Amyotrophic Lateral Sclerosis Clinical Trial
Official title:
Molecular Imaging Modality by Positron Emission Tomography Using 18F-X : Study of Microglial Activation in Amyotrophic Lateral Sclerosis
PET imaging of activated microglia offers a tool of investigation of a range of brain
diseases where neuroinflammation is a component.
Amyotrophic lateral sclerosis is the most frequent motoneuronal disease in adult.
This study was designed to explore the feasibility of molecular imaging modality by Positron
Emission Tomography using 18F-X as an in vivo marker of activated microglia for the
assessment of neuroinflammation in amyotrophic lateral sclerosis.
PET may help in the diagnosis of the disease and, further, may allow assessment of the
efficacy of antiinflammatory treatment.
Status | Recruiting |
Enrollment | 30 |
Est. completion date | December 2010 |
Est. primary completion date | |
Accepts healthy volunteers | Accepts Healthy Volunteers |
Gender | Both |
Age group | 40 Years to 70 Years |
Eligibility |
Inclusion Criteria: - suffering from probable or definite form of amyotrophic lateral sclerosis according to El Escorial criteria. Spinal or bulbar site of the disease. - Information and signature of the written consent form - French Social Security registration Exclusion Criteria: - family history of ALS - Riluzole treatment before the first PETscan. - Psychiatric disorders - Evolution of the disease older than 18 months - Antiinflammatory or antibiotic treatment in the last month |
Allocation: Non-Randomized, Endpoint Classification: Pharmacokinetics/Dynamics Study, Intervention Model: Single Group Assignment, Masking: Open Label, Primary Purpose: Diagnostic
Country | Name | City | State |
---|---|---|---|
France | Service de Médecine Nucléaire et Ultrasons - Hôpital Bretonneau | Tours | Region Centre |
Lead Sponsor | Collaborator |
---|---|
University Hospital, Tours |
France,
Banati RB, Newcombe J, Gunn RN, Cagnin A, Turkheimer F, Heppner F, Price G, Wegner F, Giovannoni G, Miller DH, Perkin GD, Smith T, Hewson AK, Bydder G, Kreutzberg GW, Jones T, Cuzner ML, Myers R. The peripheral benzodiazepine binding site in the brain in — View Citation
Banati RB. Visualising microglial activation in vivo. Glia. 2002 Nov;40(2):206-17. Review. — View Citation
Kassiou M, Meikle SR, Banati RB. Ligands for peripheral benzodiazepine binding sites in glial cells. Brain Res Brain Res Rev. 2005 Apr;48(2):207-10. Epub 2005 Jan 22. Review. — View Citation
Zhang MR, Kumata K, Maeda J, Yanamoto K, Hatori A, Okada M, Higuchi M, Obayashi S, Suhara T, Suzuki K. 11C-AC-5216: a novel PET ligand for peripheral benzodiazepine receptors in the primate brain. J Nucl Med. 2007 Nov;48(11):1853-61. — View Citation
Zhang MR, Maeda J, Ogawa M, Noguchi J, Ito T, Yoshida Y, Okauchi T, Obayashi S, Suhara T, Suzuki K. Development of a new radioligand, N-(5-fluoro-2-phenoxyphenyl)-N-(2-[18F]fluoroethyl-5-methoxybenzyl)acetamide, for pet imaging of peripheral benzodiazepin — View Citation
Type | Measure | Description | Time frame | Safety issue |
---|---|---|---|---|
Primary | Quantitative in vivo-imaging of 18F-X microglial binding site as a mesure of disease activity followed up by non invasive quantification of patients using imaging modality. | Inclusion period | ||
Secondary | Evidence of the localisation of benzodiazepine binding site related to microglial activation in ALS | inclusion period | ||
Secondary | Evidence of the difference of microglial localisation and activation between bulbar and spinal form of amyotrophic lateral sclerosis | inclusion period |
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