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1.
Chinese Journal of Medical Genetics ; (6): 1087-1090, 2021.
Article in Chinese | WPRIM | ID: wpr-922003

ABSTRACT

OBJECTIVE@#To explore the correlation between the genotypes and metabolic markers and microstructure of bones in children with Gitelman syndrome (GS).@*METHODS@#For 15 children with GS and 10 healthy individuals, baseline data and bone metabolic markers including parathyroid hormone, alkaline phosphatase, osteocalcin, N-terminal propeptide of type I procollagen, beta isomer of the C-terminal telopeptide of type I collagen and 25-hydroxyvitamin D, high-resolution peripheral quantitative computed tomography indicators (volumetric bone mineral density, bone microstructure indicators) were collected. Genetic testing was carried out to determine their genotypes.@*RESULTS@#The volumetric bone mineral density, bone geometry and bone microstructure parameters of the GS group were better than those of the healthy controls (P<0.05). Variants of the SLC12A3 gene were identified in 9 of the 15 patients but none of the 10 healthy controls.@*CONCLUSION@#The phenotype of GS children is influenced by the interaction of genetic variants, though the phenotype associated with high frequency mutations showed no specificity. There is also a correlation between their genotype and the bone microstructure.


Subject(s)
Child , Humans , Biomarkers , Bone and Bones , Collagen Type I/genetics , Genotype , Gitelman Syndrome , Osteocalcin/genetics , Peptide Fragments , Solute Carrier Family 12, Member 3
2.
Braz. oral res. (Online) ; 34: e014, 2020. tab, graf
Article in English | LILACS | ID: biblio-1089383

ABSTRACT

Abstract Although dental implants and bone regenerative procedures are important approaches for the reestablishment of esthetics and function in young patients with a history of generalized aggressive periodontitis (GAP), no predictable outcomes have been reported, and the host osteo-immunoinflammatory response may play a relevant role in this context. In view of the lack of molecular investigations into the bone tissue condition of young patients with periodontitis, the aim of this study was to evaluate the gene expression of bone-related factors in this population. Bone biopsies were obtained from the posterior mandible in 16 individuals previously diagnosed with GAP and on periodontal support therapy and from 17 periodontally healthy (PH) patients. The gene expression of tumor necrosis factor (TNF)-α, transforming growth factor (TGF)-β, receptor activator of the NF-κB ligand (RANKL), osteoprotegerin (OPG), osteocalcin (OC), bone sialoprotein (BSP), and type I collagen (COL-I), important biomarkers of bone turnover, was evaluated by qRT-PCR. Lower TGF-β and OPG mRNA levels were observed in GAP patients compared to PH individuals (p ≤ 0.05). There were no between-group differences in levels of TNF-α, BSP, RANKL, OC, or COL-I mRNA (p>0.05). In young adults, a history of periodontal disease can negatively modulate the gene expression of important bone-related factors in alveolar bone tissue. These molecular outcomes may contribute to the future development of therapeutic approaches to benefit bone healing in young patients with history of periodontitis via modulation of osteo-immuno-inflammatory biomarkers.


Subject(s)
Humans , Male , Female , Adult , Young Adult , Aggressive Periodontitis/genetics , Gene Expression , Aggressive Periodontitis/metabolism , Reference Values , Biomarkers , Osteocalcin/analysis , Osteocalcin/genetics , Single-Blind Method , Cross-Sectional Studies , Transforming Growth Factor beta/analysis , Transforming Growth Factor beta/genetics , Tumor Necrosis Factor-alpha/analysis , Tumor Necrosis Factor-alpha/genetics , Statistics, Nonparametric , Collagen Type I/analysis , Collagen Type I/genetics , RANK Ligand/analysis , RANK Ligand/genetics , Osteoprotegerin/analysis , Osteoprotegerin/genetics , Integrin-Binding Sialoprotein/analysis , Integrin-Binding Sialoprotein/genetics , Alveolar Process/chemistry , Real-Time Polymerase Chain Reaction
3.
Acta cir. bras ; 33(9): 736-743, Sept. 2018. tab, graf
Article in English | LILACS | ID: biblio-973502

ABSTRACT

Abstract Purpose: To evaluate osteocalcin gene and protein expression in vitro and in an in vivo model of ostectomy. Methods: Twenty Wistar rats were assigned into two groups A (n=10, laser) and B (n=10, control). Ostectomy was performed in the femur diaphysis; the twenty fragments removed, composed in vitro groups named as in vivo (A and B) and cultivated in CO2 atmosphere for thirteen days. Low-level laser irradiation was performed in groups A (in vivo and in vitro) by an GaAlAs device (λ=808 nm, dose of 2J/cm2, power of 200mW, power density of 0.2W/cm2, total energy of 1.25J, spot diameter of 0.02mm) for 5 seconds, at one point, daily. It was performed immunocytochemistry assays in vivo and in vitro groups. In vitro groups were also submitted to RNA extraction, cDNA synthesis and gene expression by quantitative PCR. Statistical analysis was realized with p<0.05. Results: Immunocytochemistry scores showed no significant differences between control and laser groups either in vivo and in vitro. Gene expression also showed no statistical differences. Conclusion: Low-level laser irradiation did not alter osteocalcin protein and gene expression in vivo and in vitro in the studied period but it may have been expressed them in an earlier period.


Subject(s)
Animals , Male , Rats , Gene Expression/radiation effects , Osteocalcin/radiation effects , Femur/radiation effects , Osteotomy , Immunohistochemistry , Osteocalcin/genetics , Osteocalcin/metabolism , Rats, Wistar , Models, Animal , Low-Level Light Therapy , Femur/surgery , Femur/metabolism
4.
Biol. Res ; 48: 1-8, 2015. graf, tab
Article in English | LILACS | ID: biblio-950829

ABSTRACT

BACKGROUND: Tridaxprocumbens flavonoids (TPFs) are well known for their medicinal properties among local natives. Besides traditionally used for dropsy, anemia, arthritis, gout, asthma, ulcer, piles, and urinary problems, it is also used in treating gastric problems, body pain, and rheumatic pains of joints. TPFs have been reported to increase osteogenic functioning in mesenchymal stem cells. Our previous study showed that TPFs were significantly suppressed the RANKL-induced differentiation of osteoclasts and bone resorption. However, the effects of TPFs to promote osteoblasts differentiation and bone formation remain unclear. TPFs were isolated from Tridax procumbens and investigated for their effects on osteoblasts differentiation and bone formation by using primary mouse calvarial osteoblasts. RESULTS: TPFs promoted osteoblast differentiation in a dose-dependent manner demonstrated by up-regulation of alkaline phosphatase and osteocalcin. TPFs also upregulated osteoblast differentiation related genes, including osteocalcin, osterix, and Runx2 in primary osteoblasts. TPFs treated primary osteoblast cells showed significant upregulation of bone morphogenetic proteins (BMPs) including Bmp-2, Bmp-4, and Bmp-7. Addition of noggin, a BMP specific-antagonist, inhibited TPFs induced upregulation of the osteocalcin, osterix, and Runx2. CONCLUSION: Our findings point towards the induction of osteoblast differentiation by TPFs and suggested that TPFs could be a potential anabolic agent to treat patients with bone loss-associated diseases such as osteoporosis.


Subject(s)
Animals , Mice , Osteoblasts/drug effects , Osteogenesis/drug effects , Flavonoids/pharmacology , Cell Differentiation/drug effects , Asteraceae/chemistry , Osteoblasts/cytology , Osteoblasts/metabolism , Skull/cytology , Skull/drug effects , Transcription Factors/genetics , Flavonoids/analysis , Calcification, Physiologic/drug effects , Osteocalcin/drug effects , Osteocalcin/genetics , Up-Regulation/genetics , Bone Morphogenetic Proteins/metabolism , Reverse Transcriptase Polymerase Chain Reaction , Alkaline Phosphatase/drug effects , Alkaline Phosphatase/metabolism , Core Binding Factor Alpha 1 Subunit/genetics , Core Binding Factor Alpha 1 Subunit/metabolism , Primary Cell Culture , Sp7 Transcription Factor , Medicine, Traditional , Mice, Inbred C57BL
5.
Yonsei Medical Journal ; : 277-286, 2015.
Article in English | WPRIM | ID: wpr-174623

ABSTRACT

PURPOSE: To investigate the molecular responses of various genes and proteins related to disc degeneration upon treatment with cytokines that affect disc-cell proliferation and phenotype in living human intervertebral discs (IVDs). Responsiveness to these cytokines according to the degree of disc degeneration was also evaluated. MATERIALS AND METHODS: The disc specimens were classified into two groups: group 1 (6 patients) showed mild degeneration of IVDs and group 2 (6 patients) exhibited severe degeneration of IVDs. Gene expression was analyzed after treatment with four cytokines: recombinant human bone morphogenic protein (rhBMP-2), transforming growth factor-beta (TGF-beta), interleukin-1beta (IL-1beta), and tumor necrosis factor-alpha (TNF-alpha). Molecular responses were assessed after exposure of cells from the IVD specimens to these cytokines via real-time polymerase chain reaction and immunofluorescence staining. RESULTS: mRNA gene expression was significantly greater for aggrecan, type I collagen, type II collagen, alkaline phosphatase, osteocalcin, and Sox9 in group 1 than mRNA gene expression in group 2, when the samples were not treated with cytokines. Analysis of mRNA levels for these molecules after morphogen treatment revealed significant increases in both groups, which were much higher in group 1 than in group 2. The average number of IVD cells that were immunofluorescence stained positive for alkaline phosphatase increased after treatment with rhBMP-2 and TGF-beta in group 1. CONCLUSION: The biologic responsiveness to treatment of rhBMP-2, TGF-beta, TNF-alpha, and IL-1beta in the degenerative living human IVD can be different according to the degree of degeneration of the IVD.


Subject(s)
Adult , Female , Humans , Male , Middle Aged , Aggrecans/genetics , Alkaline Phosphatase/genetics , Biological Products/pharmacology , Bone Morphogenetic Protein 2/pharmacology , Collagen Type I/genetics , Collagen Type II/genetics , Cytokines/pharmacology , Fluorescent Antibody Technique , Gene Expression Regulation/drug effects , Interleukin-1/pharmacology , Intervertebral Disc/drug effects , Intervertebral Disc Degeneration/drug therapy , Osteocalcin/genetics , RNA, Messenger/genetics , Recombinant Proteins/pharmacology , SOX9 Transcription Factor/genetics , Transforming Growth Factor beta/pharmacology , Tumor Necrosis Factor-alpha/pharmacology
6.
Scientific Journal of Iranian Blood Transfusion Organization Research Center [The]. 2012; 8 (4): 251-264
in Persian | IMEMR | ID: emr-118298

ABSTRACT

During differentiation of mesenchymal stem cells [MSCs] into various cells, the expression of a variety of genes undergoes some changes; in this study we decided to investigate the expression rate of some genes like osteopontin [OPN] and osteocalcin [OCN] during this process in order to find a better and faster way for these cells to be differentiated into osteoblasts. In this experimental study, the mononuclear cells of bone marrow were separated and then cultured in DMEM-LG culture media with 10% FBS. During some definite days, the RNA of differentiating cells was extracted. Then, the effective genes in osteogenesis like OPN and OCN were amplified by speciefic primers. The mesenchymal cells were cultured on 3D calcium phosphate scaffolds, and finally the activity rate of the alkaline phosphatase was examined. This research has demonstrated that in the process of differentiation, the expression of the two genes of OPN and OCN changed orderly with the maximum expression of OPN in the 6th day and the maximum expression of OCN in the 7th and 8th days of differentiation. The osteogenic differentiation of MSCs was not confirmed by the coloration of mineral sediments. The activity rate of alkaline phosphatase revealed the preference of 3D calcium phosphate scaffold to 2D environment in this differentiation. The calcium phosphate scaffold positively affects the differentiation process. The expression of OPN and OCN genes changes during differentiation and can be used as away to a better and faster differentiation of these cells into osteoblast


Subject(s)
Humans , Osteoblasts , Mesenchymal Stem Cells , Gene Expression , Osteopontin/genetics , Osteocalcin/genetics
7.
Acta cir. bras ; 26(1): 7-11, jan.-fev. 2011. ilus, tab
Article in English | LILACS | ID: lil-572227

ABSTRACT

Purpose: To evaluate the ability of macroporous tricalcium phosphate cement (CPC) scaffolds to enable the adhesion, proliferation, and differentiation of mesenchymal stem cells derived from human bone marrow. Methods: Cells from the iliac crest of an adult human donor were processed and cultured on macroporous CPC discs. Paraffin spheres sized between 100 and 250µm were used as porogens. Cells were cultured for 5, 10, and 15 days. Next, we assessed cells' behavior and morphology on the biomaterial by scanning electron microscopy. The expression levels of the BGLA and SSP1 genes and the alkaline phosphatase (ALP) activity were quantified by the quantitative real-time polymerase chain reaction technique (QT-PCR) using the fluorophore SYBR GREEN®. Results: QT-PCR detected the expression of the BGLA and SSP1 genes and the ALP activity in the periods of 10 and 15 days of culture. Thus, we found out that there was cell proliferation and differentiation in osteogenic cells. Conclusion: Macroporous CPC, with pore sized between 100 and 250µm and developed using paraffin spheres, enables adhesion, proliferation, and differentiation of mesenchymal stem cells in osteogenic cells and can be used as a scaffold for bone tissue engineering.


Objetivo: Avaliar a capacidade de suportes tridimensionais macroporosos de cimento de fosfato de cálcio (CFC), de permitir a adesão, proliferação e diferenciação de células-tronco mesenquimais derivadas da medula óssea humana. Métodos: células obtidas da crista ilíaca de um doador humano adulto foram processadas e cultivadas sobre suportes de CFC, macroporosos, que tiveram como corpo gerador de poros, microesferas de parafina, com tamanho entre 100 e 250µm. Os períodos de cultura estabelecidos foram de cinco, 10 e 15 dias. Após estes períodos, o comportamento e a morfologia das células junto ao biomaterial foram avaliados por meio de Microscopia Eletrônica de Varredura. Os níveis de expressão dos genes BGLA e SSP1 bem como a atividade da Fosfatase Alcalina (ALP) foram quantificados pela técnica de PCR em Tempo Real (QT-PCR) utilizando o fluoróforo SYBR Green®. Resultados: O QT-PCR detectou a expressão dos genes BGLA e SSP1 e a atividade da fosfatase alcalina nos períodos de 10 e 15 dias de cultura. No período de cinco dias, não foi observada a expressão de nenhum dos genes investigados. Conclusão: O CFC, macroporoso, com tamanho de poros entre 100 e 250µm, criados por meio da utilização de microesferas de parafina, permite a adesão, proliferação e diferenciação de células-tronco mesenquimais em células osteogênicas, podendo ser utilizado como arcabouço para engenharia de tecido ósseo.


Subject(s)
Adult , Humans , Biocompatible Materials , Bone and Bones , Bone Cements , Calcium Phosphates , Mesenchymal Stem Cells , Tissue Scaffolds , Tissue Engineering/methods , Alkaline Phosphatase/genetics , Alkaline Phosphatase/metabolism , Biocompatible Materials/chemistry , Bone Cements/chemistry , Cell Differentiation , Cell Proliferation , Calcium Phosphates/chemistry , Extracellular Matrix/metabolism , Gene Expression , Mesenchymal Stem Cells , Microscopy, Electron, Scanning , Osteogenesis , Osteocalcin/genetics , Osteocalcin/metabolism , Osteocytes/cytology , Osteopontin/genetics , Osteopontin/metabolism , Polymerase Chain Reaction/methods , Time Factors , Tissue Scaffolds/chemistry
8.
Braz. dent. j ; 21(6): 491-498, 2010. ilus, tab
Article in English | LILACS | ID: lil-572294

ABSTRACT

The aim of this study was to investigate the effects of low-level laser therapy (LLLT) by using gallium aluminum arsenide (GaAlAs) diode laser on human osteoblastic cells grown on titanium (Ti). Osteoblastic cells were obtained by enzymatic digestion of human alveolar bone and cultured on Ti discs for up to 17 days. Cells were exposed to LLLT at 3 J/cm2 (wavelength of 780 nm) at days 3 and 7 and non-irradiated cultures were used as control. LLLT treatment did not influence culture growth, ALP activity, and mineralized matrix formation. Analysis of cultures by epifluorescence microscopy revealed an area without cells in LLLT treated cultures, which was repopulated latter with proliferative and less differentiated cells. Gene expression of ALP, OC, BSP, and BMP-7 was higher in LLLT treated cultures, while Runx2, OPN, and OPG were lower. These results indicate that LLLT modulates cell responses in a complex way stimulating osteoblastic differentiation, which suggests possible benefits on implant osseointegration despite a transient deleterious effect immediately after laser irradiation.


Este estudo teve como objetivo investigar o efeito do laser diodo de gálio-alumínio-arsênio (GaAlAs) em células osteoblásticas humanas cultivadas sobre discos de Ti. Para tanto, células osteoblásticas foram obtidas por digestão enzimática de osso alveolar humano e cultivadas sobre discos de Ti por 17 dias. As células foram submetidas à irradiação no 3º e 7º dias na dose de 3 J/cm2 e comprimento de onda de 780 nm e células não irradiadas foram usadas como controle. A irradiação não alterou a proliferação celular, atividade de ALP e formação de matriz mineralizada. Microscopia por epifluorescência indicou que após 24 h da aplicação do laser, as culturas irradiadas apresentaram áreas sem células, que mais tarde foram repovoadas por células em fase de proliferação e menos diferenciadas. O laser aumentou a expressão gênica relativa da ALP, OC, BSP e BMP-7 e reduziu a de RUNX2, OPN e OPG. Os resultados indicam que a terapia com laser modula de forma complexa as respostas celulares, estimulando a diferenciação osteoblástica. Assim, é possível sugerir possíveis benefícios do laser na osseointegração de implantes de Ti apesar do efeito deletério às células imediatamente após a irradiação.


Subject(s)
Humans , Bone Matrix/growth & development , Gene Expression/radiation effects , Low-Level Light Therapy , Osseointegration/radiation effects , Osteoblasts/radiation effects , Analysis of Variance , Alkaline Phosphatase/biosynthesis , Alkaline Phosphatase/genetics , /biosynthesis , /genetics , Cells, Cultured/radiation effects , Collagen Type I/biosynthesis , Collagen Type I/genetics , Core Binding Factor Alpha 1 Subunit/biosynthesis , Core Binding Factor Alpha 1 Subunit/genetics , Integrin-Binding Sialoprotein/biosynthesis , Integrin-Binding Sialoprotein/genetics , Intercellular Adhesion Molecule-1/biosynthesis , Intercellular Adhesion Molecule-1/genetics , Lasers, Semiconductor/therapeutic use , Osteoblasts/metabolism , Osteocalcin/biosynthesis , Osteocalcin/genetics , Osteopontin/biosynthesis , Osteopontin/genetics , Osteoprotegerin/biosynthesis , Osteoprotegerin/genetics , RANK Ligand/biosynthesis , RANK Ligand/genetics , Statistics, Nonparametric , Titanium
9.
Journal of Korean Medical Science ; : 985-991, 2010.
Article in English | WPRIM | ID: wpr-105352

ABSTRACT

The prevailing model of osteology is that bones constantly undergo a remodeling process, and that the differentiation and functions of osteoblasts are partially regulated by leptin through different central hypothalamic pathways. The finding that bone remodeling is regulated by leptin suggested possible endocrinal effects of bones on energy metabolism. Recently, a reciprocal relationship between bones and energy metabolism was determined whereby leptin influences osteoblast functions and, in turn, the osteoblast-derived protein osteocalcin influences energy metabolism. The metabolic effects of bones are caused by the release of osteocalcin into the circulation in an uncarboxylated form due to incomplete gamma-carboxylation. In this regard, the Esp gene encoding osteotesticular protein tyrosine phosphatase is particularly interesting because it may regulate gamma-carboxylation of osteocalcin. Novel metabolic roles of osteocalcin have been identified, including increased insulin secretion and sensitivity, increased energy expenditure, fat mass reduction, and mitochondrial proliferation and functional enhancement. To date, only a positive correlation between osteocalcin and energy metabolism in humans has been detected, leaving causal effects unresolved. Further research topics include: identification of the osteocalcin receptor; the nature of osteocalcin regulation in other pathways regulating metabolism; crosstalk between nutrition, osteocalcin, and energy metabolism; and potential applications in the treatment of metabolic diseases.


Subject(s)
Humans , Bone Remodeling/physiology , Bone and Bones/metabolism , Energy Metabolism , Leptin/metabolism , Osteocalcin/genetics
10.
Biocell ; 33(1): 39-47, Apr. 2009. ilus
Article in English | LILACS | ID: lil-595028

ABSTRACT

Progenitor cells play an important biological role in tooth and bone formation, and previous analyses during bone and dentine induction have indicated that they may be a good alternative for tissue engineering. Thus, to clarify the influence of the microenvironment on protein and gene expression, MDPC-23 cells (mouse dental papilla cell line) and KUSA/A1 cells (bone marrow stromal cell line) were used, both in vitro cell culture and in intra-abdominal diffusion chambers implanted in 4-week-old male immunodefficient mice (SCID mice). Our results indicate that KUSA/A1 cells differentiated into osteoblast-like cells and induced bone tissue inside the chamber, whereas, MDPC-23 showed odontoblast-like characteristics but with a low ability to induce dentin formation. This study shows that MDPC-23 cells are especial cel ls, which possess morphological and functional characteristics of odontoblast-like cells expressing dentin sialophosphoprotein in vivo. In contrast, dentin sialophosphoprotein gene and protein expression was not detected in both cell lines in vitro. The intra-abdominal diffusion chamber appears as an interesting experimental model for studying phenotypic expression of dental pulp cells in vivo.


Subject(s)
Male , Animals , Mice , Collagen Type I/biosynthesis , Collagen Type I/genetics , Odontoblasts/cytology , Odontoblasts/metabolism , Bone Regeneration/physiology , Bone Regeneration/genetics , Sialoglycoproteins/biosynthesis , Sialoglycoproteins/genetics , Bone and Bones/cytology , Bone and Bones/metabolism , Mice, SCID , Osteocalcin/biosynthesis , Osteocalcin/genetics , Osteonectin/biosynthesis , Osteonectin/genetics , Osteopontin/biosynthesis , Osteopontin/genetics
11.
Yonsei Medical Journal ; : 375-379, 2009.
Article in English | WPRIM | ID: wpr-110999

ABSTRACT

PURPOSE: The objective of this study was to determine the phenotypic characterization of ligamentum flavum cells from patients with ossification of the ligamentum flavum (OLF). MATERIALS AND METHODS: Ligamentum flavum tissues were harvested from OLF and non-OLF patients during surgery. OLF and non-OLF cells were isolated from explant cultures. Cultured cells were analyzed using immunofluorescence staining and reverse transcription-polymerase chain reaction. RESULTS: OLF cells exhibited various appearances compared with the typical fibroblast-like morphology of non-OLF cells. Expressions of collagen type I and collagen type III were observed in OLF and non-OLF cells. OLF cells uniquely expressed osteocalcin, which is a marker for osteoblasts, and collagen type II which is a marker for chondrocytes, whereas they were negative in non-OLF cells. CONCLUSION: These findings indicate that OLF cells have phenotypic characterization of osteoblasts and chondrocytes which could play a role in the pathophysiology of OLF.


Subject(s)
Adolescent , Adult , Aged , Female , Humans , Male , Middle Aged , Young Adult , Cells, Cultured , Collagen Type I/genetics , Collagen Type II/genetics , Collagen Type VI/genetics , Ligamentum Flavum/metabolism , Microscopy, Fluorescence , Ossification, Heterotopic/metabolism , Osteocalcin/genetics , Reverse Transcriptase Polymerase Chain Reaction
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