Authors
Liu, H., Ding, Z., Wang, Y., Moniz, H., Li, Y., Ouyang, Y., Liu, C., Andersen, J., Hua, J., Xu, J., Duan, W.
Abstract
Huntington&'s disease (HD) is characterized by progressive accumulation of mutant huntingtin (mHTT), neurodegeneration and motor dysfunction. Increasing evidence implicates impaired glymphatic function and loss of perivascular aquaporin 4 (AQP4) polarization in HD, suggesting that defective brain waste clearance may contribute to disease pathogenesis. Whether restoration of AQP4&-mediated glymphatic transport can ameliorate HD pathology remains unknown. We tested whether genetic restoration of AQP4 improves glymphatic function and HD&-associated phenotypes in heterozygous zQ175 knock-in mice. At 2 months of age, premanifest zQ175 mice received a single retro-orbital injection of BBB-penetrant AAV9&-PHP.eB encoding the AQP4 (M1 isoform). Glymphatic transport was assessed by intracisternal injection of fluorescent BSA 647 and quantification of parenchymal influx and drainage to the deep cervical lymph nodes. Perivascular AQP4 localization, mHTT aggregation, gliosis, DARPP32 immunoreactivity, CSF neurofilament light chain (NfL) and total Tau, structural brain volumes by 11.7T MRI, and motor behavior were assessed longitudinally through 12 months of age. AAV9&-PHP.eB&-AQP4 produced widespread brain expression and restored perivascular AQP4 localization in the striatum and cortex of zQ175 mice. AQP4 overexpression significantly increased glymphatic tracer influx into brain parenchyma and BSA-647 drainage to the deep cervical lymph nodes. At 12 months, AQP4 restoration reduced CSF NfL and total Tau concentrations, mHTT aggregate number and mean aggregate size, and striatal Iba1 positive microglia and GFAP-positive astrocytes (P < 0.05). AQP4 overexpression also preserved striatal DARPP32 immunoreactivity and significantly attenuated striatal atrophy measured by MRI. Female zQ175 mice showed improved balance-beam performance and locomotor activity, while effects on motor performance in males did not reach statistical significance. AQP4 overexpression attenuated body-weight loss in both sexes. No detectable structural, behavioral or body-weight abnormalities were observed following sustained AQP4 overexpression in wild-type mice. In summary, restoration of AQP4 enhances glymphatic transport and is associated with reduced proteopathic, neuroinflammatory and neurodegenerative phenotypes in zQ175 HD mice. These findings provide proof-of-concept that impaired glymphatic function is a modifiable component of HD pathology and support AQP4&-mediated restoration of brain waste clearance pathways as a potential disease-modifying therapeutic strategy.
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bioRxiv
The authors list and abstract were imported from bioRxiv on 26 Sep 2026.
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