During periodontal regeneration, multiple cell types can invade the wound site, thereby leading to repair. Cell motility requires interactions mediated by integrin receptors for the extracellular matrix (ECM), which might be useful in guiding specific cell populations into the periodontal defect. Our data demonstrate that fibroblasts exhibit differential motility when grown on ECM proteins. Specifically, gingival fibroblasts are twice as motile as periodontal ligament fibroblasts, whereas osteoblasts are essentially non-motile. Collagens promote the greatest motility of gingival fibroblasts in the following order: collagen III>collagen V>collagen I. Differences in motility do not correlate with cell proliferation or integrin expression. Osteoblasts display greater attachment to collagens than does either fibroblast population, but lower motility. Gingival fibroblast motility on collagen I is generally mediated by alpha2 integrins, whereas motility on collagen III involves alpha1 integrins. Other integrins (alpha10 or alpha11) may also contribute to gingival fibroblast motility. Thus, ECM proteins do indeed differentially promote the cell motility of periodontal cells. Because of their greater motility, gingival fibroblasts have more of a potential to invade periodontal wound sites and to contribute to regeneration. This finding may explain the formation of disorganized connective tissue masses rather than the occurrence of the true regeneration of the periodontium.
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http://dx.doi.org/10.1007/s00441-006-0372-4 | DOI Listing |
Matrix Biol
January 2025
Department of Anatomy and Cell Biology, Dentistry, Schulich School of Medicine and Dentistry, Western University, London, Ontario, N6A 3K7, Canada; Dentistry, Schulich School of Medicine and Dentistry, Western University, London, Ontario, N6A 3K7, Canada. Electronic address:
Release of growth factors in the tissue microenvironment is a critical process in the repair and regeneration of periodontal tissues, regulating fibroblast behavior and phenotype. As a result of the complex architecture of the periodontium, distinct fibroblast populations in the periodontal ligament and gingival connective tissue exist in close proximity. Growth factor therapies for periodontal regeneration have gained traction, but quantification of their effects on multiple different fibroblast populations that are required for repair has been poorly investigated.
View Article and Find Full Text PDFEur J Dent
December 2024
Department of Oral Biology, Faculty of Dentistry, Mahidol University, Bangkok, Thailand.
Objective: Particulate matter 2.5 (PM2.5), an important air pollution particle, has been previously studied for its effects on various normal and cancer tissues.
View Article and Find Full Text PDFJ Indian Soc Periodontol
December 2024
Department of Periodontics, College of Dental Sciences, Davanagere, Karnataka, India.
Background: Diode laser is known for its biostimulatory effects on various cell populations such as osteoblasts and fibroblasts. The usage of low-level laser therapy for photobiomodulation depends on its type, emission wavelength, and energy selected. Previously performed studies have determined its effect on cell proliferation and cytotoxicity; however, the results were inconsistent.
View Article and Find Full Text PDFPeriodontol 2000
December 2024
Department of Periodontics, School of Dental Medicine, University of Pennsylvania, Philadelphia, Pennsylvania, USA.
Clin Oral Investig
December 2024
Department of Stomatology, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, No. 1095 Jiefang Avenue, Wuhan, Hubei Province, 430030, China.
Objectives: Caries is a significant public health challenge. Herein, novel tooth-targeting antimicrobial peptides (HABPs@AMPs) were developed by combining the antimicrobial peptide DJK-5 with hydroxyapatite (HA) binding peptides, providing a potential new strategy for caries management.
Materials And Methods: The minimal inhibitory concentration (MIC) and minimal biofilm inhibitory concentration (MBIC) values of HABPs@AMPs were determined via micro-broth dilution and crystal violet staining.
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