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Citations to this article

Piezo1 agonist restores meningeal lymphatic vessels, drainage, and brain-CSF perfusion in craniosynostosis and aged mice
Matt J. Matrongolo, … , Young-Kwon Hong, Max A. Tischfield
Matt J. Matrongolo, … , Young-Kwon Hong, Max A. Tischfield
Published November 2, 2023
Citation Information: J Clin Invest. 2024;134(4):e171468. https://doi.org/10.1172/JCI171468.
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Research Article Neuroscience Vascular biology Article has an altmetric score of 70

Piezo1 agonist restores meningeal lymphatic vessels, drainage, and brain-CSF perfusion in craniosynostosis and aged mice

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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.

Authors

Matt J. Matrongolo, Phillip S. Ang, Junbing Wu, Aditya Jain, Joshua K. Thackray, Akash Reddy, Chi Chang Sung, Gaëtan Barbet, Young-Kwon Hong, Max A. Tischfield

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Total citations by year

Year: 2025 2024 Total
Citations: 7 8 15
Citation information
This citation data is accumulated from CrossRef, which receives citation information from participating publishers, including this journal. Not all publishers participate in CrossRef, so this information is not comprehensive. Additionally, data may not reflect the most current citations to this article, and the data may differ from citation information available from other sources (for example, Google Scholar, Web of Science, and Scopus).

Citations to this article (15)

Title and authors Publication Year
Type-I nNOS neurons orchestrate cortical neural activity and vasomotion
Turner KL, Brockway DF, Hossain MS, Griffith KR, Greenawalt DI, Zhang Q, Gheres KW, Crowley NA, Drew PJ
bioRxiv 2025
Covert cerebrospinal fluid dynamics dysfunction: evolution from conventional to innovative therapies
Xu Y, Yin H, Li L, Wang X, Hou Q
Frontiers in Neurology 2025
Meningeal lymphatic drainage: novel insights into central nervous system disease.
Zhang Q, Niu Y, Li Y, Xia C, Chen Z, Chen Y, Feng H
Signal transduction and targeted therapy 2025
The glycosaminoglycan chains of perlecan regulate the perivascular fluid transport.
Singh A, Kaakinen M, Elamaa H, Kiviniemi V, Eklund L
Fluids and barriers of the CNS 2025
Biological fluid flows: signaling mediums for circadian timing
Duyvesteyn E, Vizcarra VS, Waight E, Balbuena E, Hablitz LM
Journal of biological rhythms 2025
Meningeal lymphatics-microglia axis regulates synaptic physiology
Kim K, Abramishvili D, Du S, Papadopoulos Z, Cao J, Herz J, Smirnov I, Thomas JL, Colonna M, Kipnis J
Cell 2025
Harnessing the circadian nature of the choroid plexus and cerebrospinal fluid
Fame RM
Npj Biological Timing and Sleep 2025
Yoda1 opens the lymphatic path for craniosynostosis therapy
Kari Alitalo
Journal of Clinical Investigation 2024
Ultrasonic cerebrospinal fluid clearance improves outcomes in hemorrhagic brain injury models
Azadian MM, Macedo N, Yu BJ, Fame RM, Airan RD
2024
Therapeutic approaches to CNS diseases via the meningeal lymphatic and glymphatic system: prospects and challenges
Zhang R, Li J, Li X, Zhang S
Frontiers in Cell and Developmental Biology 2024
Hypertension research 2024 update and perspectives: basic research.
Kitada K
Hypertension research : official journal of the Japanese Society of Hypertension 2024
Endothelial Piezo1 channel mediates mechano-feedback control of brain blood flow
Lim XR, Abd-Alhaseeb MM, Ippolito M, Koide M, Senatore AJ, Plante C, Hariharan A, Weir N, Longden TA, Laprade KA, Stafford JM, Ziemens D, Schwaninger M, Wenzel J, Postnov DD, Harraz OF
Nature Communications 2024
Glymphatic system dysfunction and risk of clinical milestones in patients with Parkinson disease.
Zhou C, Jiang X, Guan X, Guo T, Wu J, Wu H, Wu C, Chen J, Wen J, Tan S, Duanmu X, Qin J, Yuan W, Zheng Q, Huang P, Zhang B, Xu X, Zhang M
European journal of neurology 2024
Meningeal Lymphatics in Central Nervous System Diseases
Salvador AF, Abduljawad N, Kipnis J
Annual review of neuroscience 2024
Deformability of Heterogeneous Red Blood Cells in Aging and Related Pathologies.
Prudinnik DS, Kussanova A, Vorobjev IA, Tikhonov A, Ataullakhanov FI, Barteneva NS
Aging and disease 2024

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