Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Midkine Promotes Odontoblast-like Differentiation and Tertiary Dentin Formation

View through CrossRef
Autophagy is an intracellular self-degradation process that is essential for tissue development, cell differentiation, and survival. Nevertheless, the role of autophagy in tooth development has not been definitively identified. The goal of this study was to investigate how autophagy is involved in midkine (MK)–mediated odontoblast-like differentiation, mineralization, and tertiary dentin formation in a mouse tooth pulp exposure model. In vitro studies show that MK and LC3 have similar expression patterns during odontoblast-like cell differentiation. Odontoblast-like cell differentiation is promoted through MK-mediated autophagy, which leads to increased mineralized nodule formation. Subcutaneous transplantation of hydroxyapatite/tricalcium phosphate with rMK-treated human dental pulp cells led to dentin pulp–like tissue formation through MK-mediated autophagy. Furthermore, MK-mediated autophagy induces differentiation of dental pulp cells into odontoblast-like cells that form DSP-positive tertiary dentin in vivo. Our findings may provide 1) novel insight into the role of MK in regulating odontoblast-like differentiation and dentin formation in particular via autophagy and 2) potential application of MK in vital pulp therapy.
Title: Midkine Promotes Odontoblast-like Differentiation and Tertiary Dentin Formation
Description:
Autophagy is an intracellular self-degradation process that is essential for tissue development, cell differentiation, and survival.
Nevertheless, the role of autophagy in tooth development has not been definitively identified.
The goal of this study was to investigate how autophagy is involved in midkine (MK)–mediated odontoblast-like differentiation, mineralization, and tertiary dentin formation in a mouse tooth pulp exposure model.
In vitro studies show that MK and LC3 have similar expression patterns during odontoblast-like cell differentiation.
Odontoblast-like cell differentiation is promoted through MK-mediated autophagy, which leads to increased mineralized nodule formation.
Subcutaneous transplantation of hydroxyapatite/tricalcium phosphate with rMK-treated human dental pulp cells led to dentin pulp–like tissue formation through MK-mediated autophagy.
Furthermore, MK-mediated autophagy induces differentiation of dental pulp cells into odontoblast-like cells that form DSP-positive tertiary dentin in vivo.
Our findings may provide 1) novel insight into the role of MK in regulating odontoblast-like differentiation and dentin formation in particular via autophagy and 2) potential application of MK in vital pulp therapy.

Related Results

Overexpression and potential roles of midkine via regulation of vascular endothelial growth factor A in psoriasis
Overexpression and potential roles of midkine via regulation of vascular endothelial growth factor A in psoriasis
AbstractMidkine plays a critical role in angiogenesis by regulating the vascular endothelial growth factor (VEGF) signalling pathway, which is known to be associated with psoriasis...
Abstract 1540: Midkine-raised oral cancer growth, migration and invasion is required for RBPJk modulation
Abstract 1540: Midkine-raised oral cancer growth, migration and invasion is required for RBPJk modulation
Abstract Oral squamous cell carcinoma (OSCC) represents 95% of all forms of head and neck cancer, and its incidence has increased by 50% during the past decade. Desp...
LINKAGES OF Ca V1.2, GLUTAMATE, AND ODONTOBLAST IN THE MECHANISM OF TOOTH PAIN
LINKAGES OF Ca V1.2, GLUTAMATE, AND ODONTOBLAST IN THE MECHANISM OF TOOTH PAIN
Background: Odontoblast is often associated with its role as sensory cell in tooth pain. Odontoblasts have ion channels that contribute to the sensitivity and release of neurotrans...
March2 suppresses odontoblast differentiation by polyubiquitinating Ptprd
March2 suppresses odontoblast differentiation by polyubiquitinating Ptprd
Abstract Dentin, the main component of dental hard tissues, is produced by differentiated odontoblasts. How odontoblast differentiation is regulated remains understudied. H...
Evaluation of Four Different Adhesive Systems’ Bonding Strength Between Superficial and Deep Dentin
Evaluation of Four Different Adhesive Systems’ Bonding Strength Between Superficial and Deep Dentin
The success of adhesive restorations largely depends on the optimal bond strength between the tooth structure and the restorative material. The aim of this study was to evaluate th...
ETHIOPATHOGENETIC PARALLELS OF MORPHOLOGICAL CHANGES IN CHRONIC DENTAL CARIES AND ITS COMPLICATIONS
ETHIOPATHOGENETIC PARALLELS OF MORPHOLOGICAL CHANGES IN CHRONIC DENTAL CARIES AND ITS COMPLICATIONS
Tooth decay is a global health problem and a major cause of tooth loss in the adult population. Currently, the most recognized theory of dental caries development is the chemical-p...
Utilization of M06-G3 Immortalized Odontoblast Cells in Studies Regarding Dentinogenesis
Utilization of M06-G3 Immortalized Odontoblast Cells in Studies Regarding Dentinogenesis
Tooth formation is the result of reciprocal instructive interactions between oral epithelium and cranial neural-crest-derived ectomesenchymal tissues. These interactions lead to th...
Dentin degradomics in dentin erosion
Dentin degradomics in dentin erosion
Background Dentin degradomics are the enzymes found in dentin endogenously and are aimed at attacking organic compounds of the relevant tissue. During dentin demineralization, thes...

Back to Top