Effects of Direct Cell Contact Between Monocytes and Fibroblasts on the Interleukin-6 Production and Cell Proliferation of Human Gingival and Periodontal Ligament Fibroblasts

1999 ◽  
Vol 29 (4) ◽  
pp. 803
Author(s):  
Soo-Ah Kim ◽  
Ho Lee ◽  
Kwi-Ok Oh ◽  
Hyung-Seop Kim
2010 ◽  
Vol 28 (5) ◽  
pp. 526-534 ◽  
Author(s):  
Berber D. Roorda ◽  
Arja ter Elst ◽  
Tiny G. J. Meeuwsen-de Boer ◽  
Willem A. Kamps ◽  
Eveline S. J. M. de Bont

Nanomaterials ◽  
2021 ◽  
Vol 11 (9) ◽  
pp. 2189
Author(s):  
Ioannis Tsamesidis ◽  
Dimitrios Gkiliopoulos ◽  
Georgia K. Pouroutzidou ◽  
Evgenia Lymperaki ◽  
Chrysanthi Papoulia ◽  
...  

Ion doping has rendered mesoporous structures important materials in the field of tissue engineering, as apart from drug carriers, they can additionally serve as regenerative materials. The purpose of the present study was the synthesis, characterization and evaluation of the effect of artemisinin (ART)-loaded cerium-doped mesoporous calcium silicate nanopowders (NPs) on the hemocompatibility and cell proliferation of human periodontal ligament fibroblasts (hPDLFs). Mesoporous NPs were synthesized in a basic environment via a surfactant assisted cooperative self-assembly process and were characterized using Scanning Electron Microscopy (SEM), X-ray Fluorescence Spectroscopy (XRF), Fourier Transform Infrared Spectroscopy (FT-IR), X-ray Diffraction Analysis (XRD) and N2 Porosimetry. The loading capacity of NPs was evaluated using Ultrahigh Performance Liquid Chromatography/High resolution Mass Spectrometry (UHPLC/HRMS). Their biocompatibility was evaluated with the MTT assay, and the analysis of reactive oxygen species was performed using the cell-permeable ROS-sensitive probe 2′,7′-dichlorodihydrofluorescein diacetate (H2DCFDA). The synthesized NPs presented a mesoporous structure with a surface area ranging from 1312 m2/g for undoped silica to 495 m2/g for the Ce-doped NPs, excellent bioactivity after a 1-day immersion in c-SBF, hemocompatibility and a high loading capacity (around 80%). They presented ROS scavenging properties, and both the unloaded and ART-loaded NPs significantly promoted cell proliferation even at high concentrations of NPs (125 μg/mL). The ART-loaded Ce-doped NPs with the highest amount of cerium slightly restricted cell proliferation after 7 days of culture, but the difference was not significant compared with the control untreated cells.


2017 ◽  
Vol 36 (76) ◽  
Author(s):  
Adriana Paola Acosta Gómez ◽  
Sandra Janeth Gutiérrez Prieto ◽  
María Alexandra Bedoya Mejía ◽  
Dabeiba Adriana García Robayo ◽  
Ximena Edilia Moreno Serrano

<strong>ABSTRACT<em>. Background:</em></strong><em> </em>Growth factors used in health treatments can be obtained from a first-generation source called platelet-rich plasma. The variety of protocols to prepare PRP produces variable results regarding PRP activation time and its effects on cell proliferation and viability. <strong><em>Purpose:</em></strong><em> </em>To evaluate proliferation and cell viability of periodontal ligament fibroblasts and osteoblasts stimulated with PRP in several concentrations and times after PRP activation. <strong><em>Methods:</em></strong> An in vitro study was carried out using periodontal ligament fibroblast and osteoblast cell cultures. PRP from venous blood of a healthy adult was prepared through centrifugation and activated with 10 % CaCl<sub>2</sub>. The effect on cell proliferation after application of 1 %, 3 %, and 5% PRP and platelet-poor plasma was evaluated at 0, 12, 24, 48, and 72 hours after activation through MTS. The control group consisted of culture that did not receive any treatment. Data were analyzed using Chi square, Fisher, and McNemar tests. <strong><em>Results:</em></strong><em> </em>The cell viability assay showed statistically significant differences between the experimental and the control groups. Cell viability increased in cells treated with 5 % PRP 24 hours after activation (p=0.05). <strong><em>Conclusions:</em></strong><em> </em>Fibroblast and osteoblast cell lines tended to be more viable 24 hours after activation with 5% PRP.


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