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1.
Am J Pathol ; 180(1): 48-60, 2012 Jan.
Artigo em Inglês | MEDLINE | ID: mdl-22063298

RESUMO

Despite modern treatments, congenital diaphragmatic hernia (CDH) remains associated with variable survival and significant morbidity. The associated pulmonary hypoplasia is a major determinant of outcome. To develop better treatments, improved comprehension of the pathogenesis of lung hypoplasia is warranted. We developed an in vitro cell recombinant model to mimic pulmonary hypoplasia and specifically to investigate epithelial-mesenchymal interactions and to decipher which tissue layer is primarily defective in nitrofen-induced CDH-associated lung hypoplasia. Epithelial cells (E) and fibroblasts (F) were isolated from E19 control ((C)) and nitrofen-induced hypoplastic rat lungs ((N)). Cells were recombined and cultured as either homotypic [(F(C))(E(C)) and (F(N))(E(N))] or heterotypic [(F(C))(E(N)) and (F(N))(E(C))] recombinants. Recombinants containing F(N) fibroblasts had a thickened fibroblast tissue layer and there were fewer organized alveolar-like epithelial structures compared with those in control (F(C))(E(C)) recombinants. These F(N) recombinants exhibited a decrease in terminal deoxynucleotidyl transferase dUTP nick end labeling and cleaved caspase-3 positive cells. Cell proliferation was arrested in recombinants containing F(N) fibroblasts, which also exhibited increased p27(Kip1) and p57(Kip2) expression. In conclusion, fibroblasts, and not epithelial cells, appear to be the defective cell type in nitrofen-induced hypoplastic lungs due to a decreased ability to undergo apoptosis and maintain overall proliferation. This may explain the characteristic pulmonary interstitial thickening and hypoplasia observed in both nitrofen-induced hypoplastic lungs as well as human hypoplastic CDH lungs.


Assuntos
Células Epiteliais/patologia , Fibroblastos/patologia , Hérnias Diafragmáticas Congênitas , Pulmão/anormalidades , Animais , Apoptose/fisiologia , Diferenciação Celular , Proliferação de Células , Transição Epitelial-Mesenquimal/fisiologia , Feminino , Hérnia Diafragmática/patologia , Imuno-Histoquímica , Mesoderma/patologia , Éteres Fenílicos/toxicidade , Gravidez , Ratos , Ratos Sprague-Dawley , Teratogênicos/toxicidade
2.
Biomaterials ; 30(12): 2400-10, 2009 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-19203790

RESUMO

Self-assembling peptides and peptide derivatives bearing cell-binding ligands are increasingly being investigated as defined cell culture matrices and as scaffolds for regenerative medicine. In order to systematically refine such scaffolds to elicit specific desired cell behaviors, ligand display should ideally be achieved without inadvertently altering other physicochemical properties such as viscoelasticity. Moreover, for in vivo applications, self-assembled biomaterials must exhibit low immunogenicity. In the present study, multi-peptide co-assembling hydrogels based on the beta-sheet fibrillizing peptide Q11 (QQKFQFQFEQQ) were designed such that they presented RGDS or IKVAV ligands on their fibril surfaces. In co-assemblies of the ligand-bearing peptides with Q11, ligand incorporation levels capable of influencing the attachment, spreading, morphology, and growth of human umbilical vein endothelial cells (HUVECs) did not significantly alter the materials' fibrillization, beta-turn secondary structure, or stiffness. RGDS-Q11 specifically increased HUVEC attachment, spreading, and growth when co-assembled into Q11 gels, whereas IKVAV-Q11 exerted a more subtle influence on attachment and morphology. Additionally, Q11 and RGDS-Q11 were minimally immunogenic in mice, making Q11-based biomaterials attractive candidates for further investigation as defined, modular extracellular matrices for applications in vitro and in vivo.


Assuntos
Células Endoteliais/metabolismo , Peptídeos/química , Peptídeos/metabolismo , Animais , Adesão Celular , Células Cultivadas , Dicroísmo Circular , Elasticidade , Células Endoteliais/citologia , Feminino , Gelatina , Humanos , Ligantes , Camundongos , Camundongos Endogâmicos C57BL , Microscopia Eletrônica de Transmissão , Peptídeos/síntese química , Viscosidade
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