Mitochondrial complex I as a diagnostic and therapeutic target in a mouse model of tauopathy
Wong, J. H.; Vincent, A.; Khanapur, S.; Rong, T. J.; Ramasamy, B.; Hartimath, S.; Cheng, P.; Tsukada, H.; Robins, E. G.; Goggi, J. L.; Barron, A. M.
Show abstract
Dysfunction of the energy producing organelle of the cell, mitochondria, plays a pivotal role in Alzheimers disease (AD). We have recently used a novel positron emission tomographic (PET) imaging tracer targeting mitochondrial complex I (MC-I) to visualize mitochondrial abnormalities in the brains of living tau transgenic (TauTg) mice. MC-I mediates the first and limiting step in oxidative phosphorylation, the primary source of neuronal energy production. Here we used MC-I-PET to test if inhibition of mutant tau expression through transgene suppression with doxycycline could reverse mitochondrial defects in a mouse model of tauopathy and evaluate the efficacy of a MC-I-targeted candidate therapeutic, Mdivi-1. We found that late-stage suppression of mutant tau did not rescue mitochondrial deficits measured in vivo by MC-I-PET, despite reduced burden of tauopathy and neuroinflammation. These findings demonstrate that mitochondrial dysfunction may continue even if tauopathy is halted, particularly if initiated at late-stage disease. Further, we demonstrate the potential application of MC-I-PET for monitoring therapeutic efficacy, surprisingly finding detrimental effects of the mitochondrial-targeted candidate therapeutic, Mdivi-1, in TauTg mice. These findings directly contrast with the beneficial effects of Mdivi-1 observed in other models of neurodegeneration. Together, our findings highlight the need for clinical endpoints measuring mitochondrial damage in addition to markers of tauopathy in the assessment of disease prognosis and efficacy of candidate therapeutics and demonstrates the potential application of MC-I-PET to meet this need.
Matching journals
The top 9 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- C5aR1 antagonism alters microglial polarization and mitigates disease progression in a mouse model of Alzheimers disease 96%
- Aβ oligomers trigger necroptosis-mediated neurodegeneration via microglia activation in Alzheimer's disease. 95%
- α-Synuclein pathology in Parkinson disease activates homeostatic NRF2 anti-oxidant response 95%
Similar papers in this journal
- Tau pathology in the dorsal raphe may be a prodromal indicator of Alzheimer's disease 95%
- Individual regional associations between Aβ-, tau- and neurodegeneration (ATN) with microglial activation in patients with primary and secondary tauopathies 95%
- Tau depletion in human neurons mitigates A beta-driven toxicity 95%
Similar papers in this journal
- Diabetic phenotype in mouse and humans with β-amyloid pathology reduces the number of microglia around β-amyloid plaques 95%
- Amyloid plaque deposition accelerates tau propagation via activation of microglia in a humanized APP mouse model 95%
- Probe-dependent Proximity Profiling (ProPPr) Uncovers Similarities and Differences in Phospho-Tau-Associated Proteomes Between Tauopathies 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.