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Assessing Retinal Microglial Phagocytic Function In Vivo Using a Flow Cytometry-based Assay
Published on: October 18, 2016
Early glymphatic failure in AppNL-F knock-in mice is linked to parenchymal border macrophages loss
Na Liu1,2, Yiyi Yang1, Marios Kritsilis1,2
1Department of Experimental Medical Science, Lund University, Lund 22184, Sweden.
Abstract:
Amyloid-β (Aβ) accumulation is a hallmark of Alzheimer's disease. Cerebral Aβ deposition is attenuated by a functional glymphatic system, in which perivascular entry of CSF and its exchange with interstitial fluid mediate solute clearance. Parenchymal border macrophages (PBMs), positioned along glymphatic pathways, are emerging as important players for glymphatic clearance. However, how glymphatic function and PBMs are affected in App knock-in models of Alzheimer's disease is unknown. In this study, we used two App knock-in mouse models that develop progressive Aβ pathology, AppNL-F and AppNL-G-F. AppNL-F mice showed reductions in glymphatic influx and clearance at 6 months, preceding substantial Aβ plaque deposition. The decrease in glymphatic function in AppNL-F mice was correlated with a loss of PBMs and altered marker expression. Acute administration of Aβ into the CSF decreased the number of PBMs and impaired glymphatic transport in wild-type mice, thus recapitulating the pre-plaque stage. In contrast, the number of PBMs was not reduced in AppNL-G-F mice, possibly owing to an enhanced Aβ phagocytic capacity in PBMs. Four weeks of systemic anti-Aβ antibody treatment efficiently reduced Aβ plaque load and rescued PBMs in some brain regions; however, the treatment did not restore glymphatic function in the AppNL-F model. These findings suggest that glymphatic dysfunction in App knock-in models of Alzheimer's disease is not driven by parenchymal Aβ plaque load but is closely linked to pre-plaque Aβ-induced loss of PBMs. Preservation of PBM abundance and their normal marker expression might be important for maintaining glymphatic function and mitigating early progression of Alzheimer's disease.
Insights
Alzheimer
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Alzheimer's disease is characterized by amyloid-beta (Aβ) accumulation.
- The glymphatic system clears Aβ via cerebrospinal fluid (CSF) exchange.
- Parenchymal border macrophages (PBMs) are crucial for glymphatic clearance.
Purpose of the Study:
- Investigate glymphatic function and PBMs in App knock-in Alzheimer's disease models.
- Determine the role of pre-plaque Aβ in glymphatic dysfunction.
- Assess the impact of anti-Aβ antibody treatment on glymphatic function and PBMs.
Main Methods:
- Utilized AppNL-F and AppNL-G-F mouse models of Alzheimer's disease.
- Assessed glymphatic influx and clearance.
- Quantified PBM numbers and marker expression.
- Administered acute Aβ into CSF of wild-type mice.
- Evaluated systemic anti-Aβ antibody treatment efficacy.
Main Results:
- AppNL-F mice exhibited reduced glymphatic function and PBM loss before significant Aβ plaque deposition.
- Acute Aβ administration impaired glymphatic transport and reduced PBMs in wild-type mice.
- AppNL-G-F mice showed preserved PBM numbers, potentially due to enhanced phagocytosis.
- Anti-Aβ antibody treatment reduced plaques and rescued some PBMs but did not restore glymphatic function.
Conclusions:
- Glymphatic dysfunction in Alzheimer's models is linked to pre-plaque Aβ-induced PBM loss, not plaque load.
- Maintaining PBM abundance and function is critical for glymphatic health.
- Targeting PBMs may offer a therapeutic strategy for early Alzheimer's disease intervention.

