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Implant provisional restorations should ideally be nontoxic to the contacting and adjacent tissues, create anatomical and biophysiological stability, and establish a soft tissue seal through interactions between prosthesis, soft tissue, and alveolar bone. However, there is a lack of robust, systematic, and fundamental data to inform clinical decision making. Here we systematically explored the biocompatibility of fibroblasts and osteoblasts in direct contact with, or close proximity to, provisional restoration materials. Human gingival fibroblasts and osteoblasts were cultured on the "contact" effect and around the "proximity" effect with various provisional materials: bis-acrylic, composite, self-curing acrylic, and milled acrylic, with titanium alloy as a bioinert control. The number of fibroblasts and osteoblasts surviving and attaching to and around the materials varied considerably depending on the material, with milled acrylic the most biocompatible and similar to titanium alloy, followed by self-curing acrylic and little to no attachment on or around bis-acrylic and composite materials. Milled and self-curing acrylics similarly favored subsequent cellular proliferation and physiological functions such as collagen production in fibroblasts and alkaline phosphatase activity in osteoblasts. Neither fibroblasts nor osteoblasts showed a functional phenotype when cultured with bis-acrylic or composite. By calculating a biocompatibility index for each material, we established that fibroblasts were more resistant to the cytotoxicity induced by most materials in direct contact, however, the osteoblasts were more resistant when the materials were in close proximity. In conclusion, there was a wide variation in the cytotoxicity of implant provisional restoration materials ranging from lethal and tolerant to near inert, and this cytotoxicity may be received differently between the different cell types and depending on their physical interrelationships.
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http://dx.doi.org/10.3390/biomimetics7040243 | DOI Listing |
JOR Spine
September 2025
Spine Center, Department of Orthopaedics Changzheng Hospital, Naval Medical University (Second Military Medical University) Shanghai People's Republic of China.
Background: Ossification of the posterior longitudinal ligament (OPLL) is a pathological condition characterized by ectopic ossification of spinal ligaments, primarily driven by abnormal osteogenic differentiation of ligament fibroblasts with stem cell-like properties. The SOX transcription factor family is crucial in regulating cell stemness and differentiation. Among them, SOX8 is known to influence osteoblast differentiation, but its role in OPLL remains unclear.
View Article and Find Full Text PDFInjury
August 2025
Department of Trauma Surgery, University and University Hospital of Zurich, Raemistr. 100, 8091 Zurich, Switzerland; Center for Preclinical Development, University and University Hospital of Zurich, Raemistr. 100, 8091 Zurich, Switzerland. Electronic address:
Background: Critical size bone defects represent a clinical challenge, associated with considerable morbidity, and frequently trigger the requirement of secondary procedure. To fill osseous gaps, multiple steps are required, such as proliferation and differentiation on the cellular level and the building of extracellular matrix. In addition, the osteogenic potential of cell-derived extracellular matrices (CD-ECM) is known to enhance bone healing.
View Article and Find Full Text PDFOsteoarthritis Cartilage
September 2025
Department of Inflammation and Ageing, School of Infection, Inflammation and Immunology, College of Medicine and Health, University of Birmingham, Birmingham B15 2TT, United Kingdom; National Institute for Health and Care Research (NIHR) Birmingham Biomedical Research Centre, United Kingdom. Electro
Objective: To investigate the inflammatory profiles of adipose tissues from patients with osteoarthritis (OA), comparing the joint-associated adipose tissues (infrapatellar fat pad (IFP) and sub-synovial (SSAT)) with subcutaneous adipose tissue (SCAT), and to explore adipose-joint cell crosstalk.
Design: RNA sequencing was performed on autologous IFP, SSAT, and SCAT from six patients. The adipose tissue secretome was profiled using targeted proteomics.
Nature
August 2025
Department of Human Evolutionary Biology, Harvard University, Cambridge, MA, USA.
Bipedalism is a human-defining trait. It is made possible by the familiar, bowl-shaped pelvis, whose short, wide iliac blades curve along the sides of the body to stabilize walking and support internal organs and a large-brained, broad-shouldered baby. The ilium changes compared with living primates are an evolutionary novelty.
View Article and Find Full Text PDFBiochem Biophys Res Commun
August 2025
Institute of Biomaterials, Department of Materials Science and Engineering, University of Erlangen-Nuremberg, Cauerstraße 6, 91058, Erlangen, Germany. Electronic address:
The advances in nanotechnology and nanomedicine have enabled the development of minimally invasive, high-performance drug delivery systems with enhanced targeting and therapeutic abilities. In this context, the high biocompatibility, tunable surface chemistry and physicochemical properties of SiO nanoparticles (SNPs), have placed them as key representatives in this field. However, the clinical success of SNP-based systems highly depends on the mechanism involved in their internalization process, which further determines their intracellular fate and therapeutic function.
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