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Piezo1 agonist restores meningeal lymphatic vessels, drainage, and brain-CSF perfusion in craniosynostosis and aged mice.
Matrongolo, Matt J; Ang, Phillip S; Wu, Junbing; Jain, Aditya; Thackray, Joshua K; Reddy, Akash; Sung, Chi Chang; Barbet, Gaëtan; Hong, Young-Kwon; Tischfield, Max A.
Afiliación
  • Matrongolo MJ; Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey, USA.
  • Ang PS; Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, New Jersey, USA.
  • Wu J; Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey, USA.
  • Jain A; Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, New Jersey, USA.
  • Thackray JK; Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey, USA.
  • Reddy A; Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, New Jersey, USA.
  • Sung CC; Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, New Jersey, USA.
  • Barbet G; Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, New Jersey, USA.
  • Hong YK; Child Health Institute of New Jersey, Robert Wood Johnson Medical School, New Brunswick, New Jersey, USA.
  • Tischfield MA; Department of Genetics and the Human Genetics Institute of New Jersey, Rutgers, The State University of New Jersey, Piscataway, New Jersey, USA.
J Clin Invest ; 134(4)2023 Nov 02.
Article en En | MEDLINE | ID: mdl-37917195
ABSTRACT
Skull development coincides with the onset of cerebrospinal fluid (CSF) circulation, brain-CSF perfusion, and meningeal lymphangiogenesis, processes essential for brain waste clearance. How these processes are affected by craniofacial disorders such as craniosynostosis are poorly understood. We report that raised intracranial pressure and diminished CSF flow in craniosynostosis mouse models associate with pathological changes to meningeal lymphatic vessels that affect their sprouting, expansion, and long-term maintenance. We also show that craniosynostosis affects CSF circulatory pathways and perfusion into the brain. Further, craniosynostosis exacerbates amyloid pathology and plaque buildup in Twist1+/-5xFAD transgenic Alzheimer's disease models. Treating craniosynostosis mice with Yoda1, a small molecule agonist for Piezo1, reduces intracranial pressure and improves CSF flow, in addition to restoring meningeal lymphangiogenesis, drainage to the deep cervical lymph nodes, and brain-CSF perfusion. Leveraging these findings, we show that Yoda1 treatments in aged mice with reduced CSF flow and turnover improve lymphatic networks, drainage, and brain-CSF perfusion. Our results suggest that CSF provides mechanical force to facilitate meningeal lymphatic growth and maintenance. Additionally, applying Yoda1 agonist in conditions with raised intracranial pressure and/or diminished CSF flow, as seen in craniosynostosis or with ageing, is a possible therapeutic option to help restore meningeal lymphatic networks and brain-CSF perfusion.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Craneosinostosis / Vasos Linfáticos / Sistema Glinfático Límite: Animals Idioma: En Revista: J Clin Invest Año: 2023 Tipo del documento: Article País de afiliación: Estados Unidos

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Craneosinostosis / Vasos Linfáticos / Sistema Glinfático Límite: Animals Idioma: En Revista: J Clin Invest Año: 2023 Tipo del documento: Article País de afiliación: Estados Unidos
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