Myeloid HIF1α is involved in the extent of orthodontically induced tooth movement

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Abstract

During orthodontic tooth movement, transcription factor hypoxia-inducible factor 1α (HIF1α) is stabilised in the periodontal ligament. While HIF1α in periodontal ligament fibroblasts can be stabilised by mechanical compression, in macrophages pressure application alone is not sufficient to stabilise HIF1α. The present study was conducted to investigate the role of myeloid HIF1α during orthodontic tooth movement. Orthodontic tooth movement was performed in wildtype and Hif1α∆myel mice lacking HIF1α expression in myeloid cells. Subsequently, µCT images were obtained to determine periodontal bone loss, extent of orthodontic tooth movement and bone density. RNA was isolated from the periodontal ligament of the control side and the orthodontically treated side, and the expression of genes involved in bone remodelling was investigated. The extent of tooth movement was increased in Hif1α∆myel mice. This may be due to the lower bone density of the Hif1α∆myel mice. Deletion of myeloid Hif1α was associated with increased expression of Ctsk and Acp5, while both Rankl and its decoy receptor Opg were increased. HIF1α from myeloid cells thus appears to play a regulatory role in orthodontic tooth movement.

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Kirschneck, C., Straßmair, N., Cieplik, F., Paddenberg, E., Jantsch, J., Proff, P., & Schröder, A. (2021). Myeloid HIF1α is involved in the extent of orthodontically induced tooth movement. Biomedicines, 9(7). https://doi.org/10.3390/biomedicines9070796

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