Intrinsic Tension Drives Palatal Shelf Reorientation post Tongue Retraction

Cleft palate can be caused by failure of elevation of the palatal shelves over the tongue during development. The physical mechanism of elevation is poorly understood. It is thought that elevation is obstructed by the tongue in a condition known as Pierre Robin sequence (PRS), in which the mandible is smaller (micrognathia) and/or further back than normal (retrognathia). Some PRS cases are associated with mutations in the regulatory and coding regions of SOX9 . Here, we first examined the timing of palatal shelf elevation in mouse embryonic explants. While elevation in vivo occurs between embryonic days E13.5 and E14.5, we found that palate elevation occurred in both E12.5 and E13.5 explants immediately upon dissection, indicating release of elastic prestress by removal of the tongue. These findings suggest that palatal shelves are programmed ab initio to grow horizontally (as they do in birds and most reptiles) but are deflected in mammals by the tongue. Next, to examine this process in utero, we generated a new mt Hand2 Cre mouse line to delete Sox9 or to express diphtheria toxin specifically in the mandibular mesenchyme. Sox9 deletion resulted in a hypoplastic, dysmorphic, retrognathic mandible with fully penetrant, complete cleft of the secondary palate. In contrast, most R26R DTA/+ ;mt Hand2 Cre embryos showed a reduced mandible (micrognathia) but also displayed a dramatically smaller tongue (microglossia). With a nonobstructing tongue, these mutants exhibited horizontal palatal shelf growth and formed a normal palate. These results are consistent with a mechanism in which physical obstruction by the tongue is the primary cause of downward development of the palatal shelves, far earlier than previously appreciated, and that normal elevation occurs by the release of elastic prestress. We experimentally demonstrate that in PRS, micrognathia causes cleft palate through tongue malpositioning that prevents release of this palatal shelf prestress.

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Publication Details

Journal
Journal of Dental Research
Published
2026-09-30
DOI
https://doi.org/10.1177/00220345261448467
Primary Topic
Cleft Lip and Palate Research
Type
article
Field-Weighted Citation Impact
0.00

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article

Intrinsic Tension Drives Palatal Shelf Reorientation post Tongue Retraction

Sushan Zhang, Christopher P. Chen, Darnell L. Cuylear, Martyn T. Cobourne et al.
Journal of Dental Research
Cleft Lip and Palate Research
article

Intrinsic Tension Drives Palatal Shelf Reorientation post Tongue Retraction

Sushan Zhang, Christopher P. Chen, Darnell L. Cuylear, Martyn T. Cobourne, Alice F. Goodwin, Catherine Liu, Jack Morgan, Dakota Volzer, Andrew Jheon, Caroline Chen, Jeffrey Bush, Mya Blanco, Jeremy; id_orcid 0000-0002-6102-2620 Green, Max Nye, Isabel Mangoba, N. Nguyen
article en

Abstract

Cleft palate can be caused by failure of elevation of the palatal shelves over the tongue during development. The physical mechanism of elevation is poorly understood. It is thought that elevation is obstructed by the tongue in a condition known as Pierre Robin sequence (PRS), in which the mandible is smaller (micrognathia) and/or further back than normal (retrognathia). Some PRS cases are associated with mutations in the regulatory and coding regions of SOX9 . Here, we first examined the timing of palatal shelf elevation in mouse embryonic explants. While elevation in vivo occurs between embryonic days E13.5 and E14.5, we found that palate elevation occurred in both E12.5 and E13.5 explants immediately upon dissection, indicating release of elastic prestress by removal of the tongue. These findings suggest that palatal shelves are programmed ab initio to grow horizontally (as they do in birds and most reptiles) but are deflected in mammals by the tongue. Next, to examine this process in utero, we generated a new mt Hand2 Cre mouse line to delete Sox9 or to express diphtheria toxin specifically in the mandibular mesenchyme. Sox9 deletion resulted in a hypoplastic, dysmorphic, retrognathic mandible with fully penetrant, complete cleft of the secondary palate. In contrast, most R26R DTA/+ ;mt Hand2 Cre embryos showed a reduced mandible (micrognathia) but also displayed a dramatically smaller tongue (microglossia). With a nonobstructing tongue, these mutants exhibited horizontal palatal shelf growth and formed a normal palate. These results are consistent with a mechanism in which physical obstruction by the tongue is the primary cause of downward development of the palatal shelves, far earlier than previously appreciated, and that normal elevation occurs by the release of elastic prestress. We experimentally demonstrate that in PRS, micrognathia causes cleft palate through tongue malpositioning that prevents release of this palatal shelf prestress.

Journal of Dental Research
University of Pittsburgh (US), University of California, San Francisco (US), King's College London (GB)
Biomedical Research Council, National Institute of Dental and Craniofacial Research
Openalex Percentile: Top 63%
Cleft Lip and Palate Research
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