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Pinpointing Brain TREM2 Levels in Two Mouse Models of Alzheimer's Disease
Silvio R Meier1, Dag Sehlin2, Greta Hultqvist3
1Department of Public Health and Caring Science/Molecular Geriatrics, Rudbecklaboratoriet, Uppsala University, Dag Hammarskjölds Väg 20, Uppsala, Sweden. silvio.meier@pubcare.uu.se.
Purpose:
The triggering receptor expressed on myeloid cells 2 (TREM2) is expressed by brain microglia. Microglial activation, as observed in Alzheimer's disease (AD) as well as in transgenic mice expressing human amyloid-beta, appears to increase soluble TREM2 (sTREM2) levels in CSF and brain. In this study, we used two different transgenic mouse models of AD pathology and investigated the potential of TREM2 to serve as an in vivo biomarker for microglial activation in AD.
Procedures:
We designed and generated a bispecific antibody based on the TREM2-specific monoclonal antibody mAb1729, fused to a single-chain variable fragment of the transferrin receptor binding antibody 8D3. The 8D3-moiety enabled transcytosis of the whole bispecific antibody across the blood-brain barrier. The bispecific antibody was radiolabeled with I-125 (ex vivo) or I-124 (PET) and administered to transgenic AD and wild-type (WT) control mice. Radioligand retention in the brain of transgenic animals was compared to WT mice by isolation of brain tissue at 24 h or 72 h, or with in vivo PET at 24 h, 48 h, and 72 h. Intrabrain distribution of radiolabeled mAb1729-scFv8D3CL was further studied by autoradiography, while ELISA was used to determine TREM2 brain concentrations.
Results:
Transgenic animals displayed higher total exposure, calculated as the AUC based on SUV determined at 24h, 48h, and 72h post injection, of PET radioligand [124I]mAb1729-scFv8D3CL than WT mice. However, differences were not evident in single time point PET images or SUVs. Ex vivo autoradiography confirmed higher radioligand concentrations in cortex and thalamus in transgenic mice compared to WT, and TREM2 levels in brain homogenates were considerably higher in transgenic mice compared to WT.
Conclusion:
Antibody-based radioligands, engineered to enter the brain, may serve as PET radioligands to follow changes of TREM2 in vivo, but antibody formats with faster systemic clearance to increase the specific signal in relation to that from blood in combination with antibodies showing higher affinity for TREM2 must be developed to further progress this technique for in vivo use.
Insights
This study explored using a novel bispecific antibody to track TREM2 (triggering receptor expressed on myeloid cells 2) in Alzheimer's disease (AD) mouse models. While higher TREM2 levels were found in AD mice, further antibody development is needed for effective in vivo imaging.
Area of Science:
- Neuroscience
- Immunology
- Radiochemistry
Background:
- Triggering receptor expressed on myeloid cells 2 (TREM2) is crucial in brain microglia function.
- Elevated TREM2 levels are observed in Alzheimer's disease (AD) and correlate with microglial activation.
- TREM2's role as a biomarker for microglial activation in AD requires further investigation.
Purpose of the Study:
- To assess the potential of TREM2 as an in vivo biomarker for microglial activation in AD.
- To develop and evaluate a novel bispecific antibody for brain penetration and TREM2 targeting.
- To investigate the utility of radiolabeled bispecific antibodies for PET imaging of TREM2 in AD mouse models.
Main Methods:
- Generation of a bispecific antibody (mAb1729-scFv8D3) engineered for blood-brain barrier transcytosis.
- Radiolabeling of the bispecific antibody with Iodine-124 for PET imaging and Iodine-125 for ex vivo studies.
- Administration of radiolabeled antibody to transgenic AD and wild-type mice, followed by PET imaging and ex vivo tissue analysis.
Main Results:
- Transgenic AD mice showed higher overall brain exposure (AUC) to the PET radioligand compared to wild-type controls.
- Ex vivo autoradiography confirmed increased radioligand concentrations in the cortex and thalamus of AD mice.
- ELISA confirmed significantly higher TREM2 brain concentrations in transgenic AD mice.
Conclusions:
- Antibody-based radioligands show promise for in vivo TREM2 imaging in AD.
- Further optimization of antibody formats is necessary to improve signal-to-noise ratio for clinical translation.
- Development of antibodies with faster systemic clearance and higher TREM2 affinity is crucial for advancing PET imaging in AD.
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