (TAMs) and myeloid-derived suppressor cells (MDSCs) are potent immunosuppressors in the glioma tumor microenvironment (TME). Their infiltration is associated with tumor grade, progression, and therapy resistance. Specific tools for image-guided analysis of spatiotemporal changes in the immunosuppressive myeloid tumor compartments are missing. We aimed (i) to evaluate the role of fluorodeoxyglucose (18F)DPA-714* (translocator protein [TSPO]) PET-MRI in the assessment of the immunosuppressive TME in glioma patients, and (ii) to cross-correlate imaging findings with in-depth immunophenotyping. METHODS: To characterize the glioma TME, a mixed collective of 9 glioma patients underwent [18F]DPA-714-PET-MRI in addition to [18F]fluoro-ethyl-tyrosine (FET)-PET-MRI. Image-guided biopsy samples were immunophenotyped by multiparametric flow cytometry and immunohistochemistry. In vitro autoradiography was performed for image validation and assessment of tracer binding specificity. RESULTS: We found a strong relationship (r = 0.84, P = 0.009) between the [18F]DPA-714 uptake and the number and activation level of glioma-associated myeloid cells (GAMs). TSPO expression was mainly restricted to human leukocyte antigen D related-positive (HLA-DR+) activated GAMs, particularly to tumor-infiltrating HLA-DR+ MDSCs and TAMs. [18F]DPA-714-positive tissue volumes exceeded [18F]FET-positive volumes and showed a differential spatial distribution. CONCLUSION: [18F]DPA-714-PET may be used to non-invasively image the glioma-associated immunosuppressive TME in vivo. This imaging paradigm may also help to characterize the heterogeneity of the glioma TME with respect to the degree of myeloid cell infiltration at various disease stages. [18F]DPA-714 may also facilitate the development of new image-guided therapies targeting the myeloid-derived TME.


Subject(s)
Brain Neoplasms , Glioma , Tumor Microenvironment , Adult , Brain Neoplasms/diagnostic imaging , Female , Fluorine Radioisotopes , Glioma/diagnostic imaging , Humans , Male , Middle Aged , Positron-Emission Tomography , Receptors, GABA , Retrospective Studies
3.
J Cereb Blood Flow Metab ; 40(5): 1012-1020, 2020 05.
Article in English | MEDLINE | ID: mdl-31142224

ABSTRACT

[18F]F-DPA, a novel translocator protein 18 kDa (TSPO)-specific radioligand for imaging neuroinflammation, has to date been synthesized with low to moderate molar activities (Am's). In certain cases, low Am can skew the estimation of specific binding. The high proportion of the non-radioactive component can reduce the apparent-specific binding by competitively binding to receptors. We developed a nucleophilic synthesis of [18F]F-DPA resulting in high Am (990 ± 150 GBq/µmol) and performed in vivo comparison with low Am (9.0 ± 2.9 GBq/µmol) [18F]F-DPA in the same APP/PS1-21 and wild-type mice (injected masses: 0.34 ± 0.13 µg/kg and 38 ± 15 µg/kg, respectively). The high level of microgliosis in the APP/PS1-21 mouse model enables good differentiation between diseased and healthy animals and serves better to distinguish the effect of differing Am on specific binding. The differing injected masses affect the washout profile and shape of the time-activity curves. Ratios of standardized uptake values obtained with high and low Am [18F]F-DPA demonstrate that there is a 1.5-fold higher uptake of radioactivity in the brains of APP/PS1-21 animals when imaging is carried out with high Am [18F]F-DPA. The differences between APP/PS1-21 and wild-type animals showed higher significance when high Am was used.


Subject(s)
Alzheimer Disease/metabolism , Brain/metabolism , Positron-Emission Tomography/methods , Radiopharmaceuticals , Receptors, GABA/analysis , Animals , Disease Models, Animal , Fluorine Radioisotopes , Mice
4.
Synapse ; 73(3): e22077, 2019 03.
Article in English | MEDLINE | ID: mdl-30368914

ABSTRACT

Parkinson's disease (PD) is characterized by the degeneration of dopaminergic (DA) neurons constituting the nigrostriatal pathway. Neuroinflammation, related to microglial activation, plays an important role in this process. Exploration of animal models of PD using neuroimaging modalities allows to better understand the pathophysiology of the disease. Here, we fully explored a moderate lesion model in the rat in which 6-hydroxydopamine was unilaterally delivered in three sites along the striatum. The degenerative process was assessed through in vivo Positron Emission Tomography (PET) imaging and in vitro autoradiographic quantitation of the striatal dopamine transporter (DAT) and immunostaining of tyrosine hydroxylase (TH). The microglial activation was studied through in vitro autoradiographic quantitation of the 18 kDa translocator protein (TSPO) in the striatum and CD11b staining in the SN. In addition, a targeted metabolomics exploration was performed in both these structures using mass spectrometry coupled to HPLC. Our results showed a reproducible decrease in the striatal DAT density associated with a reduction in the number of TH-positive cells in the SN and striatum, reflecting a robust moderate degeneration of nigrostriatal DA neurons. In addition, we observed strong microglia activation in both the striatum and SN ipsilateral to the lesion, highlighting that this moderate degeneration of DA neurons was associated with a marked neuroinflammation. Our metabolomics studies revealed alterations of specific metabolites and metabolic pathways such as carnitine, arginine/proline, and histidine metabolisms. These results bring new insights in the PD mechanism knowledge and new potential targets for future therapeutic strategies.


Subject(s)
Corpus Striatum/pathology , Dopaminergic Neurons/pathology , Oxidopamine/toxicity , Parkinson Disease/pathology , Animals , Carrier Proteins/metabolism , Corpus Striatum/diagnostic imaging , Corpus Striatum/metabolism , Disease Models, Animal , Dopamine Plasma Membrane Transport Proteins/metabolism , Dopaminergic Neurons/drug effects , Dopaminergic Neurons/metabolism , Male , Metabolome , Microglia/drug effects , Microglia/metabolism , Microglia/pathology , Parkinson Disease/etiology , Positron-Emission Tomography , Rats , Rats, Wistar , Receptors, GABA-A/metabolism , Tyrosine 3-Monooxygenase/metabolism
5.
Theranostics ; 8(19): 5400-5418, 2018.
Article in English | MEDLINE | ID: mdl-30555554

ABSTRACT

Microglia are potential targets for therapeutic intervention in neurological and neurodegenerative diseases affecting the central nervous system. In order to assess the efficacy of therapies aimed to reduce the tissue damaging activities of microglia and/or to promote the protective potential of these cells, suitable pre-clinical and clinical tools for the in vivo analysis of microglia activities and dynamics are required. The aim of this work was to identify new translational markers of the anti-inflammatory / protective state of microglia for the development of novel PET tracers. Methods: New translational markers of the anti-inflammatory/protective activation state of microglia were selected by bioinformatic approaches and were in vitro and ex vivo validated by qPCR and immunohistochemistry in rodent and human samples. Once a viable marker was identified, a novel PET tracer was developed. This tracer was subsequently confirmed by autoradiography experiments in murine and human brain tissues. Results: Here we provide evidence that P2RY12 expression increases in murine and human microglia following exposure to anti-inflammatory stimuli, and that its expression is modulated in the reparative phase of experimental and clinical stroke. We then synthesized a novel carbon-11 labeled tracer targeting P2RY12, showing increased binding in brain sections of mice treated with IL4, and low binding to brain sections of a murine stroke model and of a stroke patient. Conclusion: This study provides new translational targets for PET tracers for the anti-inflammatory/protective activation state of microglia and shows the potential of a rationale-based approach. It therefore paves the way for the development of novel non-invasive methodologies aimed to monitor the success of therapeutic approaches in various neurological diseases.


Subject(s)
Brain/diagnostic imaging , Brain/immunology , Microglia/immunology , Molecular Imaging/methods , Positron-Emission Tomography/methods , Animals , Anti-Inflammatory Agents/administration & dosage , Carbon Radioisotopes/administration & dosage , Computational Biology , Gene Expression Profiling , Humans , Immunohistochemistry , Interleukin-4/administration & dosage , Mice , Radioactive Tracers , Real-Time Polymerase Chain Reaction , Receptors, Purinergic P2Y12/analysis , Rodentia , Stroke/pathology
6.
Nucl Med Biol ; 67: 1-9, 2018 12.
Article in English | MEDLINE | ID: mdl-30317069

ABSTRACT

INTRODUCTION: Neuroinflammation is associated with several neurological disorders, including Alzheimer's disease (AD). The translocator protein 18 kDa (TSPO), due to its overexpression during microglial activation and relatively low levels in the brain under normal neurophysiological conditions, is commonly used as an in vivo biomarker for neuroinflammation. Reported here is the preclinical evaluation of [18F]F-DPA, a promising new TSPO-specific radioligand, as a tool for the detection of activated microglia at different ages in the APP/PS1-21 mouse model of AD and a blocking study to determine the specificity of the tracer. METHODS: [18F]F-DPA was synthesised by the previously reported electrophilic 18F-fluorination methodology. In vivo PET and ex vivo brain autoradiography were used to observe the tracer distribution in the brains of APP/PS1-21 and wildtype mice at different ages (4.5-24 months). The biodistribution and degree of metabolism of [18F]F-DPA were analysed and the specificity of [18F]F-DPA for its target was determined by pre-treatment with PK11195. RESULTS: The in vivo PET imaging and ex vivo brain autoradiography data showed that [18F]F-DPA uptake in the brains of the transgenic animals increased with age, however, there was a drop in the tracer uptake at 19 mo. Despite the slight increase in [18F]F-DPA uptake with age in healthy animal brains, significant differences between wildtype and transgenic animals were seen in vivo at 9 months and ex vivo already at 4.5 months. The specificity study demonstrated that PK11195 can be used to significantly block [18F]F-DPA uptake in all the brain regions studied. CONCLUSIONS: In vivo time activity curves plateaued at approximately 20-40 min suggesting that this is the optimal imaging time. Significant differences in vivo are seen at 9 and 12 mo. Due to the higher resolution, ex vivo autoradiography with [18F]F-DPA can be used to visualise activated microglia at an early stage of AD pathology.


Subject(s)
Acetamides , Alzheimer Disease/pathology , Microglia/metabolism , Positron Emission Tomography Computed Tomography/methods , Pyrazoles , Acetamides/pharmacokinetics , Alzheimer Disease/diagnostic imaging , Alzheimer Disease/metabolism , Animals , Brain/diagnostic imaging , Brain/metabolism , Disease Models, Animal , Female , Male , Mice , Pyrazoles/pharmacokinetics , Tissue Distribution
7.
Mol Pharm ; 14(11): 4064-4078, 2017 11 06.
Article in English | MEDLINE | ID: mdl-28968497

ABSTRACT

Upregulation of the cannabinoid type 2 receptors (CB2R) unveils inflammation processes of pathological disorders, such as cancer, pain, or neurodegenerative diseases. Among others, CB2R agonist A-836339 has been labeled with carbon-11 for PET imaging of the CB2R and displayed promising results in a mouse model of Alzheimer's disease. The aim of the present work was to develop fluorinated analogs of A-836339 for labeling with fluorine-18 to design a new PET tracer for CB2R imaging. Seven fluorinated analogs of A-836339 were synthesized in two to three steps and their binding affinities and selectivities for both the human and the mouse CB2R were measured as well as their early ADME profiles. Among them, compound 2f (KihCB2R = 0.1 nM, KihCB1R/KihCB2R = 300) displayed high affinity and selectivity for CB2R but also promising lipophilicity, kinetic solubility, and membrane permeation properties and was further selected for in vitro metabolism studies. Incubation of 2f with human or rat liver microsomes followed by LC/MS analysis revealed the presence of six different metabolites mainly resulting from oxidation reactions. A tosylated precursor of 2f was synthesized in two steps and radiolabeled with fluorine-18 to afford [18F]2f in 15 ± 5% radiochemical yield and a molar activity of 110 ± 30 GBq/µmol. Autoradiographies of rat spleen and biodistribution studies in healthy rats including pretreatments with either CB2R or CB1R-specific compounds suggested that [18F]2f is a specific tracer for the CB2R in vivo. We have therefore demonstrated here that [18F]2f is a promising novel tracer for imaging CB2R in vivo using PET. Further investigation in animal models of inflammation will follow.


Subject(s)
Positron-Emission Tomography/methods , Animals , Humans , Kinetics , Mice , Rats , Receptor, Cannabinoid, CB2/metabolism , Thiazoles/chemistry
8.
Bioconjug Chem ; 28(10): 2524-2529, 2017 10 18.
Article in English | MEDLINE | ID: mdl-28931274

ABSTRACT

The complementary nature of positron emission tomography (PET) and near-infrared fluorescence (NIRF) imaging makes the development of innovative multimodal PET/NIRF probes a very exciting prospect. Herein, the bioinspired design of novel platform exploiting the strength and specificity of interactions between radioactive and fluorescent biotin derivatives and an avidin core is reported. The combination of an original [18F]fluoropyridinylated-biotin derivative and commercially available fluorescent biotin derivatives (Atto-425 and Atto-680) is investigated. The in vivo distribution of such a customized platform is also reported, for the first time, in healthy rodent using PET and ex vivo fluorescence imaging.


Subject(s)
Avidin/metabolism , Biomimetics/methods , Biotin/metabolism , Fluorine Radioisotopes , Infrared Rays , Optical Imaging/methods , Positron-Emission Tomography/methods , Radiochemistry
9.
Neuroscience ; 356: 52-63, 2017 07 25.
Article in English | MEDLINE | ID: mdl-28527955

ABSTRACT

Neuroinflammation is a key component of the pathophysiology of neurodegenerative diseases. The link between nicotine intake and positive outcome has been established, suggesting a role played by nicotinic receptors (nAChRs), especially α7nAChRs. The objective of this study was to evaluate the potential dose effects of PHA 543613 on neuron survival and striatal microglial activation in a rat model of brain excitotoxicity. A preliminary study was performed in vitro to confirm PHA 543613 agonist properties on α7nAChRs. Rats were lesioned in the right striatum with quinolinic acid (QA) and received either vehicle or PHA 543613 at 6 or 12mg/kg twice a day until sacrifice at Day 4 post-lesion. We first compared the translocator protein quantitative autoradiography in QA-lesioned brains with [3H]DPA-714 and [3H]PK-11195. The effects of PHA 543613 on microglial activation and neuronal survival were then evaluated through [3H]DPA-714 binding and immunofluorescence staining (Ox-42, NeuN) on adjacent brain sections. We demonstrated that [3H]DPA-714 provides a better signal-to-noise ratio than [3H]PK-11195. Furthermore, we showed that repeated PHA 543613 administration at a dose of 12mg/kg to QA-lesioned rats significantly protected neurons and reduced the intensity of microglial activation. This study reinforces the hypothesis that α7nAChR agonists can provide beneficial effects in the treatment of neurodegenerative diseases through potential modulation of microglial activation.


Subject(s)
Bridged Bicyclo Compounds, Heterocyclic/pharmacology , Neuroprotective Agents/pharmacology , Quinuclidines/pharmacology , alpha7 Nicotinic Acetylcholine Receptor/drug effects , Aging , Animals , Isoquinolines/pharmacology , Male , Neurons/drug effects , Nicotinic Agonists/pharmacology , Rats, Wistar , Signal-To-Noise Ratio , alpha7 Nicotinic Acetylcholine Receptor/metabolism
10.
J Cereb Blood Flow Metab ; 37(3): 1163-1178, 2017 Mar.
Article in English | MEDLINE | ID: mdl-28079433

ABSTRACT

Cannabinoid type 2 receptors (CB2R) have emerged as promising targets for the diagnosis and therapy of brain pathologies. However, no suitable radiotracers for accurate CB2R mapping have been found to date, limiting the investigation of the CB2 receptor expression using positron emission tomography (PET) imaging. In this work, we report the evaluation of the in vivo expression of CB2R with [11C]A-836339 PET after cerebral ischemia and in two rat models of neuroinflammation, first by intrastriatal LPS and then by AMPA injection. PET images and in vitro autoradiography showed a lack of specific [11C]A-836339 uptake in these animal models demonstrating the limitation of this radiotracer to image CB2 receptor under neuroinflammatory conditions. Further, using immunohistochemistry, the CB2 receptor displayed a modest expression increase after cerebral ischemia, LPS and AMPA models. Finally, [18F]DPA-714-PET and immunohistochemistry demonstrated decreased neuroinflammation by a selective CB2R agonist, JWH133. Taken together, these findings suggest that [11C]A-836339 is not a suitable radiotracer to monitor in vivo CB2R expression by using PET imaging. Future studies will have to investigate alternative radiotracers that could provide an accurate binding to CB2 receptors following brain inflammation.


Subject(s)
Positron-Emission Tomography/methods , Radiopharmaceuticals/standards , Receptor, Cannabinoid, CB2/analysis , Thiazoles/analysis , Animals , Autoradiography , Brain Ischemia , Carbon Radioisotopes , Disease Models, Animal , Inflammation , Mice , Positron-Emission Tomography/standards , Radiopharmaceuticals/analysis , Radiopharmaceuticals/pharmacokinetics , Thiazoles/pharmacokinetics
11.
Mol Imaging Biol ; 19(5): 736-745, 2017 Oct.
Article in English | MEDLINE | ID: mdl-28083825

ABSTRACT

PURPOSE: Many neurological conditions result in the overexpression of the translocator protein 18 kDa (TSPO), today recognized as a biomarker for microglial activation and neuroinflammation imaging. The pyrazolo[1,5-a]pyrimidine acetamides are a particularly attractive class of TSPO-specific ligands, prompting the development of several positron emission tomography (PET) radiotracers. This includes F-DPA, a recently reported fluorinated ligand (K i = 1.7 nM), wherein the fluorine atom is directly linked to the phenyl moiety without the presence of an alkyl or alkoxy spacer chain. Reported here is the preparation of [18F]F-DPA using [18F]Selectfluor bis(triflate) and the preliminary evaluation of [18F]F-DPA in healthy rats. Its metabolic profile and biodistribution in rats are compared with that of [18F]DPA-714, a closely related structure. PROCEDURES: [18F]F-DPA was synthesized by electrophilic fluorination using [18F]Selectfluor bis(triflate), [18F]DPA-714 was synthesized by conventional nucleophilic fluorination. The biodistribution of both radiotracers was compared in Sprague Dawley rats. Radiometabolites of both radiotracers in plasma and brain homogenates were analyzed by radioTLC. RESULTS: The radiochemical yield of [18F]F-DPA was 15 ± 3 % and the specific activity was 7.8 ± 0.4 GBq/µmol. The radiochemical purity exceeded 99 %. The in vivo time activity curves of [18F]F-DPA demonstrate rapid entry into the brain and a concentration equilibrium at 20-30 min after injection. The metabolic profiles at 90 min after radiotracer injection in the plasma show that unchanged [18F]F-DPA and [18F]DPA-714 account for 28.3 ± 6.4 and 11.1 ± 2.6 % of the remaining radioactivity, respectively. In the brain, unchanged [18F]F-DPA accounts for 93.5 ± 2.8 % of the radioactivity; whereas for [18F]DPA-714, this value is 53.6 ± 1.6 %. CONCLUSIONS: [18F]Selectfluor bis(triflate) was successfully used to label F-DPA with fluorine-18. The labeling position on the aromatic moiety imparts a higher stability compared to [18F]DPA-714 with regard to in vivo metabolism. [18F]F-DPA is a promising new radiotracer and warrants further investigation in animal models of disease.


Subject(s)
Carrier Proteins/metabolism , Pyrazoles/chemical synthesis , Pyrimidines/chemical synthesis , Radiopharmaceuticals/chemical synthesis , Receptors, GABA-A/metabolism , Animals , Blood Proteins/metabolism , Fluorine Radioisotopes , Ligands , Male , Positron Emission Tomography Computed Tomography , Protein Binding , Pyrazoles/chemistry , Pyrimidines/chemistry , Radiopharmaceuticals/chemistry , Rats, Sprague-Dawley , Tissue Distribution
12.
Eur J Med Chem ; 125: 346-359, 2017 Jan 05.
Article in English | MEDLINE | ID: mdl-27688189

ABSTRACT

The translocator protein 18 kDa (TSPO) is today a validated target for a number of therapeutic applications, but also a well-recognized diagnostic/imaging biomarker for the evaluation of inflammatory related-disease state and progression, prompting the development of specific and dedicated TSPO ligands worldwide. For this purpose, pyrazolo[1,5-a]pyrimidine acetamides constitute a unique class of high affinity and selectivity TSPO ligands; it includes DPA-714, a fluorine-containing derivative that has also been labelled with the positron-emitter fluorine-18, and is nowadays widely used as a Positron Emission Tomography imaging probe. Recently, to prevent defluorination issues encountered in vivo with this tracer, a first series of analogues was reported where the oxygen atom bridging the phenyl ring of the core structure and the fluorinated moiety was replaced with a more robust linkage. Among this new series, CfO-DPA-714 was discovered as a highly promising TSPO ligand. Herein, a novel series of fluorinated analogues of the latter molecule were synthesized and in vitro characterized, where the pharmacomodulation at the amide position of the molecule was explored. Thirteen compounds were thus prepared from a common key-ester intermediate (synthesized in 7 steps from 4-iodobenzoate - 11% overall yield) and a set of commercially available amines and obtained with moderate to good yields (23-81%) and high purities (>95%). With one exception, all derivatives displayed nanomolar to subnanomolar affinity for the TSPO and also high selectivity versus the CBR (Ki (CBR)/Ki (TSPO) > 103). Within this series, three compounds showed better Ki values (0.25, 0.26 and 0.30 nM) than that of DPA-714 (0.91 nM) and CfO-DPA-714 (0.37 nM), and favorable lipophilicity for brain penetration (3.6 < logD7.4 < 4.4). Among these three compounds, the N-methyl-N-propyl amide analogue (9) exhibited similar metabolic stability when compared to CfO-DPA-714 in mouse, rat and human microsomes. Therefore, the latter compound stands out as a promising candidate for drug development or for use as a PET probe, once fluorine-18-labelled, for in vivo neuroinflammation imaging.


Subject(s)
Pyrazoles/chemistry , Pyrazoles/pharmacology , Pyrimidines/chemistry , Pyrimidines/pharmacology , Receptors, GABA/metabolism , Animals , Fluorine Radioisotopes/chemistry , Fluorine Radioisotopes/metabolism , Fluorine Radioisotopes/pharmacology , Halogenation , Humans , Ligands , Mice , Microsomes/metabolism , Positron-Emission Tomography , Protein Binding , Pyrazoles/chemical synthesis , Pyrazoles/metabolism , Pyrimidines/chemical synthesis , Pyrimidines/metabolism , Rats
13.
Theranostics ; 6(11): 1753-67, 2016.
Article in English | MEDLINE | ID: mdl-27570548

ABSTRACT

In vivo Positron Emission Tomography (PET) imaging of the cystine-glutamate antiporter (system xc(-)) activity with [(18)F]FSPG is meant to be an attractive tool for the diagnosis and therapy evaluation of brain diseases. However, the role of system xc(-) in cerebral ischemia and its involvement in inflammatory reaction has been scarcely explored. In this work, we report the longitudinal investigation of the neuroinflammatory process following transient middle cerebral artery occlusion (MCAO) in rats using PET with [(18)F]FSPG and the translocator protein (TSPO) ligand [(18)F]DPA-714. In the ischemic territory, [(18)F]FSPG showed a progressive binding increase that peaked at days 3 to 7 and was followed by a progressive decrease from days 14 to 28 after reperfusion. In contrast, [(18)F]DPA-714 evidenced maximum binding uptake values over day 7 after reperfusion. Ex vivo immnunohistochemistry confirmed the up-regulation of system xc(-) in microglial cells and marginally in astrocytes. Inhibition of system xc(-) with sulfasalazine and S-4-CPG resulted in increased arginase (anti-inflammatory M2 marker) expression at day 7 after ischemia, together with a decrease in TSPO and microglial M1 proinflammatory markers (CCL2, TNF and iNOS) expression. Taken together, these results suggest that system xc(-) plays a key role in the inflammatory reaction underlying experimental stroke.


Subject(s)
Amino Acid Transport System y+/analysis , Brain Ischemia/complications , Brain Ischemia/diagnostic imaging , Encephalitis/diagnostic imaging , Glutamates/administration & dosage , Positron-Emission Tomography/methods , Pyrazoles/administration & dosage , Pyrimidines/administration & dosage , Animals , Astrocytes/enzymology , Astrocytes/physiology , Disease Models, Animal , Encephalitis/pathology , Longitudinal Studies , Microglia/enzymology , Microglia/physiology , Rats
14.
Chem Soc Rev ; 45(17): 4708-26, 2016 Aug 22.
Article in English | MEDLINE | ID: mdl-27276357

ABSTRACT

The positron-emitting radionuclide carbon-11 ((11)C, t1/2 = 20.3 min) possesses the unique potential for radiolabeling of any biological, naturally occurring, or synthetic organic molecule for in vivo positron emission tomography (PET) imaging. Carbon-11 is most often incorporated into small molecules by methylation of alcohol, thiol, amine or carboxylic acid precursors using [(11)C]methyl iodide or [(11)C]methyl triflate (generated from [(11)C]carbon dioxide or [(11)C]methane). Consequently, small molecules that lack an easily substituted (11)C-methyl group are often considered to have non-obvious strategies for radiolabeling and require a more customized approach. [(11)C]Carbon dioxide itself, [(11)C]carbon monoxide, [(11)C]cyanide, and [(11)C]phosgene represent alternative reactants to enable (11)C-carbonylation. Methodologies developed for preparation of (11)C-carbonyl groups have had a tremendous impact on the development of novel PET tracers and provided key tools for clinical research. (11)C-Carbonyl radiopharmaceuticals based on labeled carboxylic acids, amides, carbamates and ureas now account for a substantial number of important imaging agents that have seen translation to higher species and clinical research of previously inaccessible targets, which is a testament to the creativity, utility and practicality of the underlying radiochemistry.


Subject(s)
Carbon Radioisotopes/chemistry , Oxygen/chemistry , Positron-Emission Tomography/instrumentation , Radiopharmaceuticals/chemistry , Dacarbazine/analogs & derivatives , Dacarbazine/chemistry , Humans , Molecular Structure , Temozolomide
15.
Eur J Neurosci ; 43(10): 1352-65, 2016 05.
Article in English | MEDLINE | ID: mdl-26950181

ABSTRACT

Parkinson's disease is a slowly progressing neurodegenerative disorder caused by loss of dopaminergic neurons in the substantia nigra (SN), leading to severe impairment in motor and non-motor functions. Endogenous subventricular zone (SVZ) neural stem cells constantly give birth to new cells that might serve as a possible source for regeneration in the adult brain. However, neurodegeneration is accompanied by neuroinflammation and dopamine depletion, potentially compromising regeneration. We therefore employed in vivo imaging methods to study striatal deafferentation (N-ω-fluoropropyl-2ß-carbomethoxy-3ß-(4-[(123) I]iodophenyl)nortropane single photon emission computed tomography, DaTscan(™) ) and neuroinflammation in the SN and striatum (N,N-diethyl-2-(2-(4-(2-[(18) F]fluoroethoxy)phenyl)-5,7-dimethylpyrazolo[1,5-a]pyrimidin-3-yl)acetamide positron emission tomography, [(18) F]DPA-714 PET) in the intranigral 6-hydroxydopamine Parkinson's disease mouse model. Additionally, we transduced cells in the SVZ with a lentivirus encoding firefly luciferase and followed migration of progenitor cells in the SVZ-olfactory bulb axis via bioluminescence imaging under disease and control conditions. We found that activation of microglia in the SN is an acute process accompanying the degeneration of dopaminergic cell bodies in the SN. Dopaminergic deafferentation of the striatum does not influence the generation of doublecortin-positive neuroblasts in the SVZ, but generates chronic astrogliosis in the nigrostriatal system.


Subject(s)
Corpus Striatum/pathology , Dopaminergic Neurons/pathology , Encephalitis/pathology , Gliosis/complications , Neurogenesis , Parkinson Disease/pathology , Substantia Nigra/pathology , Animals , Astrocytes/pathology , Cell Proliferation , Corpus Striatum/drug effects , Disease Models, Animal , Encephalitis/complications , HEK293 Cells , Humans , Luminescent Measurements , Magnetic Resonance Imaging , Mice , Mice, Inbred C57BL , Microglia/pathology , Neural Pathways/pathology , Neural Pathways/physiology , Neural Stem Cells/pathology , Neural Stem Cells/physiology , Oxidopamine/toxicity , Parkinson Disease/complications , Positron-Emission Tomography , Substantia Nigra/drug effects
16.
Ann Neurol ; 79(5): 726-738, 2016 May.
Article in English | MEDLINE | ID: mdl-26891452

ABSTRACT

BACKGROUND: Quantitative in vivo imaging of myelin loss and repair in patients with multiple sclerosis (MS) is essential to understand the pathogenesis of the disease and to evaluate promyelinating therapies. Selectively binding myelin in the central nervous system white matter, Pittsburgh compound B ([11 C]PiB) can be used as a positron emission tomography (PET) tracer to explore myelin dynamics in MS. METHODS: Patients with active relapsing-remitting MS (n = 20) and healthy controls (n = 8) were included in a longitudinal trial combining PET with [11 C]PiB and magnetic resonance imaging. Voxel-wise maps of [11 C]PiB distribution volume ratio, reflecting myelin content, were derived. Three dynamic indices were calculated for each patient: the global index of myelin content change; the index of demyelination; and the index of remyelination. RESULTS: At baseline, there was a progressive reduction in [11 C]PiB binding from the normal-appearing white matter to MS lesions, reflecting a decline in myelin content. White matter lesions were characterized by a centripetal decrease in the tracer binding at the voxel level. During follow-up, high between-patient variability was found for all indices of myelin content change. Dynamic remyelination was inversely correlated with clinical disability (p = 0.006 and beta-coefficient = -0.67 with the Expanded Disability Status Scale; p = 0.003 and beta-coefficient = -0.68 with the MS Severity Scale), whereas no significant clinical correlation was found for the demyelination index. INTERPRETATION: [11 C]PiB PET allows quantification of myelin dynamics in MS and enables stratification of patients depending on their individual remyelination potential, which significantly correlates with clinical disability. This technique should be considered to assess novel promyelinating drugs. Ann Neurol 2016;79:726-738.

17.
J Nucl Med ; 57(2): 309-14, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26585058

ABSTRACT

UNLABELLED: The effects of metoclopramide on the central nervous system (CNS) in patients suggest substantial brain distribution. Previous data suggest that metoclopramide brain kinetics may nonetheless be controlled by ATP-binding cassette (ABC) transporters expressed at the blood-brain barrier. We used (11)C-metoclopramide PET imaging to elucidate the kinetic impact of transporter function on metoclopramide exposure to the brain. METHODS: (11)C-metoclopramide transport by P-glycoprotein (P-gp; ABCB1) and the breast cancer resistance protein (BCRP; ABCG2) was tested using uptake assays in cells overexpressing P-gp and BCRP. (11)C-metoclopramide brain kinetics were compared using PET in rats (n = 4-5) in the absence and presence of a pharmacologic dose of metoclopramide (3 mg/kg), with or without P-gp inhibition using intravenous tariquidar (8 mg/kg). The (11)C-metoclopramide brain distribution (VT based on Logan plot analysis) and brain kinetics (2-tissue-compartment model) were characterized with either a measured or an imaged-derived input function. Plasma and brain radiometabolites were studied using radio-high-performance liquid chromatography analysis. RESULTS: (11)C-metoclopramide transport was selective for P-gp over BCRP. Pharmacologic dose did not affect baseline (11)C-metoclopramide brain kinetics (VT = 2.28 ± 0.32 and 2.04 ± 0.19 mL⋅cm(-3) using microdose and pharmacologic dose, respectively). Tariquidar significantly enhanced microdose (11)C-metoclopramide VT (7.80 ± 1.43 mL⋅cm(-3)) with a 4.4-fold increase in K1 (influx rate constant) and a 2.3-fold increase in binding potential (k3/k4) in the 2-tissue-compartment model. In the pharmacologic situation, P-gp inhibition significantly increased metoclopramide brain distribution (VT = 6.28 ± 0.48 mL⋅cm(-3)) with a 2.0-fold increase in K1 and a 2.2-fold decrease in k2 (efflux rate), with no significant impact on binding potential. In this situation, only parent (11)C-metoclopramide could be detected in the brains of P-gp-inhibited rats. CONCLUSION: (11)C-metoclopramide benefits from favorable pharmacokinetic properties that offer reliable quantification of P-gp function at the blood-brain barrier in a pharmacologic situation. Using metoclopramide as a model of CNS drug, we demonstrated that P-gp function not only reduces influx but also mediates the efflux from the brain back to the blood compartment, with additional impact on brain distribution. This PET-based strategy of P-gp function investigation may provide new insight on the contribution of P-gp to the variability of response to CNS drugs between patients.


Subject(s)
ATP Binding Cassette Transporter, Subfamily B/metabolism , Brain/diagnostic imaging , Dopamine Antagonists/pharmacokinetics , Metoclopramide/pharmacokinetics , ATP Binding Cassette Transporter, Subfamily B/antagonists & inhibitors , ATP Binding Cassette Transporter, Subfamily G, Member 2 , ATP-Binding Cassette Transporters/metabolism , Animals , Blood-Brain Barrier/metabolism , Brain/metabolism , Cell Line, Tumor , Dose-Response Relationship, Drug , Humans , Male , Quinolines/pharmacology , Radionuclide Imaging , Rats
18.
Mol Imaging Biol ; 18(4): 617-26, 2016 08.
Article in English | MEDLINE | ID: mdl-26630973

ABSTRACT

PURPOSE: Transgenic mice expressing the polyoma middle T oncoprotein (PyMT) in the mammary epithelium were explored by multimodal imaging to monitor longitudinally spontaneous tumor growth and response to chemotherapy. PROCEDURES: Positron emission tomography (PET) with 2-deoxy-2-[(18)F]fluoro-D-glucose ([(18)F]FDG) and 3'-deoxy-3'-[(18)F]fluorothymidine ([(18)F]FLT), single photon emission tomography (SPECT) with [(99m)Tc]TcO4 ([(99m)Tc]TEC), X-ray computed tomography, and fluorescent confocal endomicroscopy (FCE) images were acquired during tumor progression in female PyMT mice. Imaging with [(18)F]FDG and [(99m)Tc]TEC was also performed in untreated, doxorubicin-treated, and docetaxel-treated PyMT mice. Total tumor volumes were quantified. Tumors were collected and macroscopic and histological examinations were performed. RESULTS: All PyMT mice developed multifocal tumors of the mammary epithelium that became palpable at 8 weeks of age (W8). Computed tomography (CT) detected tumors at W14, while a clear tumoral uptake of [(99m)Tc]TEC and [(18)F]FDG was present as early as W6 and W8, respectively. No contrast between mammary tumors and surrounding tissue was observed at any stage with [(18)F]FLT. FCE detected an angiogenic switch at W10. Lung metastases were not clearly evidenced by imaging. Doxorubicin and docetaxel treatments delayed tumor growth, as shown by [(18)F]FDG and [(99m)Tc]TEC, but tumor growth resumed upon treatment discontinuation. Tumor growth fitted an exponential model with time constant rates of 0.315, 0.145, and 0.212 week(-1) in untreated, doxorubicin, and docetaxel groups, respectively. CONCLUSIONS: Molecular imaging of mammary tumors in PyMT is precocious, precise, and predictive. [(18)F]FDG-PET and [(99m)Tc]TEC SPECT monitor tumor response to chemotherapy.


Subject(s)
Antineoplastic Agents/therapeutic use , Carcinogenesis/pathology , Mammary Neoplasms, Animal/drug therapy , Multimodal Imaging/methods , Animals , Antineoplastic Agents/pharmacology , Cell Proliferation , Disease Models, Animal , Disease Progression , Female , Fluorescence , Fluorodeoxyglucose F18 , Ki-67 Antigen/metabolism , Mammary Neoplasms, Animal/blood supply , Mammary Neoplasms, Animal/diagnostic imaging , Mammary Neoplasms, Animal/pathology , Mice , Mice, Transgenic , Technetium/chemistry , Time Factors , Tomography, Emission-Computed, Single-Photon , Tomography, X-Ray Computed
19.
Mol Imaging Biol ; 18(1): 127-34, 2016 Feb.
Article in English | MEDLINE | ID: mdl-26194010

ABSTRACT

PURPOSE: Many radioligands have been explored for imaging the 18-kDa translocator protein (TSPO), a diagnostic and therapeutic target for inflammation and cancer. Here, we investigated the TSPO radioligand [(18)F]DPA-714 for positron emission tomography (PET) imaging of cancer and inflammation. PROCEDURES: [(18)F]DPA-714 PET imaging was performed in 8 mouse and rat models of breast and brain cancer and 4 mouse and rat models of muscular and bowel inflammation. RESULTS: [(18)F]DPA-714 showed different uptake levels in healthy organs and malignant tissues of mice and rats. Although high and displaceable [(18)F]DPA-714 binding is observed ex vivo, TSPO-positive PET imaging of peripheral lesions of cancer and inflammation in mice did not show significant lesion-to-background signal ratios. Slower [(18)F]DPA-714 metabolism and muscle clearance in mice compared to rats may explain the elevated background signal in peripheral organs in this species. CONCLUSION: Although TSPO is an evolutionary conserved protein, inter- and intra-species differences call for further exploration of the pharmacological parameters of TSPO radioligands.


Subject(s)
Carrier Proteins/metabolism , Inflammation/diagnostic imaging , Neoplasms/diagnostic imaging , Positron-Emission Tomography/methods , Pyrazoles/metabolism , Pyrimidines/metabolism , Radiopharmaceuticals/metabolism , Receptors, GABA-A/metabolism , Receptors, GABA/metabolism , Animals , Cell Line, Tumor , Disease Models, Animal , Female , Humans , Inflammation/complications , Inflammation/pathology , Mice, Inbred C57BL , Mice, Nude , Neoplasms/complications , Neoplasms/pathology , Pyrazoles/blood , Pyrazoles/pharmacokinetics , Pyrimidines/blood , Pyrimidines/pharmacokinetics , Radiopharmaceuticals/pharmacokinetics , Rats, Wistar , Tissue Distribution
20.
Radiol Technol ; 87(2): 139-49, 2015.
Article in English | MEDLINE | ID: mdl-26538217

ABSTRACT

PURPOSE: To demonstrate the microbial safety of a secure filling and injection kit designed to allow for multiple injections of contrast media from a single large-volume container in computed tomography (CT) and magnetic resonance (MR) imaging examinations. METHODS: Two male Papio anubis baboons were injected with technetium-99 labeled albumin to mimic a contaminated patient. Researchers injected iodinated contrast medium into the animals using an automated power injector via an antecubital vein, with an injection line fitted with a double check-valve positioned at a 45° angle toward the vein (worst-case condition). Two contact times (before and after injection) were assessed in 3 experiments and repeated 3 times for a total of 9 tested lines. Radioactivity levels were measured in the animals' plasma and in the injection system. RESULTS: Crude values were corrected for background signal and technetium Tc 99m radioactive decay. Results showed an absence of contamination in the line above the check-valve. Negative results were because the mean value of background noise was similar to the crude values measured. DISCUSSION: Injecting contrast media from a large-volume container decreases the cost of CT and MR examinations. However, this practice, which involves the use of the same injection system for multiple patients, is associated with a risk of cross-contamination and requires manufacturers to demonstrate the safety of reusable injection kits. CONCLUSION: Based on appropriate demonstration of worst-case conditions and the use of a radiolabeled molecule mimicking a pathogen particle (ie, as small as viral particles), this study highlights the safety and performance of the tested injection system to perform repeated injections from a multidose container to more than one patient, regardless of the conditions and duration of the examination.


Subject(s)
Contrast Media/administration & dosage , Equipment Contamination/prevention & control , Injections/instrumentation , Patient Safety , Syringes/microbiology , Equipment Design , Equipment Failure Analysis , Humans
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