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Mitigating lipopolysaccharide-induced impairment in human dental pulp stem cells with tideglusib-doped nanoparticles: Enhancing osteogenic differentiation and mineralization.
Osorio, Raquel; Rodríguez-Lozano, Francisco J; Toledano, Manuel; Toledano-Osorio, Manuel; García-Bernal, David; Murcia, Laura; López-García, Sergio.
Afiliación
  • Osorio R; Faculty of Dentistry, University of Granada Colegio Máximo de Cartuja s/n, Granada 18071, Spain.
  • Rodríguez-Lozano FJ; Department of Dermatology, Stomatology, Radiology and Physical Medicine, Morales Meseguer Hospital, Biomedical Research Institute (IMIB), Regional Campus of International Excellence "Campus Mare Nostrum", Faculty of Medicine, University of Murcia, Murcia 30008, Spain.
  • Toledano M; Faculty of Dentistry, University of Granada Colegio Máximo de Cartuja s/n, Granada 18071, Spain. Electronic address: toledano@ugr.es.
  • Toledano-Osorio M; Postgraduate Program of Specialization in Periodontology, Faculty of Dentistry, University Complutense of Madrid, Madrid, Spain.
  • García-Bernal D; Department of Biochemistry, Molecular Biology B and Immunology, Faculty of Medicine, University of Murcia, Biomedical Research Institute (IMIB), Murcia 30120, Spain.
  • Murcia L; Department of Health Sciences, Catholic University San Antonio of Murcia, Murcia 30107, Spain.
  • López-García S; Department of Dermatology, Stomatology, Radiology and Physical Medicine, Morales Meseguer Hospital, Biomedical Research Institute (IMIB), Regional Campus of International Excellence "Campus Mare Nostrum", Faculty of Medicine, University of Murcia, Murcia 30008, Spain.
Dent Mater ; 40(10): 1591-1601, 2024 Oct.
Article en En | MEDLINE | ID: mdl-39068091
ABSTRACT

OBJECTIVE:

Drug-loaded non-resorbable polymeric nanoparticles (NPs) are proposed as an adjunctive treatment for pulp regenerative strategies. The present in vitro investigation aimed to evaluate the effectiveness of tideglusib-doped nanoparticles (TDg-NPs) in mitigating the adverse effects of bacterial lipopolysaccharide endotoxin (LPS) on the viability, morphology, migration, differentiation and mineralization potential of human dental pulp stem cells (hDPSCs).

METHODS:

Cell viability, proliferation, and differentiation were assessed using a MTT assay, cell migration evaluation, cell cytoskeleton staining analysis, Alizarin Red S staining and expression of the odontogenic related genes by a real-time quantitative polymerase chain reaction (RT-qPCR) were also performed. Cells were tested both with and without stimulation with LPS at various time points. One-way ANOVA and Tukey's test were employed for statistical analysis (p < 0.05).

RESULTS:

Adequate cell viability was encountered in all groups and at every tested time point (24, 48, 72 and 168 h), without differences among the groups (p > 0.05). The analysis of cell cytoskeleton showed nuclear alteration in cultures with undoped NPs after LPS stimulation. These cells exhibited an in blue diffuse and multifocal appearance. Some nuclei looked fragmented and condensed. hDPSCs after LPS stimulation but in the presence of TDg-NPs exhibited less nuclei changes. LPS induced down-regulation of Alkaline phosphatase, Osteonectin and Collagen1 gene markers, after 21d. LPS half-reduced the cells production of calcium deposits in all groups (p < 0.05), except in the group with TDg-NPs (decrease about 10 %).

SIGNIFICANCE:

LPS induced lower mineral deposition and cytoskeletal disorganization in hDPSCs. These effects were counteracted by TDg-NPs, enhancing osteogenic differentiation and mineralization.
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Texto completo: 1 Base de datos: MEDLINE Asunto principal: Osteogénesis / Células Madre / Diferenciación Celular / Supervivencia Celular / Lipopolisacáridos / Pulpa Dental / Proliferación Celular / Nanopartículas Idioma: En Revista: Dent Mater Asunto de la revista: ODONTOLOGIA Año: 2024 Tipo del documento: Article

Texto completo: 1 Base de datos: MEDLINE Asunto principal: Osteogénesis / Células Madre / Diferenciación Celular / Supervivencia Celular / Lipopolisacáridos / Pulpa Dental / Proliferación Celular / Nanopartículas Idioma: En Revista: Dent Mater Asunto de la revista: ODONTOLOGIA Año: 2024 Tipo del documento: Article