Skip to content Skip to sidebar

Site logo

  • Home
  • Videos
  • Clinical studies
  • White papers
  • Wellness facts
  • History
  • Contact
  • About us
Date: September 26, 2016December 13, 2016 Author: admin Comments: 0
  • Category Clinical studies

A dural lymphatic vascular system that drains brain interstitial fluid and macromolecules, June

The central nervous system (CNS) is considered an organ devoid of lymphatic vasculature. Yet, part of the cerebrospinal fluid (CSF) drains into the cervical lymph nodes (LNs). The mechanism of CSF entry into the LNs has been unclear. Here we report the surprising finding of a lymphatic vessel network in the dura mater of the mouse brain. We show that dural lymphatic vessels absorb CSF from the adjacent subarachnoid space and brain interstitial fluid (ISF) via the glymphatic system. Dural lymphatic vessels transport fluid into deep cervical LNs (dcLNs) via foramina at the base of the skull. In a transgenic mouse model expressing a VEGF-C/D trap and displaying complete aplasia of the dural lymphatic vessels, macromolecule clearance from the brain was attenuated and transport from the subarachnoid space into dcLNs was abrogated. Surprisingly, brain ISF pressure and water content were unaffected. Overall, these findings indicate that the mechanism of CSF flow into the dcLNs is directly via an adjacent dural lymphatic network, which may be important for the clearance of macromolecules from the brain. Importantly, these results call for a reexamination of the role of the lymphatic system in CNS physiology and disease.

http://jem.rupress.org/content/212/7/991.abstract

  • #Alzheimer's disease
  • #Brain
  • #Brain Lymphatic
  • #Lymphatic system

Post navigation

Previous Post Health benefits of physical activity: the evidence
Next Post Sweat distribution before and after repeated heat exposure

The section contains widgets

Account member

  • Login
    • Sign up
    • Change Password

Benefit topic

Choose a keyword

Acclimation|Addiction|Aging Alcoholism|Alzheimers disease| Appetite
------------------------------------
BDNF|Biomechanical adaptations|Blood-cells|Blood pressure|Body-composition|Brain|Brain lymphatic
------------------------------------
Calories | Cancer | Cardiovascular adjustments | Catecholamines Chronic fatigue syndrome | Chronic Traumatic Encephalopathy (CTE) | Cognition | Core temperature
------------------------------------
Depression | Diabetes | Diet | Drug-use
------------------------------------
Endocrine-system | Endorphins Energy expenditure | Exercise Exercise in heat
------------------------------------
Fatigue | Fibromyalgia | Fitness | Flexibility | Fox O3 gene
------------------------------------
Glucose tolerance | Glycogen
------------------------------------
Head cooling | Health benefits Heart disease | Heat | Heat acclimation | Heat stress | Heat treatment | Hgh | Hormonal response | Hsps | Hyperthermia
------------------------------------
Insulin
------------------------------------
Lactate-threshold | Learning | Longevity | Lymphatic-system
------------------------------------
Meditation|Memory | Metabolism|Muscle adaptation|Muscle-metabolism & circulation|Muscle re-growth/Reduce atrophy
------------------------------------
Neurogenesis|Norepinephrine
------------------------------------
Obesity
------------------------------------
Pain | Prolactin
------------------------------------
Range-of-motion | Relaxation Research
------------------------------------
Sauna | Sleep | Strength-training | Stress | Sweating
------------------------------------
Telomeres | Thermal therapy | Thermogenesis | Thermoregulatory adaptations Thermotolerance
------------------------------------
Weight-loss

The section contains information on copyright and first-level footer navigation

Copyright © 2023

  • Home
  • Videos
  • Clinical studies
  • White papers
  • Wellness facts
  • History
  • Contact
  • About us