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Evaluation of Small-Animal PET Outcome Measures to Detect Disease Modification Induced by BACE Inhibition in a Transgenic Mouse Model of Alzheimer Disease.

In this study, we investigated the effects of chronic administration of an inhibitor of the β-site amyloid precursor protein-cleaving enzyme 1 (BACE1) on Alzheimer-related pathology by multitracer PET imaging in transgenic APPPS1-21 (TG) mice. Methods: Wild-type (WT) and TG mice received vehicle or BACE inhibitor (60 mg/kg) starting at 7 wk of age. Outcome measures of brain metabolism, neuroinflammation, and amyloid-β pathology were obtained through small-animal PET imaging with18 F-FDG,18 F-peripheral benzodiazepine receptor (18 F-PBR), and18 F-florbetapir (18 F-AV45), respectively. Baseline scans were acquired at 6-7 wk of age and follow-up scans at 4, 7, and 12 mo.18 F-AV45 uptake was measured at 8 and 13 mo of age. After the final scans, histologic measures of amyloid-β (4G8), microglia (ionized calcium binding adaptor molecule 1), astrocytes (glial fibrillary acidic protein), and neuronal nuclei were performed. Results: TG mice demonstrated significant age-associated increases in18 F-AV45 uptake. An effect of treatment was observed in the cortex ( P = 0.0014), hippocampus ( P = 0.0005), and thalamus ( P < 0.0001). Histology confirmed reduction of amyloid-β pathology in TG-BACE mice. Regardless of treatment, TG mice demonstrated significantly lower18 F-FDG uptake than WT mice in the thalamus ( P = 0.0004) and hippocampus ( P = 0.0332). Neuronal nucleus staining was lower in both TG groups in the thalamus and cortex.18 F-PBR111 detected a significant age-related increase in TG mice ( P < 0.0001) but did not detect the treatment-induced reduction in activated microglia as demonstrated by histology. Conclusion: Although18 F-FDG,18 F-PBR111, and18 F-AV45 all detected pathologic alterations between TG and WT mice, only18 F-AV45 could detect an effect of BACE inhibitor treatment. However, changes in WT binding of18 F-AV45 undermine the specificity of this effect.

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