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Article

Heat Shock Protein Overexpression-Mediated Periodontal Ligament Regeneration: A Fundamental Approach to Generate a Potential Biomaterial

1
Department of Orthodontics, Matsumoto Dental University School of Dentistry and Hospital, 1780 Hirooka-Gobara, Shiojiri 399-0781, Japan
2
Department of Oral Pathology and Medicine, Graduate School of Medicine, Dentistry and Pharmaceutical Sciences, Okayama University, 2-5-1 Shikata-cho, Okayama 700-8525, Japan
3
Department of Oral Pathology, School of Dentistry, Aichi Gakuin University, 1-100 Kusumoto-cho, Chikusa-ku, Nagoya 464-8650, Japan
*
Author to whom correspondence should be addressed.
Materials 2022, 15(3), 809; https://doi.org/10.3390/ma15030809
Submission received: 16 November 2021 / Revised: 15 January 2022 / Accepted: 18 January 2022 / Published: 21 January 2022
(This article belongs to the Special Issue Materials for Hard Tissue Repair and Regeneration)

Abstract

The periodontal ligament (PDL) is a cell-rich fibrous connective tissue supporting the tooth roots. The tissue helps to maintain homeostasis and exhibits regenerative and repairing ability, which is mediated by the heat shock protein (HSP). Here, we experimentally created PDL tissue with notable ability to regenerate hard tissue and evaluated it as a potential biomaterial. We immunohistochemically examined the mechanical load-induced HSP overexpression in mouse PDL. Following mechanical load application and release, HSP70 localization in the PDL was altered immediately, suggesting that the HSP70 function may differ with the timing of its expression in PDL. HSP70 expressed in the cytoplasm and nucleus of fibroblasts in PDL on the tension side not only participated in periodontium repair, but also functioned as a molecular chaperone during protein expression involved in osteogenesis to restructure injured tissue. This study highlights the potential of artificially created highly functional PDL tissues as biomaterials.
Keywords: biomaterials; fibroblasts; heat shock protein (HSP); homeostasis; mechanical load; periodontal ligament (PDL) tissue; regeneration; remodeling biomaterials; fibroblasts; heat shock protein (HSP); homeostasis; mechanical load; periodontal ligament (PDL) tissue; regeneration; remodeling

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MDPI and ACS Style

Muraoka, R.; Nakano, K.; Kawakami, T. Heat Shock Protein Overexpression-Mediated Periodontal Ligament Regeneration: A Fundamental Approach to Generate a Potential Biomaterial. Materials 2022, 15, 809. https://doi.org/10.3390/ma15030809

AMA Style

Muraoka R, Nakano K, Kawakami T. Heat Shock Protein Overexpression-Mediated Periodontal Ligament Regeneration: A Fundamental Approach to Generate a Potential Biomaterial. Materials. 2022; 15(3):809. https://doi.org/10.3390/ma15030809

Chicago/Turabian Style

Muraoka, Rina, Keisuke Nakano, and Toshiyuki Kawakami. 2022. "Heat Shock Protein Overexpression-Mediated Periodontal Ligament Regeneration: A Fundamental Approach to Generate a Potential Biomaterial" Materials 15, no. 3: 809. https://doi.org/10.3390/ma15030809

APA Style

Muraoka, R., Nakano, K., & Kawakami, T. (2022). Heat Shock Protein Overexpression-Mediated Periodontal Ligament Regeneration: A Fundamental Approach to Generate a Potential Biomaterial. Materials, 15(3), 809. https://doi.org/10.3390/ma15030809

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