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1.
Braz. j. biol ; 83: 1-7, 2023. ilus, tab, graf
Article in English | LILACS, VETINDEX | ID: biblio-1468942

ABSTRACT

Mesenchymal stem cells (MSCs) have great potential for application in cell therapy and tissue engineering procedures because of their plasticity and capacity to differentiate into different cell types. Given the widespread use of MSCs, it is necessary to better understand some properties related to osteogenic differentiation, particularly those linked to biomaterials used in tissue engineering. The aim of this study was to develop an analysis method using FT-Raman spectroscopy for the identification and quantification of biochemical components present in conditioned culture media derived from MSCs with or without induction of osteogenic differentiation. All experiments were performed between passages 3 and 5. For this analysis, MSCs were cultured on scaffolds composed of bioresorbable poly(hydroxybutyrate co-hydroxyvalerate) (PHBV) and poly(ε-caprolactone) (PCL) polymers. MSCs (GIBCO®) were inoculated onto the pure polymers and 75:25 PHBV/PCL blend (dense and porous samples). The plate itself was used as control. The cells were maintained in DMEM (with low glucose) containing GlutaMAX® and 10% FBS at 37ºC with 5% CO2 for 21 days. The conditioned culture media were collected and analyzed to probe for functional groups, as well as possible molecular variations associated with cell differentiation and metabolism. The method permitted to identify functional groups of specific molecules in the conditioned medium such as cholesterol, phosphatidylinositol, triglycerides, beta-subunit polypeptides, amide regions and hydrogen bonds of proteins, in addition to DNA expression. In the present study, FT-Raman spectroscopy exhibited limited resolution since different molecules can express similar or even the same stretching vibrations, a fact that makes analysis difficult. There were no variations in the readings between the samples studied. In conclusion, FT-Raman spectroscopy did not meet expectations under the conditions studied.


As células-tronco mesenquimais (MSCs) possuem grande potencial para aplicação em procedimentos terapêuticos ligados a terapia celular e engenharia de tecidos, considerando-se a plasticidade e capacidade de formação em diferentes tipos celulares por elas. Dada a abrangência no emprego das MSCs, há necessidade de se compreender melhor algumas propriedades relacionadas à diferenciação osteogênica, particularmente liga à biomateriais usados em engenharia de tecidos. Este projeto objetiva o desenvolvimento de uma metodologia de análise empregando-se a FT-Raman para identificação e quantificação de componentes bioquímicos presentes em meios de cultura condicionados por MSCs, com ou sem indução à diferenciação osteogênica. Todos os experimentos foram realizados entre as passagens 3 e 5. Para essas análises, as MSCs foram cultivadas sobre arcabouços de polímeros biorreabsorvíveis de poli (hidroxibutirato-co-hidroxivalerato) (PHBV) e o poli (ε-caprolactona) (PCL). As MSCs (GIBCO®) foram inoculadas nos polímeros puros e na mistura 75:25 de PHBV / PCL (amostras densas e porosas). As células foram mantidas em DMEM (com baixa glicose) contendo GlutaMAX® e 10% de SFB a 37oC com 5% de CO2 por 21 dias. A própria placa foi usada como controle. Os meios de cultura condicionados foram coletados e analisadas em FT-Raman para sondagem de grupos funcionais, bem como possíveis variações moleculares associadas com a diferenciação e metabolismo celular. Foi possível discernir grupos funcionais de moléculas específicas no meio condicionado, como colesterol, fosfatidilinositol, triglicerídeos, forma Beta de polipeptídeos, regiões de amida e ligações de hidrogênio de proteínas, além da expressão de DNA. Na presente avaliação, a FT-Raman apresentou como uma técnica de resolução limitada, uma vez que modos vibracionais de estiramento próximos ou mesmo iguais podem ser expressos por moléculas diferente, dificultando a [...].


Subject(s)
Animals , Rats , Spectrum Analysis, Raman/methods , Mesenchymal Stem Cells , Biochemical Phenomena
2.
Braz. j. med. biol. res ; 38(11): 1623-1632, Nov. 2005. ilus
Article in English | LILACS | ID: lil-414714

ABSTRACT

Vero cells, a cell line established from the kidney of the African green monkey (Cercopithecus aethiops), were cultured in F-10 Ham medium supplemented with 10 percent fetal calf serum at 37°C on membranes of poly(L-lactic acid) (PLLA), poly(hydroxybutyrate-co-hydroxyvalerate) (PHBV) and their blends in different proportions (100/0, 60/40, 50/50, 40/60, and 0/100). The present study evaluated morphology of cells grown on different polymeric substrates after 24 h of culture by scanning electron microscopy. Cell adhesion was also analyzed after 2 h of inoculation. For cell growth evaluation, the cells were maintained in culture for 48, 120, 240, and 360 h. For cytochemical study, the cells were cultured for 120 or 240 h, fixed, processed for histological analysis, and stained with Toluidine blue, pH 4.0, and Xylidine ponceau, pH 2.5. Our results showed that cell adhesion was better when 60/40 and 50/50 blends were used although cells were able to grow and proliferate on all blends tested. When using PLLA/PHBV (50/50) slightly flattened cells were observed on porous and smooth areas. PLLA/PHBV (40/60) blends presented flattened cells on smooth areas. PLLA/PHBV (0/100), which presented no pores, also supported spreading cells interconnected by thin filaments. Histological sections showed that cells grew as a confluent monolayer on different substrates. Cytochemical analysis showed basophilic cells, indicating a large amount of RNA and proteins. Hence, we detected changes in cell morphology induced by alterations in blend proportions. This suggests that the cells changed their differentiation pattern when on various PLLA/PHBV blend surfaces.


Subject(s)
Animals , Biocompatible Materials , Vero Cells/cytology , Hydroxybutyrates , Lactic Acid , Membranes, Artificial , Polymers , Cell Culture Techniques/methods , Cell Adhesion/physiology , Chlorocebus aethiops , Vero Cells/ultrastructure , Histocytochemistry , Microscopy, Electron, Scanning , Porosity
3.
Cytobios ; 99(392): 159-71, 1999.
Article in English | MEDLINE | ID: mdl-10581707

ABSTRACT

Vero cells were cultured without foetal calf serum (FCS), with 10% FCS, 10% FCS plus dexamethasone (DEX) or 20% FCS for 48, 120 or 240 h. The cells were analysed by a growth curve, cytochemical and immunocytochemical (anti-cellular fibronectin or anti-collagen IV) methods. In 48 h Vero cells produced fibronectin and collagen IV. All samples showed basophilic cytoplasm indicating high protein synthesis. The growth of metachromatic multicellular masses was induced by DEX. The Vero cells produced collagen IV with 10 and 20% FCS, and also cells which did not have this activity (without FCS or with 10% FCS + DEX). The multicellular masses induced by DEX were rich in fibronectin. DEX induced differentiation and the expression of collagen IV and fibronectin in Vero cells. This work was carried out to evaluate the possible therapeutic effects of glucocorticoids as inducers of cell differentiation.


Subject(s)
Cell Differentiation/drug effects , Cell Division/drug effects , Dexamethasone/pharmacology , Serum Albumin, Bovine/pharmacology , Animals , Cattle , Chlorocebus aethiops , Collagen/biosynthesis , Culture Media , Culture Media, Serum-Free , Fibronectins/biosynthesis , Immunohistochemistry , Vero Cells
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