994 resultados para SaOS-2
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Tissue transglutaminase (type II, TG2) has long been postulated to directly promote skeletal matrix calcification and play an important role in ossification. However, limited information is available on the expression, function and modulating mechanism of TG2 during osteoblast differentiation and mineralization. To address these issues, we cultured the well-established human osteosarcoma cell line SAOS-2 with osteo-inductive conditioned medium and set up three time points (culture days 4, 7, and 14) to represent different stages of SAOS-2 differentiation. Osteoblast markers, mineralization, as well as TG2 expression and activity, were then assayed in each stage. Furthermore, we inhibited TG activity with cystamine and then checked SAOS-2 differentiation and mineralization in each stage. The results showed that during the progression of osteoblast differentiation SAOS-2 cells presented significantly high levels of osteocalcin (OC) mRNA, bone morphogenetic protein-2 (BMP-2) and collagen I, significantly high alkaline phosphatase (ALP) activity, and the increased formation of calcified matrix. With the same tendency, TG2 expression and activity were up-regulated. Furthermore, inhibition of TG activity resulted in a significant decrease of OC, collagen I, and BMP-2 mRNA and of ALP activity and mineralization. This study demonstrated that TG2 is involved in osteoblast differentiation and may play a role in the initiation and regulation of the mineralization processes. Moreover, the modulating effects of TG2 on osteoblasts may be related to BMP-2.
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p73 has recently been identified as a structural and functional homolog of the tumor suppressor protein p53. Overexpression of p53 activates transcription of p53 effector genes, causes growth inhibition and induced apoptosis. We describe here the effects of a tumor-derived truncated transcript of p73 alpha (p73 Delta exon2) on p53 function and on cell death. This transcript, which lacks the acidic N-terminus corresponding to the transactivation domain of p53, was initially detected in a neuroblastoma cell line. Overexpression of p73 Delta exon2 partially protects lymphoblastoid cells against apoptosis induced by anti-Fas antibody or cisplatin. By cotransfecting p73 Delta exon2 with wild-type p53 in the p53 null line Saos 2, we found that this truncated transcript reduces the ability of wild-type p53 to promote apoptosis. This anti-apoptotic effect was also observed when p73 Delta exon2 was co-transfected with full-length p73 (p73 alpha). This was further substantiated by suppression of p53 transactivation of the effector gene p21-Waf1 in p73 Delta exon2 transfected cells and by inhibition of expression of a reporter gene under the control of the p53 promoter. Thus, this truncated form of p73 can act as a dominant-negative agent towards transactivation by p53 and p73 alpha, highlighting the potential implications of these findings for p53 signaling pathway. Furthermore, we demonstrate the existence of a p73 Delta exon2 transcript in a very significant proportion (46%) of breast cancer cell lines. However, a large spectrum of normal and malignant tissues need to be surveyed to determine whether this transdominant p73 variant occurs in a tumor-specific manner.
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As fraturas ósseas têm sido consideradas como um problema sócio económico mundial afetando sobretudo os jovens e idosos. No caso de pequenas correções de fraturas ou defeitos ósseos é necessário a aplicação de implantes biodegradáveis que atuem de forma temporária durante o período de formação do novo tecido ósseo. Uma das grandes vantagens da sua aplicação é evitar uma segunda intervenção cirúrgica para a sua remoção. Para isso, o Magnésio (Mg) e as suas ligas têm vindo a ser considerados como uma boa opção para este tipo de implantes temporários pois para além de serem biodegradáveis e biocompatíveis possuem propriedades semelhantes ao osso. No entanto, a sua elevada taxa de degradação em ambiente biológico é uma desvantagem para a sua utilização que conduz à perda da sua funcionalidade. O objetivo deste trabalho foi desenvolver revestimentos multifuncionais biocompatíveis, para a superfície do implante biodegradável, que permitam controlar a taxa de degradação do Mg e em simultâneo promovam a adesão e proliferação celular no local afetado. Neste trabalho, foram desenvolvidos três tipos de revestimentos biocompatíveis: Fosfatos, Fosfatos com nanopartículas de hidroxiapatite e fosfatos com nanopartículas de hidroxiapatite e óxido de grafeno aplicados na superfície da liga de Mg AZ31 através do método de eletrodeposição/eletroforese química. Foi realizado um tratamento térmico e avaliada a sua influência na resposta celular e na sua resistência à degradação. As propriedades físico-químicas do revestimento foram obtidas por microscopia electrónica de varrimento e de transmissão, microscopia de Raman, difração de raios-X e microscopia de força atómica. Foram ainda analisadas medições do ângulo de contacto da superfície dos revestimentos e realizados ensaios de degradação em soluções fisiológicas. A resposta celular aos revestimentos foi testada in vitro através da avaliação da adesão e proliferação de células osteoblásticas (Saos-2). Os resultados obtidos demonstram que o tratamento térmico modifica a estrutura do revestimento e promove a adesão celular. A incorporação do óxido grafeno no revestimento de fosfatos e hidroxiapatite permite aumentar a resistência à degradação e promover uma melhor resposta celular.
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Gold nanorods (AuNRs) have emerged as an exceptional nanotool for a myriad of applications ranging from cancer therapy to tissue engineering. However, their surface modification with biocompatible and stabilizing biomaterials is crucial to allow their use in a biological environment. Herein, low-acyl gellan gum (GG) was used to coat AuNRs surface, taking advantage of its stabilizing, biocompatible and gelling features. The layer-by-layer based strategy implied the successive deposition of poly(acrylic acid), poly(allylamine hydrochloride) and GG, which allowed the formation of a GG hydrogel-like shell with 7 nm thickness around individual AuNRs. Stability studies in a wide range of pH and salt concentrations showed that the polysaccharide coating can prevent AuNRs aggregation. Moreover, a reversible pH-responsive feature of the nanoparticles was observed. Cytocompatibility and osteogenic ability of GG-coated AuNRs was also addressed. After 14 days of culturing within SaOS-2, an osteoblast-like cell line, in vitro studies revealed that AuNRs-GG exhibit no cytotoxicity, were internalized by the cells and localized inside lysosomes. AuNRs-GG combined with osteogenic media enhanced the mineralization capacity two-fold, as compared to cells exposed to osteogenic media alone. The proposed system has shown interesting features for osteogenesis, and further insights might be relevant for drug delivery, tissue engineering and regenerative medicine.
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The effect of α-amylase degradation on the release of gentamicin from starch-conjugated chitosan microparticles was investigated up to 60 days. Scanning electron microscopic observations showed an increase in the porosity and surface roughness of the microparticles as well as reduced diameters. This was confirmed by 67% weight loss of the microparticles in the presence of α-amylase. Over time, a highly porous matrix was obtained leading to increased permeability and increased water uptake with possible diffusion of gentamicin. Indeed, a faster release of gentamicin was observed with α-amylase. Starch-conjugated chitosan particles are non-toxic and highly biocompatible for an osteoblast (SaOs-2) and fibroblast (L929) cell line as well as adipose-derived stem cells. When differently produced starch-conjugated chitosan particles were tested, their cytotoxic effect on SaOs-2 cells was found to be dependent on the crosslinking agent and on the amount of starch used.
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BACKGROUND: The need for an integrated view of data obtained from high-throughput technologies gave rise to network analyses. These are especially useful to rationalize how external perturbations propagate through the expression of genes. To address this issue in the case of drug resistance, we constructed biological association networks of genes differentially expressed in cell lines resistant to methotrexate (MTX). METHODS: Seven cell lines representative of different types of cancer, including colon cancer (HT29 and Caco2), breast cancer (MCF-7 and MDA-MB-468), pancreatic cancer (MIA PaCa-2), erythroblastic leukemia (K562) and osteosarcoma (Saos-2), were used. The differential expression pattern between sensitive and MTX-resistant cells was determined by whole human genome microarrays and analyzed with the GeneSpring GX software package. Genes deregulated in common between the different cancer cell lines served to generate biological association networks using the Pathway Architect software. RESULTS: Dikkopf homolog-1 (DKK1) is a highly interconnected node in the network generated with genes in common between the two colon cancer cell lines, and functional validations of this target using small interfering RNAs (siRNAs) showed a chemosensitization toward MTX. Members of the UDP-glucuronosyltransferase 1A (UGT1A) family formed a network of genes differentially expressed in the two breast cancer cell lines. siRNA treatment against UGT1A also showed an increase in MTX sensitivity. Eukaryotic translation elongation factor 1 alpha 1 (EEF1A1) was overexpressed among the pancreatic cancer, leukemia and osteosarcoma cell lines, and siRNA treatment against EEF1A1 produced a chemosensitization toward MTX. CONCLUSIONS: Biological association networks identified DKK1, UGT1As and EEF1A1 as important gene nodes in MTX-resistance. Treatments using siRNA technology against these three genes showed chemosensitization toward MTX.
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BACKGROUND: The need for an integrated view of data obtained from high-throughput technologies gave rise to network analyses. These are especially useful to rationalize how external perturbations propagate through the expression of genes. To address this issue in the case of drug resistance, we constructed biological association networks of genes differentially expressed in cell lines resistant to methotrexate (MTX). METHODS: Seven cell lines representative of different types of cancer, including colon cancer (HT29 and Caco2), breast cancer (MCF-7 and MDA-MB-468), pancreatic cancer (MIA PaCa-2), erythroblastic leukemia (K562) and osteosarcoma (Saos-2), were used. The differential expression pattern between sensitive and MTX-resistant cells was determined by whole human genome microarrays and analyzed with the GeneSpring GX software package. Genes deregulated in common between the different cancer cell lines served to generate biological association networks using the Pathway Architect software. RESULTS: Dikkopf homolog-1 (DKK1) is a highly interconnected node in the network generated with genes in common between the two colon cancer cell lines, and functional validations of this target using small interfering RNAs (siRNAs) showed a chemosensitization toward MTX. Members of the UDP-glucuronosyltransferase 1A (UGT1A) family formed a network of genes differentially expressed in the two breast cancer cell lines. siRNA treatment against UGT1A also showed an increase in MTX sensitivity. Eukaryotic translation elongation factor 1 alpha 1 (EEF1A1) was overexpressed among the pancreatic cancer, leukemia and osteosarcoma cell lines, and siRNA treatment against EEF1A1 produced a chemosensitization toward MTX. CONCLUSIONS: Biological association networks identified DKK1, UGT1As and EEF1A1 as important gene nodes in MTX-resistance. Treatments using siRNA technology against these three genes showed chemosensitization toward MTX.
Altération de l’interaction entre la PTH et LRP6 dans les ostéoblastes humains arthrosiques via DKK2
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L’ostéoarthrose (OA) se caractérise par une perte du cartilage articulaire, une sclérose osseuse, et une inflammation de la membrane synoviale. Des études in vivo et in vitro indiquent que les modifications du tissu osseux sont responsables de la perte du cartilage articulaire. Les ostéoblastes (Ob) OA présentent une réduction de la réponse à l’hormone parathyroïdienne (PTH), un signal anabolique important pour le tissu osseux, versus les Ob normaux. Le récepteur à la PTH (PTH-R) interagit avec le LRP6, le récepteur des ligands Wnts, et les antagonistes Dickkopf (DKK) bloquent cette interaction. Puisque le niveau de DKK2 est élevé en réponse au TGF-β1 dans les OA Ob, nous proposons que DKK2 altère l’interaction LRP6/PTH-R, le recyclage de PTH-R, et inhibe la réponse à la PTH. Nous avons utilisé des Ob OA et normaux humains en culture primaire. L’expression de PTH-R, LPR6 et DKK2 est mesurée par RT-PCR. Les niveaux protéiques de LRP6, PTH-R et DKK2 ont été déterminés par immunobuvardage. L’inhibition de DKK2 s’est effectuée par siRNA et l’AMP cyclique (AMPc) a été mesurée par ELISA. L’effet de TGF-β1 sur l’expression de DKK2 et PTH-R a été testé sur des cellules d’ostéosarcome SaOS-2. L’expression de PTH-R et LRP6 est similaire entre Ob normaux et OA, mais le niveau protéique de PTH-R est réduit dans les Ob OA. Par contre, l’expression et la production de DKK2 sont plus élevées dans les Ob OA. L’inhibition de DKK2 ne modifia pas l’expression de LRP6 et PTH-R dans les Ob OA mais a augmenté le niveau protéique de PTH-R détecté par immunobuvardage alors que celui de LRP-6 demeura inchangé. L’inhibition de DKK2 dans les Ob OA entraîna une augmentation de PTH-R dans la fraction membranaire et une diminution de la fraction intracellulaire. Les résultats de l'inhibition de la voie de clathrine par le triflupromazine ont montré une expression accrue du récepteur PTH dans la fraction membranaire qui peut être due à l'inhibition de sa dégradation par la voie de clathrine. L’induction de DKK2 dans les cellules SaOS-2 par TGF-β1 entraîna l’inhibition de PTH-R mais non celle de LRP6. L’inhibition de DKK2 dans les Ob OA a stimulé la production d’AMPc en réponse à la PTH par les Ob OA. En outre, le traitement de TGF-β1 dans les cellules SaOS-2 réduit la production d'AMPc en réponse à la PTH.Ces résultats démontrent que les niveaux élevés de DKK2, via l’inhibition de la signalisation Wnt/bcaténine, sont aussi responsables de l’altération de la réponse à la PTH observée dans les Ob OA. Le niveau élevé de DKK2 diminue spécifiquement l’affichage membranaire de PTH-R dans ces cellules et non son expression. Ces résultats suggèrent donc une altération du cross-talk entre LRP6 et PTH-R dans les Ob OA en lien avec leur niveau de DKK2.
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Bone tumor incidence in women peaks at age 50-60, coinciding with the menopause. That estrogen (E2) and triiodothyronine (T3) interact in bone metabolism has been well established. However, few data on the action of these hormones are available. Our purpose was to determine the role of E2 and T3 in the expression of bone activity markers, namely alkaline phosphatase (AP) and receptor activator of nuclear factor kappa B ligand (RANKL). Two osteosarcoma cell lines: MG-63 (which has both estrogen (ER) and thyroid hormone (TR) receptors) and SaOs-29 (ER receptors only) were treated with infraphysiological E2 associated with T3 at infraphysiological, physiological, and supraphysiological concentrations. Real-time RT-PCR was used for expression analysis. Our results show that, in MG-63 cells, infraphysiological E2 associated with supraphysiological T3 increases AP expression and decreases RANKL expression, while infraphysiological E2 associated with either physiological or supraphysiological T3 decreases both AP and RANKL expression. On the other hand, in SaOs-2 cells, the same hormone combinations had no significant effect on the markers` expression. Thus, the analysis of hormone receptors was shown to be crucial for the assessment of tumor potential growth in the face of hormonal changes. Special care should be provided to patients with T3 and E2 hormone receptors that may increase tumor growth. Copyright (C) 2007 John Wiley & Sons, Ltd.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Bone tumor incidence in women peaks at age 50-60, coinciding with the menopause. That estrogen (E2) and triiodothyronine (T3) interact in bone metabolism has been well established. However, few data on the action of these hormones are available. Our purpose was to determine the role of E2 and T3 in the expression of bone activity markers, namely alkaline phosphatase (AP) and receptor activator of nuclear factor κB ligand (RANKL). Two osteosarcoma cell lines: MG-63 (which has both estrogen (ER) and thyroid hormone (TR) receptors) and SaOs-29 (ER receptors only) were treated with infraphysiological E2 associated with T3 at infraphysiological, physiological, and supraphysiological concentrations. Real-time RT-PCR was used for expression analysis. Our results show that, in MG-63 cells, infraphysiological E2 associated with supraphysiological T3 increases AP expression and decreases RANKL expression, while infraphysiological E2 associated with either physiological or supraphysiological T3 decreases both AP and RANKL expression. On the other hand, in SaOs-2 cells, the same hormone combinations had no significant effect on the markers' expression. Thus, the analysis of hormone receptors was shown to be crucial for the assessment of tumor potential growth in the face of hormonal changes. Special care should be provided to patients with T3 and E2 hormone receptors that may increase tumor growth. Copyright © 2007 John Wiley & Sons, Ltd.
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Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES)
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INTRODUCTION: Patients treated with nitrogen-containing bisphosphonates, such as zoledronic acid (ZA), have frequently shown oral bone exposure areas, termed osteonecrosis. In addition, these patients may also present low repair and regeneration potential, mainly after tooth extractions. These side-effects caused by bisphosphonates may be due to their inhibitory effects on oral mucosa and local bone cells. OBJECTIVE: To evaluate the effects of ZA on the mineralization capacity of cultured osteoblasts. MATERIALS AND METHODS: Human immortalized osteoblasts (SaOs-2) were grown in plain culture medium (Dulbecco's Modified Eagle Medium [DMEM] + 10% fetal bovine serum [FBS]) in wells of 24-well plates. After 48-hour incubation, the plain DMEM was replaced by a solution with ZA at 5 µM which was maintained in contact with cells for seven, 14 or 21 days. After these periods, cells were evaluated regarding alkaline phosphatase (ALP) activity and mineral nodule formation (alizarin red). Data were statistically analyzed by Mann-Whitney test, at 5% of significance level. RESULTS: ZA caused significant reduction on ALP activity and mineral nodules formation by cultured osteoblasts in all evaluated periods (p < 0.05). CONCLUSION: These data indicate that ZA causes inhibition on the osteogenic phenotype of cultured human osteoblasts, which, in turn, may reduce bone repair in patients subjected to ZA therapy.
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Pós-graduação em Odontologia - FOAR