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Repeated moderate hypothermia leads to sustained glymphatic dysfunction and loss of vascular AQP4 polarization

Liu, Chenchen LU ; Liu, Na LU ; Shanbhag, Nagesh C. LU ; Kritsilis, Marios LU orcid ; Bèchet, Nicholas Burdon LU ; Jukkola, Jari LU ; Eltanahy, Ahmed M. ; Battistella, Roberta LU and Lundgaard, Iben LU (2026) In Fluids and Barriers of the CNS 23(1).
Abstract

Cerebrospinal fluid (CSF) enters the brain along perivascular spaces in a manner that depends on aquaporin-4 (AQP4) polarization, facilitating brain clearance and is called the glymphatic system. While physiological factors such as cardiovascular activity and respiration are known to influence glymphatic function, the effects of hypothermia remain poorly understood. In this study, we used quantitative optical and light-sheet microscopy to track fluorescent CSF tracers in mice under ketamine–xylazine (KX) anesthesia at normothermia (37 °C), mild hypothermia (33 °C), and moderate hypothermia (30 °C). Acute mild hypothermia did not affect CSF influx, indicating tolerance to modest temperature fluctuations in KX anesthetized mice, whereas... (More)

Cerebrospinal fluid (CSF) enters the brain along perivascular spaces in a manner that depends on aquaporin-4 (AQP4) polarization, facilitating brain clearance and is called the glymphatic system. While physiological factors such as cardiovascular activity and respiration are known to influence glymphatic function, the effects of hypothermia remain poorly understood. In this study, we used quantitative optical and light-sheet microscopy to track fluorescent CSF tracers in mice under ketamine–xylazine (KX) anesthesia at normothermia (37 °C), mild hypothermia (33 °C), and moderate hypothermia (30 °C). Acute mild hypothermia did not affect CSF influx, indicating tolerance to modest temperature fluctuations in KX anesthetized mice, whereas acute moderate hypothermia markedly impaired glymphatic transport by reducing tracer penetration and CSF outflow. Notably, repeated exposure to moderate hypothermia over four consecutive days induced a sustained suppression of glymphatic influx, which persisted even when assessed under normothermic conditions. This persistent dysfunction strongly correlated with the loss of perivascular AQP4 polarization. These findings demonstrate that repeated hypothermia exerts cumulative effects on glymphatic function, which may compromise brain waste clearance and contribute to cognitive impairment in vulnerable populations with impaired thermoregulatory capacity.

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author
; ; ; ; ; ; ; and
organization
publishing date
type
Contribution to journal
publication status
published
subject
keywords
Aquaporin-4, Glymphatic system, Hypothermia
in
Fluids and Barriers of the CNS
volume
23
issue
1
article number
48
publisher
BioMed Central (BMC)
external identifiers
  • scopus:105034685523
  • pmid:41699640
ISSN
2045-8118
DOI
10.1186/s12987-026-00770-0
language
English
LU publication?
yes
id
18c61d23-aaad-4ae1-bb91-b93fb2c469a4
date added to LUP
2026-07-06 14:25:39
date last changed
2026-08-31 19:15:51
@article{18c61d23-aaad-4ae1-bb91-b93fb2c469a4,
  abstract     = {{<p>Cerebrospinal fluid (CSF) enters the brain along perivascular spaces in a manner that depends on aquaporin-4 (AQP4) polarization, facilitating brain clearance and is called the glymphatic system. While physiological factors such as cardiovascular activity and respiration are known to influence glymphatic function, the effects of hypothermia remain poorly understood. In this study, we used quantitative optical and light-sheet microscopy to track fluorescent CSF tracers in mice under ketamine–xylazine (KX) anesthesia at normothermia (37 °C), mild hypothermia (33 °C), and moderate hypothermia (30 °C). Acute mild hypothermia did not affect CSF influx, indicating tolerance to modest temperature fluctuations in KX anesthetized mice, whereas acute moderate hypothermia markedly impaired glymphatic transport by reducing tracer penetration and CSF outflow. Notably, repeated exposure to moderate hypothermia over four consecutive days induced a sustained suppression of glymphatic influx, which persisted even when assessed under normothermic conditions. This persistent dysfunction strongly correlated with the loss of perivascular AQP4 polarization. These findings demonstrate that repeated hypothermia exerts cumulative effects on glymphatic function, which may compromise brain waste clearance and contribute to cognitive impairment in vulnerable populations with impaired thermoregulatory capacity.</p>}},
  author       = {{Liu, Chenchen and Liu, Na and Shanbhag, Nagesh C. and Kritsilis, Marios and Bèchet, Nicholas Burdon and Jukkola, Jari and Eltanahy, Ahmed M. and Battistella, Roberta and Lundgaard, Iben}},
  issn         = {{2045-8118}},
  keywords     = {{Aquaporin-4; Glymphatic system; Hypothermia}},
  language     = {{eng}},
  number       = {{1}},
  publisher    = {{BioMed Central (BMC)}},
  series       = {{Fluids and Barriers of the CNS}},
  title        = {{Repeated moderate hypothermia leads to sustained glymphatic dysfunction and loss of vascular AQP4 polarization}},
  url          = {{http://dx.doi.org/10.1186/s12987-026-00770-0}},
  doi          = {{10.1186/s12987-026-00770-0}},
  volume       = {{23}},
  year         = {{2026}},
}