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1.
J Mol Cell Cardiol ; 115: 39-50, 2018 02.
Artigo em Inglês | MEDLINE | ID: mdl-29291395

RESUMO

The adult human heart contains a subpopulation of highly proliferative cells. The role of ErbB receptors in these cells has not been studied. From human left ventricular (LV) epicardial biopsies, we isolated highly proliferative cells (eHiPC) to characterize the cell surface expression and function of ErbB receptors in the regulation of cell proliferation and phenotype. We found that human LV eHiPC express all four ErbB receptor subtypes. However, the expression of ErbB receptors varied widely among eHiPC isolated from different subjects. eHiPC with higher cell surface expression of ErbB2 reproduced the phenotype of endothelial cells and were characterized by endothelial cell-like functional properties. We also found that EGF/ErbB1 induces VEGFR2 expression, while ligands for both ErbB1 and ErbB3/4 induce expression of Tie2. The number of CD31posCD45neg endothelial cells is higher in LV biopsies from subjects with high ErbB2 (ErbB2high) eHiPC compared to low ErbB2 (ErbB2low) eHiPC. These findings have important implications for potential strategies to increase the efficacy of cell-based revascularization of the injured heart, through promotion of an endothelial phenotype in cardiac highly proliferative cells.


Assuntos
Células Endoteliais/citologia , Células Endoteliais/metabolismo , Ventrículos do Coração/citologia , Pericárdio/citologia , Receptor ErbB-2/metabolismo , Animais , Biomarcadores/metabolismo , Biópsia , Contagem de Células , Membrana Celular/metabolismo , Permeabilidade da Membrana Celular , Proliferação de Células , Fator de Crescimento Epidérmico/metabolismo , Feminino , Humanos , Ligantes , Masculino , Pessoa de Meia-Idade , Fenótipo , Ratos , Transdução de Sinais , Regulação para Cima
2.
Cell Mol Bioeng ; 9(1): 107-115, 2016 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-28042345

RESUMO

Despite recent advances in biomimetic substrates, there is still only limited understanding of how the extracellular matrix (ECM) functions in the maintenance of cardiomyocyte (CM) phenotype. In this study, we designed electrospun substrates inspired by morphologic features of non-failing and failing human heart ECM, and examined how these substrates regulate phenotypes of adult and neonatal rat ventricular CMs (ARVM and NRVM, respectively). We found that poly(ε-caprolactone) fiber substrates designed to mimic the organized ECM of a non-failing human heart maintained healthy CM phenotype (evidenced by cell morphology, organized actin/myomesin bands and expression of ß-MYH7 and SCN5A.1 and SCN5A.2) compared to both failing heart ECM-mimetic substrates and tissue culture plates. Moreover, culture of ARVMs and NRVMs on aligned substrates showed differences in m- and z-line alignment; with ARVMs aligning parallel to the ECM fibers and the NRVMs aligning perpendicular to the fibers. The results provide new insight into cardiac tissue engineering by illustrating the importance models that mimic the cardiac ECM microenvironment in vitro.

3.
Cardiovasc Res ; 109(3): 358-73, 2016 Mar 01.
Artigo em Inglês | MEDLINE | ID: mdl-26692570

RESUMO

AIMS: Despite the observation that ErbB2 regulates sensitivity of the heart to doxorubicin or ErbB2-targeted cancer therapies, mechanisms that regulate ErbB2 expression and activity have not been studied. Since isoproterenol up-regulates ErbB2 in kidney and salivary glands and ß2AR and ErbB2 complex in brain and heart, we hypothesized that ß-adrenergic receptors (AR) modulate ErbB2 signalling status. METHODS AND RESULTS: ErbB2 transfection of HEK293 cells up-regulates ß2AR, and ß2AR transfection of HEK293 up-regulates ErbB2. Interestingly, cardiomyocytes isolated from myocyte-specific ErbB2-overexpressing (ErbB2(tg)) mice have amplified response to selective ß2-agonist zinterol, and right ventricular trabeculae baseline force generation is markedly reduced with ß2-antagonist ICI-118 551. Consistently, receptor binding assays and western blotting demonstrate that ß2ARs levels are markedly increased in ErbB2(tg) myocardium and reduced by EGFR/ErbB2 inhibitor, lapatinib. Intriguingly, acute treatment of mice with ß1- and ß2-AR agonist isoproterenol resulted in myocardial ErbB2 increase, while inhibition with either ß1- or ß2-AR antagonist did not completely prevent isoproterenol-induced ErbB2 expression. Furthermore, inhibition of ErbB2 kinase predisposed mice hearts to injury from chronic isoproterenol treatment while significantly reducing isoproterenol-induced pAKT and pERK levels, suggesting ErbB2's role in transactivation in the heart. CONCLUSION: Our studies show that myocardial ErbB2 and ßAR signalling are linked in a feedback loop with ßAR activation leading to increased ErbB2 expression and activity, and increased ErbB2 activity regulating ß2AR expression. Most importantly, ErbB2 kinase activity is crucial for cardioprotection in the setting of ß-adrenergic stress, suggesting that this mechanism is important in the pathophysiology and treatment of cardiomyopathy induced by ErbB2-targeting antineoplastic drugs.


Assuntos
Isoproterenol/farmacologia , Miocárdio/metabolismo , Miócitos Cardíacos/metabolismo , Receptor ErbB-2/metabolismo , Transdução de Sinais/efeitos dos fármacos , Agonistas Adrenérgicos beta/farmacologia , Animais , AMP Cíclico/metabolismo , Feminino , Ventrículos do Coração/efeitos dos fármacos , Ventrículos do Coração/metabolismo , Camundongos , Miócitos Cardíacos/efeitos dos fármacos , Receptor ErbB-2/genética , Receptores Adrenérgicos beta 1/metabolismo , Transdução de Sinais/fisiologia
4.
J Biomech ; 48(14): 3890-6, 2015 Nov 05.
Artigo em Inglês | MEDLINE | ID: mdl-26476764

RESUMO

Primary dilated cardiomyopathy (DCM) is a non-ischemic heart disease with impaired pumping function of the heart. In this study, we used human induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) from a healthy volunteer and a primary DCM patient to investigate the impact of DCM on iPSC-CMs׳ responses to different types of anisotropic strain. A bioreactor system was established that generates cardiac-mimetic forces of 150 kPa at 5% anisotropic cyclic strain and 1 Hz frequency. After confirming cardiac induction of the iPSCs, it was determined that fibronectin was favorable to other extracellular matrix protein coatings (gelatin, laminin, vitronectin) in terms of viable cell area and density, and was therefore selected as the coating for further study. When iPSC-CMs were exposed to three strain conditions (no strain, 5% static strain, and 5% cyclic strain), the static strain elicited significant induction of sarcomere components in comparison to other strain conditions. However, this induction occurred only in iPSC-CMs from a healthy volunteer ("control iPSC-CMs"), not in iPSC-CMs from the DCM patient ("DCM iPSC-CMs"). The donor type also significantly influenced gene expressions of cell-cell and cell-matrix interaction markers in response to the strain conditions. Gene expression of connexin-43 (cell-cell interaction) had a higher fold change in healthy versus diseased iPSC-CMs under static and cyclic strain, as opposed to integrins α-5 and α-10 (cell-matrix interaction). In summary, our iPSC-CM-based study to model the effects of different strain conditions suggests that intrinsic, genetic-based differences in the cardiomyocyte responses to strain may influence disease manifestation in vivo.


Assuntos
Cardiomiopatia Dilatada/fisiopatologia , Miócitos Cardíacos/fisiologia , Biomarcadores/metabolismo , Miosinas Cardíacas/metabolismo , Técnicas de Cultura de Células , Diferenciação Celular , Matriz Extracelular/fisiologia , Humanos , Células-Tronco Pluripotentes Induzidas/fisiologia , Cadeias Leves de Miosina/metabolismo , Sarcômeros/fisiologia , Estresse Mecânico , Troponina T/metabolismo
5.
J Mater Chem B ; 2(41): 7109-7113, 2014 Nov 07.
Artigo em Inglês | MEDLINE | ID: mdl-25343029

RESUMO

A reactive oxygen species (ROS)-degradable scaffold is fabricated by crosslinking biocompatible, hydrolytically-degradable poly(ε-caprolactone) (PCL) with a ROS-degradable oligoproline peptide, KP7K. The ROS-mediated degradability triggers favorable host responses of the scaffold including improved cell infiltration and angiogenesis in vivo, indicating its unique advantages for tissue engineering applications.

6.
Nanoscale ; 5(10): 4171-6, 2013 May 21.
Artigo em Inglês | MEDLINE | ID: mdl-23592029

RESUMO

Graphene is a novel material whose application in biomedical sciences has only begun to be realized. In the present study, we have employed three-dimensional graphene foams as culture substrates for human mesenchymal stem cells and provide evidence that these materials can maintain stem cell viability and promote osteogenic differentiation.


Assuntos
Diferenciação Celular , Grafite/química , Células-Tronco Mesenquimais/metabolismo , Osteogênese , Técnicas de Cultura de Células/métodos , Sobrevivência Celular , Células Cultivadas , Humanos , Células-Tronco Mesenquimais/ultraestrutura
7.
Nanomedicine (Lond) ; 8(11): 1763-76, 2013 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-23530764

RESUMO

AIM: To evaluate the efficacy of electrically conductive, biocompatible composite scaffolds in modulating the cardiomyogenic differentiation of human mesenchymal stem cells (hMSCs). MATERIALS & METHODS: Electrospun scaffolds of poly(ε-caprolactone) with or without carbon nanotubes were developed to promote the in vitro cardiac differentiation of hMSCs. RESULTS: Results indicate that hMSC differentiation can be enhanced by either culturing in electrically conductive, carbon nanotube-containing composite scaffolds without electrical stimulation in the presence of 5-azacytidine, or extrinsic electrical stimulation in nonconductive poly(ε-caprolactone) scaffolds without carbon nanotube and azacytidine. CONCLUSION: This study suggests a first step towards improving hMSC cardiomyogenic differentiation for local delivery into the infarcted myocardium.


Assuntos
Células-Tronco Mesenquimais/citologia , Nanotubos de Carbono/química , Poliésteres/química , Alicerces Teciduais/química , Diferenciação Celular/fisiologia , Células Cultivadas , Humanos , Engenharia Tecidual/métodos
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