Neck Cancer Surgery May Disrupt Brain Drainage and Cognition – Neuroscience News
Removing neck lymph nodes can block brain fluid drainage, leading to ventricular enlargement and cognitive decline.

Removing neck lymph nodes can block brain fluid drainage, leading to ventricular enlargement and cognitive decline.. Summary: Removing cervical lymph nodes during neck cancer surgery can obstruct cerebrospinal fluid outflow from the brain, potentially contributing to accelerated brain atrophy and cognitive impairment. In a multicenter study published in Neuron, researchers found that surgical interruption of cervical lymphatic drainage triggers fluid retention, neuroinflammation, oxidative stress, and atypical protein aggregation in neural circuits. Key Facts: Elevated Cognitive Risk: Among patients under age 65 undergoing neck lymphadenectomy without radiation or chemo, 18% developed cognitive impairment within two years, compared to 4–6% in the general population.
Accelerated Ventricular Enlargement: Pre- and post-operative MRI scans revealed significant widening of the temporal horns of the lateral ventricles, an indicator of accelerated brain tissue loss, particularly when lymph nodes were resected bilaterally. Mechanism of Acute Obstruction: Preclinical models demonstrated that acute lymphatic blockage provokes oxidative stress, inflammatory signaling, and abnormal clumping of synapsin proteins, distinct from classical amyloid-beta or tau pathologies. Source: Weill Cornell Medicine Cervical lymphadenectomy, the surgical removal of lymph nodes in the neck, remains a standard, life-saving intervention to halt the regional spread of head and neck malignancies. While clinicians are familiar with peripheral postoperative complications such as neck lymphedema, the intracranial impact of removing these critical drainage basins has received far less attention.
Over the past decade, neuroscientists have mapped the brain’s glymphatic
Over the past decade, neuroscientists have mapped the brain’s glymphatic and meningeal lymphatic systems, revealing that metabolic waste products and cerebrospinal fluid (CSF) drain continuously from the cranial cavity down into the deep cervical lymph nodes. Now, a multicenter investigation led by researchers at Weill Cornell Medicine establishes a direct clinical and mechanistic link between cervical lymph node resection, impaired brain clearance, and downstream cognitive decline. The findings, published September 29 in the journal Neuron, indicate that severing these anatomical drainage conduits causes CSF stasis, neuroinflammation, and structural brain changes. “Your body produces lymphatic fluid to wash away waste from every organ, including the brain,” said senior author Dr.
Laura Santambrogio, professor of radiation oncology, biochemistry, and biophysics, and associate director of precision immunology at the Englander Institute of Precision Medicine at Weill Cornell. “If this system is lacking, negative consequences may eventually build up.” Disproportionate Rates of Postoperative Cognitive Impairment To evaluate cognitive outcomes independent of neurotoxic cancer treatments, the investigative team analyzed clinical records from 1,035 patients treated at Montefiore Einstein who underwent neck lymphadenectomy without adjuvant radiotherapy or chemotherapy. The analysis revealed an unexpected surge in cognitive deficits within two years post-surgery: Patients under 65: Approximately 18% developed clinical cognitive impairment, contrasting sharply with the 4% to 6% expected baseline risk for this age group in the general population. Patients aged 65 and older: 25% exhibited cognitive impairment, compared to 10% to 22% expected among demographic controls.
Key details
To confirm physical brain alterations, researchers evaluated a second cohort of 59 lymphadenectomy patients from the Technical University of Munich who underwent longitudinal neuroimaging. Paired pre- and post-surgical MRI scans demonstrated accelerated enlargement of the ventricular temporal horns, a reliable radiological marker of regional brain atrophy. This tissue shrinkage was especially pronounced in patients who underwent bilateral neck dissection. Oxidative Stress and Atypical Protein Clumping To determine the molecular cascade initiated by impaired fluid outflow, the researchers turned to preclinical models.
The experiments revealed that acute, sudden interruption of cervical lymphatic drainage triggers a rapid biological response. Without a patent lymphatic outlet, fluid accumulation generates cellular pressure and oxidative stress within neural tissue, leading to an upsurge in neuroinflammatory cytokines. Interestingly, these toxic changes did not manifest in animal models experiencing a gradual, chronic decline in lymphatic function, highlighting the unique impact of sudden surgical severance. Furthermore, the team detected marked damage to synapsin, an essential presynaptic phosphoprotein responsible for regulating neurotransmitter release at synapses.
The experiments revealed that acute, sudden interruption of cervical lymphatic
The damaged synapsin molecules clumped into dense intracellular aggregates. Crucially, these formations were biologically distinct from the classic amyloid-beta plaques and hyperphosphorylated tau neurofibrillary tangles characteristic of Alzheimer’s disease, suggesting an alternative pathway to neurodegeneration. Improving Drainage and Surgical Innovations Because the primary clinical cohorts were evaluated retrospectively, the authors are launching prospective longitudinal studies to track head and neck cancer patients’ cognitive function and fluid biomarkers before and after surgery. At the same time, surgical oncologists are exploring preventative reconstructive strategies, including autologous lymph node transplantation or microvascular lymphaticovenous anastomosis.
“Research into transplanting a lymph node from another area of the body may offer a way for lymph fluid that is blocked to enter the venous system and prevent lymphedema,” said Dr. By restoring cranial fluid egress, such interventions could mitigate post-surgical lymphedema while safeguarding long-term brain health and cognitive integrity. Funding: This study was supported by the National Center for Complementary and Integrative Health, a part of the National Institutes of Health, grant 1R01AT011419-01 and The Cure Alzheimer grant CAF222829-01. Editorial Notes: This article was edited by a Neuroscience News editor.
About this genetics and neurodevelopment Research: Media Contact: Corinne Esposito Source: Weill Cornell Medicine Original Research is Open Access: Neuron (Sept 29, 2026). “Cervical lymphadenectomy impairs brain lymphatic clearance and synaptic proteostasis.” Authors: Zohaib N. Clement, Paula Roßmüller, Salli Antila, Lincoln Sutherland, Rafi Kabarriti, Justina Shafik, Igor Smirnov, Angelo D’Alessandro, Monika Dzieciatkowska, Barbara Roda, Valentina Marassi, Wanxia Li Tsai, Massimo Gadina, Allen Tannenbaum, Markku Varjosalo, Salla Keskitalo, András Piffkó, Sunil Koundal, Zachary Gursky, Ralph R. Ow, Silvia Formenti, Christian Sorg, Benedikt Zott, Kari Alitalo, Helene Benveniste, Jonathan Kipnis, and Laura Santambrogio.
DOI: 10.1016/j.neuron.2026.09.005 Abstract Cervical lymphadenectomy impairs brain lymphatic clearance and synaptic proteostasis Meningeal lymphatic vessels drain brain fluid and waste into the cervical lymph nodes, but how removing these nodes during surgery affects brain health is unknown. Retrospective analysis of cancer patients who underwent neck lymphadenectomy without chemo-radiation therapy found that up to 25% developed mild-to-severe cognitive impairment, and neuroimaging showed accelerated temporal horn enlargement after bilateral surgery. To determine mechanistically how cervical lymphadenectomy contributes to cognitive impairment, mouse and rat models were utilized to phenocopy abrupt disruption of lymphatic flow to the cervical and submandibular nodes. Impaired lymphatic drainage induced a cerebrospinal fluid signature of metabolic stress and inflammation.
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