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1.
Biomater Sci ; 8(11): 3173-3185, 2020 Jun 07.
Artigo em Inglês | MEDLINE | ID: mdl-32367084

RESUMO

The development of three-dimensional conductive scaffolds is vital to support the adhesion, proliferation and myocardial differentiation of stem cells in cardiac tissue engineering. Herein, we describe a facile approach for preparing a poly(3,4-ethylenedioxythiophene)/alginate (PEDOT/Alg) porous scaffold with a wide range of desirable properties. In the PEDOT/Alg scaffold, chemically crosslinked alginate networks are formed using adipic acid hydrazide as the crosslinker, and PEDOT is synthesized in situ in the alginate matrix simultaneously. PEDOT exists in the alginate matrix as particles and its morphology can be modulated by adjusting the ratio of PEDOT/alginate. The results also show that the swelling properties, degradation behaviors, mechanical strength and conductivity of the PEDOT/Alg scaffold can be controlled via adjusting the PEDOT/alginate ratio. The introduction of PEDOT can overcome the brittle nature of the pure alginate scaffold. Moreover, the PEDOT/Alg scaffold exhibits excellent conductivity (as high as 6 × 10-2 S cm-1). The introduction of PEDOT improves the protein absorption capacity of the alginate scaffold. To explore its potential application in cardiac tissue engineering, brown adipose-derived stem cells (BADSCs) are seeded in the prepared PEDOT/Alg porous scaffold. The results suggest that the PEDOT/Alg porous scaffold can support the attachment and proliferation of BADSCs. Moreover, it is beneficial for the cardiomyogenic differentiation of BADSCs, especially under electrical stimulation. Overall, we conclude that the PEDOT/Alg porous scaffold may represent an ideal platform to modulate the biological behaviors of BADSCs.


Assuntos
Tecido Adiposo Marrom/citologia , Alginatos/química , Compostos Bicíclicos Heterocíclicos com Pontes/química , Polímeros/química , Células-Tronco/fisiologia , Alicerces Teciduais , Adsorção , Diferenciação Celular , Proliferação de Células , Condutividade Elétrica , Estimulação Elétrica , Microscopia Eletrônica de Varredura , Miocárdio , Porosidade , Proteínas/química , Células-Tronco/ultraestrutura
2.
Biomaterials ; 157: 149-160, 2018 03.
Artigo em Inglês | MEDLINE | ID: mdl-29272722

RESUMO

Brown adipose derived stem cells (BADSCs) have become a promising stem cell treatment candidate for myocardial infarction because of their efficiently spontaneous differentiation capacity towards cardiomyocytes. The lack of existing cell passage protocols motivates us to develop a neotype 3D cell expansion technique for BADSCs. In this study, "clickable" zwitterionic starch based hydrogels are developed using methacrylate modified sulfobetaine derived starch with dithiol-functionalized poly (ethylene glycol) as crosslinker via the "thiol-ene" Michael addition reaction. Moreover, CGRGDS peptide is immobilized into the hydrogel via a similar "clickable" approach. Their Young's moduli range from 22.28 to 74.81 kPa depending on the concentration of precursor solutions. Excellent anti-fouling property is also presented owing to the introduction of zwitterionic moieties. BADSCs are homogeneously encapsulated in the hydrogels and then routinely cultured for 10 days. Results suggest a capacious cell proliferation and the extent increases with either the decrease of mechanical strength or the introduction of CGRGDS. More excitingly, the cell "stemness" is well maintained during this period and the expanded cells released from the hydrogels well keep the efficiently spontaneous cardiomyogenic differentiation capacity. Therefore, it is suggested that zwitterionic starch based hydrogel is able for the expansion and "stemness " maintenance of BADSCs.


Assuntos
Tecido Adiposo Marrom/citologia , Materiais Biocompatíveis/farmacologia , Diferenciação Celular/efeitos dos fármacos , Hidrogel de Polietilenoglicol-Dimetacrilato/farmacologia , Amido/química , Células-Tronco/citologia , Engenharia Tecidual/métodos , Tecido Adiposo Marrom/efeitos dos fármacos , Animais , Materiais Biocompatíveis/química , Proliferação de Células/efeitos dos fármacos , Células Cultivadas , Hidrogel de Polietilenoglicol-Dimetacrilato/química , Teste de Materiais , Oligopeptídeos/química , Ratos , Ratos Sprague-Dawley , Células-Tronco/efeitos dos fármacos
3.
Int J Nanomedicine ; 11: 269-83, 2016.
Artigo em Inglês | MEDLINE | ID: mdl-26848263

RESUMO

Zero-dimensional fullerenes can modulate the biological behavior of a variety of cell lines. However, the effects and molecular mechanisms of proliferation and cardiomyogenic differentiation in brown adipose-derived stem cells (BADSCs) are still unclear. In this study, we report the initial biological effects of fullerene-C60 on BADSCs at different concentrations. Results suggest that fullerene-C60 has no cytotoxic effects on BADSCs even at a concentration of 100 µg/mL. Fullerene-C60 improves the MAPK expression level and stem cell survival, proliferation, and cardiomyogenesis. Further, we found that the fullerene-C60 modulates cardiomyogenic differentiation. Fullerene-C60 improves the expression of cardiomyocyte-specific proteins (cTnT and α-sarcomeric actinin). At elevated concentration, fullerene-C60 reduces the incidence of diminished spontaneous cardiac differentiation of BADSCs with time. At the genetic level, fullerene-C60 (5 µg/mL) also improves the expression of cTnT. In addition, fullerene-C60 promotes the formation of gap junction among cells. These findings have important implications for clinical application of fullerenes in the treatment of myocardial infarction.


Assuntos
Tecido Adiposo Marrom/citologia , Diferenciação Celular/efeitos dos fármacos , Proliferação de Células/efeitos dos fármacos , Fulerenos/farmacologia , Coração/efeitos dos fármacos , Sistema de Sinalização das MAP Quinases/efeitos dos fármacos , Células-Tronco/citologia , Actinina/genética , Actinina/metabolismo , Tecido Adiposo Marrom/efeitos dos fármacos , Tecido Adiposo Marrom/metabolismo , Animais , Biomarcadores/análise , Western Blotting , Células Cultivadas , Fulerenos/administração & dosagem , Regulação da Expressão Gênica/efeitos dos fármacos , Coração/fisiologia , Técnicas Imunoenzimáticas , Infarto do Miocárdio/tratamento farmacológico , Infarto do Miocárdio/metabolismo , Infarto do Miocárdio/patologia , RNA Mensageiro/genética , Ratos , Ratos Sprague-Dawley , Reação em Cadeia da Polimerase em Tempo Real , Reação em Cadeia da Polimerase Via Transcriptase Reversa , Sarcômeros/genética , Sarcômeros/metabolismo , Células-Tronco/metabolismo , Engenharia Tecidual/métodos , Troponina T/genética , Troponina T/metabolismo
4.
Adv Healthc Mater ; 5(4): 474-88, 2016 Feb 18.
Artigo em Inglês | MEDLINE | ID: mdl-26626543

RESUMO

Cardiac tissue engineering is an effective method to treat the myocardial infarction. However, the lack of electrical conductivity of biomaterials limits their applications. In this work, a homogeneous electronically conductive double network (HEDN) hydrogel via one-step facile strategy is developed, consisting of a rigid/hydrophobic/conductive network of chemical crosslinked poly(thiophene-3-acetic acid) (PTAA) and a flexible/hydrophilic/biocompatible network of photo-crosslinking methacrylated aminated gelatin (MAAG). Results suggest that the swelling, mechanical, and conductive properties of HEDN hydrogel can be modulated via adjusting the ratio of PTAA network to MAAG network. HEDN hydrogel has Young's moduli ranging from 22.7 to 493.1 kPa, and its conductivity (≈10(-4) S cm(-1)) falls in the range of reported conductivities for native myocardium tissue. To assess their biological activity, the brown adipose-derived stem cells (BADSCs) are seeded on the surface of HEDN hydrogel with or without electrical stimulation. Our data show that the HEDN hydrogel can support the survival and proliferation of BADSCs, and that it can improve the cardiac differentiation efficiency of BADSCs and upregulate the expression of connexin 43. Moreover, electrical stimulation can further improve this effect. Overall, it is concluded that the HEDN hydrogel may represent an ideal scaffold for cardiac tissue engineering.


Assuntos
Condutividade Elétrica , Hidrogéis/química , Miócitos Cardíacos/citologia , Células-Tronco/citologia , Engenharia Tecidual , Acetatos/química , Tecido Adiposo Marrom/citologia , Animais , Materiais Biocompatíveis/química , Diferenciação Celular , Proliferação de Células , Sobrevivência Celular/efeitos dos fármacos , Conexina 43/genética , Conexina 43/metabolismo , Módulo de Elasticidade , Gelatina/química , Camundongos , Tiofenos/química , Alicerces Teciduais/química , Regulação para Cima
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