Meningeal lymphatic vessel dysfunction exacerbates brain injury in CVST mice via endoplasmic reticulum and oxidative

Jianbin Ying1,2, Jun Li1, Xianqun Wu1

  • 1Department of Neurosurgery, Fuzong Clinical Medical College of Fujian Medical University (900TH Hospital), Fuzhou, China.

Frontiers in Immunology
|February 16, 2026
PubMed
Abstract

Insights

Meningeal lymphatic vessel dysfunction worsens brain injury in cerebral venous sinus thrombosis by increasing neuroinflammation through ER and oxidative stress pathways. Targeting these vessels may offer new treatments for CVST.

Area of Science:

  • Neuroscience
  • Immunology
  • Vascular Biology

Background:

  • Meningeal lymphatic vessels (mLVs) are crucial for neurological homeostasis and disease.
  • The role of mLVs in cerebral venous sinus thrombosis (CVST) brain injury is currently unknown.

Purpose of the Study:

  • To investigate if mLVs dysfunction exacerbates CVST-induced brain injury.
  • To explore the involvement of endoplasmic reticulum (ER) and oxidative stress (OS) pathways in this process.

Main Methods:

  • A mouse model of CVST was established, with some groups undergoing cervical lymph node ligation to induce mLV dysfunction.
  • Neurobehavioral, histopathological, immunofluorescence, Western blot, qPCR, and ELISA analyses were performed.
  • Bioinformatics analyses were used to assess pathway alterations.

Main Results:

  • mLV dysfunction in CVST mice led to worsened neurological deficits, increased brain injury, neuronal loss, and apoptosis.
  • Lymphatic ligation significantly upregulated ER stress markers (GRP78, CHOP, ATF4, p-eIF2α), microglial activation/apoptosis markers (NLRP3, IL-1β), and apoptosis proteins (PUMA, Caspase-12).
  • 4-phenylbutyric acid (4-PBA) administration reversed these changes, alleviating brain injury and neuroinflammation.

Conclusions:

  • mLV dysfunction exacerbates CVST-related brain injury by promoting neuroinflammation via ER and oxidative stress pathways.
  • Therapeutic strategies targeting mLVs could be beneficial for managing CVST-induced neurological injury.

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