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1.
Am J Pathol ; 178(4): 1676-88, 2011 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-21435451

RESUMO

The inflammatory mediator prostaglandin E(2) (PGE(2)) is implicated in the pathogenesis of chronic inflammatory diseases including periodontitis; it is synthesized by cyclooxygenases (COX) and the prostaglandin E synthases mPGES-1, mPGES-2, and cPGES. The distribution of PGES in gingival tissue of patients with periodontitis and the contribution of these enzymes to inflammation-induced PGE(2) synthesis in different cell types was investigated. In gingival biopsies, positive staining for PGES was observed in fibroblasts and endothelial, smooth muscle, epithelial, and immune cells. To further explore the contribution of PGES to inflammation-induced PGE(2) production, in vitro cell culture experiments were performed using fibroblasts and endothelial, smooth muscle, and mast cells. All cell types expressed PGES and COX-2, resulting in basal levels of PGE(2) synthesis. In response to tumor necrosis factor (TNF-α), IL-1ß, and cocultured lymphocytes, however, mPGES-1 and COX-2 protein expression increased in fibroblasts and smooth muscle cells, accompanied by increased PGE(2), whereas mPGES-2 and cPGES were unaffected. In endothelial cells, TNF-α increased PGE(2) production only via COX-2 expression, whereas in mast cells the cytokines did not affect PGE(2) enzyme expression or PGE(2) production. Furthermore, PGE(2) production was diminished in gingival fibroblasts derived from mPGES-1 knockout mice, compared with wild-type fibroblasts. These results suggest that fibroblasts and smooth muscle cells are important sources of mPGES-1, which may contribute to increased PGE(2) production in the inflammatory condition periodontitis.


Assuntos
Regulação Enzimológica da Expressão Gênica , Oxirredutases Intramoleculares/biossíntese , Oxirredutases Intramoleculares/genética , Periodontite/enzimologia , Animais , Células Cultivadas , Técnicas de Cocultura/métodos , Ciclo-Oxigenase 2/metabolismo , Fibroblastos/metabolismo , Gengiva/embriologia , Gengiva/metabolismo , Humanos , Inflamação , Interleucina-1beta/metabolismo , Linfócitos/metabolismo , Mastócitos/citologia , Camundongos , Camundongos Knockout , Miócitos de Músculo Liso/citologia , Periodontite/genética , Periodontite/metabolismo , Prostaglandina-E Sintases , Fator de Necrose Tumoral alfa/metabolismo
2.
J Vis Exp ; (101): e52986, 2015 Jul 31.
Artigo em Inglês | MEDLINE | ID: mdl-26275100

RESUMO

Electrospinning is a highly adaptable method producing porous 3D fibrous scaffolds that can be exploited in in vitro cell culture. Alterations to intrinsic parameters within the process allow a high degree of control over scaffold characteristics including fiber diameter, alignment and porosity. By developing scaffolds with similar dimensions and topographies to organ- or tissue-specific extracellular matrices (ECM), micro-environments representative to those that cells are exposed to in situ can be created. The airway bronchiole wall, comprised of three main micro-environments, was selected as a model tissue. Using decellularized airway ECM as a guide, we electrospun the non-degradable polymer, polyethylene terephthalate (PET), by three different protocols to produce three individual electrospun scaffolds optimized for epithelial, fibroblast or smooth muscle cell-culture. Using a commercially available bioreactor system, we stably co-cultured the three cell-types to provide an in vitro model of the airway wall over an extended time period. This model highlights the potential for such methods being employed in in vitro diagnostic studies investigating important inter-cellular cross-talk mechanisms or assessing novel pharmaceutical targets, by providing a relevant platform to allow the culture of fully differentiated adult cells within 3D, tissue-specific environments.


Assuntos
Bronquíolos/citologia , Engenharia Tecidual/métodos , Alicerces Teciduais , Adulto , Técnicas de Cultura de Células/métodos , Diferenciação Celular/fisiologia , Técnicas de Cocultura/métodos , Matriz Extracelular/fisiologia , Fibroblastos/citologia , Humanos , Miócitos de Músculo Liso/citologia , Polietilenotereftalatos , Polímeros , Porosidade
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