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1.
EBioMedicine ; 8: 83-95, 2016 Jun.
Article de Anglais | MEDLINE | ID: mdl-27428421

RÉSUMÉ

Parkinson's disease is a common neurodegenerative disorder, which is due to the loss of dopaminergic neurons in the substantia nigra pars compacta (SNpc) and for which no definitive cure is currently available. Cellular functions in mouse and human tissues can be restored after fusion of bone marrow (BM)-derived cells with a variety of somatic cells. Here, after transplantation of hematopoietic stem and progenitor cells (HSPCs) in the SNpc of two different mouse models of Parkinson's disease, we significantly ameliorated the dopaminergic neuron loss and function. We show fusion of transplanted HSPCs with neurons and with glial cells in the ventral midbrain of Parkinson's disease mice. Interestingly, the hybrids can undergo reprogramming in vivo and survived up to 4weeks after transplantation, while acquiring features of mature astroglia. These newly generated astroglia produced Wnt1 and were essential for functional rescue of the dopaminergic neurons. Our data suggest that glial-derived hybrids produced upon fusion of transplanted HSPCs in the SNpc can rescue the Parkinson's disease phenotype via a niche-mediated effect, and can be exploited as an efficient cell-therapy approach.


Sujet(s)
Neurones dopaminergiques/métabolisme , Transplantation de cellules souches hématopoïétiques , Cellules souches hématopoïétiques/cytologie , Cellules souches hématopoïétiques/métabolisme , Maladie de Parkinson/métabolisme , Animaux , Numération cellulaire , Fusion cellulaire , Survie cellulaire , Reprogrammation cellulaire , Modèles animaux de maladie humaine , Dopamine/métabolisme , Neurones dopaminergiques/anatomopathologie , Cellules hybrides , Mâle , Souris , Névroglie/métabolisme , Maladie de Parkinson/anatomopathologie , Maladie de Parkinson/physiopathologie , Maladie de Parkinson/thérapie , Substantia nigra/métabolisme , Substantia nigra/anatomopathologie , Voie de signalisation Wnt
2.
J Cell Mol Med ; 19(8): 1975-85, 2015 Aug.
Article de Anglais | MEDLINE | ID: mdl-25991381

RÉSUMÉ

Myocardial infarction (MI) is a major condition causing heart failure (HF). After MI, the renin angiotensin system (RAS) and its signalling octapeptide angiotensin II (Ang II) interferes with cardiac injury/repair via the AT1 and AT2 receptors (AT1R, AT2R). Our study aimed at deciphering the mechanisms underlying the link between RAS and cellular components of the immune response relying on a rodent model of HF as well as HF patients. Flow cytometric analyses showed an increase in the expression of CD4(+) AT2R(+) cells in the rat heart and spleen post-infarction, but a reduction in the peripheral blood. The latter was also observed in HF patients. The frequency of rat CD4(+) AT2R(+) T cells in circulating blood, post-infarcted heart and spleen represented 3.8 ± 0.4%, 23.2 ± 2.7% and 22.6 ± 2.6% of the CD4(+) cells. CD4(+) AT2R(+) T cells within blood CD4(+) T cells were reduced from 2.6 ± 0.2% in healthy controls to 1.7 ± 0.4% in patients. Moreover, we characterized CD4(+) AT2R(+) T cells which expressed regulatory FoxP3, secreted interleukin-10 and other inflammatory-related cytokines. Furthermore, intramyocardial injection of MI-induced splenic CD4(+) AT2R(+) T cells into recipient rats with MI led to reduced infarct size and improved cardiac performance. We defined CD4(+) AT2R(+) cells as a T cell subset improving heart function post-MI corresponding with reduced infarction size in a rat MI-model. Our results indicate CD4(+) AT2R(+) cells as a promising population for regenerative therapy, via myocardial transplantation, pharmacological AT2R activation or a combination thereof.


Sujet(s)
Lymphocytes T CD4+/immunologie , Tests de la fonction cardiaque , Infarctus du myocarde/immunologie , Infarctus du myocarde/physiopathologie , Récepteur de type 2 à l'angiotensine-II/métabolisme , Remodelage ventriculaire , Animaux , Cardiotoniques/métabolisme , Défaillance cardiaque/sang , Défaillance cardiaque/complications , Défaillance cardiaque/immunologie , Défaillance cardiaque/physiopathologie , Humains , Immunomodulation , Interleukine-10/sang , Infarctus du myocarde/sang , Infarctus du myocarde/complications , Ischémie myocardique/sang , Ischémie myocardique/complications , Ischémie myocardique/immunologie , Ischémie myocardique/physiopathologie , Rat Wistar , Facteur de nécrose tumorale alpha/sang
3.
J Immunol ; 185(10): 6286-93, 2010 Nov 15.
Article de Anglais | MEDLINE | ID: mdl-20935205

RÉSUMÉ

Emerging evidence suggests a cardioprotective role of the angiotensin AT2R, albeit the underlying cellular mechanisms are not well understood. We aimed in this article to elucidate a potential role of cardiac angiotensin AT2R in regulating cellular immune response to ischemic heart injury. Seven days after myocardial infarction in rats, double-immunofluorescence staining showed that AT2R was detected in a fraction of CD8(+) T cells infiltrating in the peri-infarct myocardium. We developed a method that allowed the isolation of myocardial infiltrating CD8(+)AT2R(+) T cells using modified MACS, and further characterization and purification with flow cytometry. Although the CD8(+)AT2R(-) T cells exhibited potent cytotoxicity to both adult and fetal cardiomyocytes (CMs), the CD8(+)AT2R(+) T cells were noncytotoxic to these CMs. The CD8(+)AT2R(+) T cells were characterized by upregulated IL-10 and downregulated IL-2 and INF-γ expression when compared with CD8(+)AT2R(-) T cells. We further showed that IL-10 gene expression was enhanced in CD8(+) T cells on in vitro AT2R stimulation. Importantly, in vivo AT2R activation engendered an increment of CD8(+)AT2R(+) T cells and IL-10 production in the ischemic myocardium. In addition, intramyocardial transplantation of CD8(+)AT2R(+) T cells (versus CD8(+)AT2R(-)) led to reduced ischemic heart injury. Moreover, the CD8(+)AT2R(+) T cell population was also demonstrated in human peripheral blood. Thus, we have defined the cardioprotective CD8(+)AT2R(+) T cell population, which increases during ischemic heart injury and contributes to maintaining CM viability and providing IL-10, hence revealing an AT2R-mediated cellular mechanism in modulating adaptive immune response in the heart.


Sujet(s)
Lymphocytes T CD8+/immunologie , Interleukine-10/biosynthèse , Infarctus du myocarde/immunologie , Myocarde/immunologie , Récepteur de type 2 à l'angiotensine-II/immunologie , Sous-populations de lymphocytes T/métabolisme , Animaux , Lymphocytes T CD8+/métabolisme , Séparation cellulaire/méthodes , Cytométrie en flux/méthodes , Technique d'immunofluorescence , Expression des gènes , Interleukine-10/immunologie , Mâle , Infarctus du myocarde/métabolisme , Ischémie myocardique/immunologie , Ischémie myocardique/métabolisme , Myocarde/métabolisme , Myocarde/anatomopathologie , Rats , Rat Wistar , Récepteur de type 2 à l'angiotensine-II/métabolisme , RT-PCR , Sous-populations de lymphocytes T/immunologie
4.
Stem Cells ; 27(10): 2488-97, 2009 Oct.
Article de Anglais | MEDLINE | ID: mdl-19591228

RÉSUMÉ

The expression pattern of angiotensin AT2 receptors with predominance during fetal life and upregulation under pathological conditions during tissue injury/repair process suggests that AT2 receptors may exert an important action in injury/repair adaptive mechanisms. Less is known about AT2 receptors in acute ischemia-induced cardiac injury. We aimed here to elucidate the role of AT2 receptors after acute myocardial infarction. Double immunofluorescence staining showed that cardiac AT2 receptors were mainly detected in clusters of small c-kit+ cells accumulating in peri-infarct zone and c-kit+AT2+ cells increased in response to acute cardiac injury. Further, we isolated cardiac c-kit+AT2+ cell population by modified magnetic activated cell sorting and fluorescence activated cell sorting. These cardiac c-kit+AT2+ cells, represented approximately 0.19% of total cardiac cells in infarcted heart, were characterized by upregulated transcription factors implicated in cardiogenic differentiation (Gata-4, Notch-2, Nkx-2.5) and genes required for self-renewal (Tbx-3, c-Myc, Akt). When adult cardiomyocytes and cardiac c-kit+AT2+ cells isolated from infarcted rat hearts were cocultured, AT2 receptor stimulation in vitro inhibited apoptosis of these cocultured cardiomyocytes. Moreover, in vivo AT2 receptor stimulation led to an increased c-kit+AT2+ cell population in the infarcted myocardium and reduced apoptosis of cardiomyocytes in rats with acute myocardial infarction. These data suggest that cardiac c-kit+AT2+ cell population exists and increases after acute ischemic injury. AT2 receptor activation supports performance of cardiomyocytes, thus contributing to cardioprotection via cardiac c-kit+AT2+ cell population.


Sujet(s)
Ischémie myocardique/métabolisme , Myocytes cardiaques/métabolisme , Protéines proto-oncogènes c-kit/métabolisme , Récepteur de type 2 à l'angiotensine-II/métabolisme , Régénération/physiologie , Cellules souches/métabolisme , Angiotensines/métabolisme , Angiotensines/pharmacologie , Animaux , Cardiotoniques/métabolisme , Cardiotoniques/pharmacologie , Différenciation cellulaire/physiologie , Prolifération cellulaire/effets des médicaments et des substances chimiques , Cellules cultivées , Cytoprotection/effets des médicaments et des substances chimiques , Cytoprotection/physiologie , Cytométrie en flux , Technique d'immunofluorescence , Mâle , Ischémie myocardique/physiopathologie , Myocytes cardiaques/cytologie , Rats , Rat Wistar , Transduction du signal/physiologie , Cellules souches/cytologie , Facteurs de transcription/métabolisme
5.
J Mol Cell Cardiol ; 47(1): 66-75, 2009 Jul.
Article de Anglais | MEDLINE | ID: mdl-19341743

RÉSUMÉ

Despite previous studies demonstrating a cardioprotective role of estradiol via its estrogen receptor (ER)alpha, the underlying mechanisms remain unclear. Here we aimed to define ERalpha-involved mechanisms against cardiac injury. Seven days after myocardial infarction in male rats, cardiac ERalpha was upregulated in post-infarct cardiac c-kit+ cells accumulating in periinfarct myocardium as shown by Western blotting and immunofluorescence staining. Further, we isolated post-infarct cardiac c-kit+ cell population by modified magnetic activated cell sorting (MACS) and fluorescence activated cell sorting (FACS), and confirmed predominant ERalpha expression in this post-infarct cardiac c-kit+ cell population by real-time PCR. These post-infarct cardiac c-kit+ cells, characterized by upregulated transcription factors implicated in cardiogenic differentiation (GATA-4, Notch-2) and genes required for self-renewal (Tbx3, Akt), maintained a stable phenotype in vitro for more than 3 months. ERalpha stimulation supported proliferation but prevented differentiation of undifferentiated myoblast cells. When adult myocytes isolated from infarcted rat hearts were co-cultured with post-infarct cardiac c-kit+ cells, ERalpha stimulation inhibited apoptosis and enhanced survival of these myocytes. These findings suggest that cardiac ERalpha supports survival of cardiomyocytes through post-infarct cardiac c-kit+ cells, which may contribute to cardioprotection against cardiac injury.


Sujet(s)
Récepteur alpha des oestrogènes/physiologie , Infarctus du myocarde/métabolisme , Myocytes cardiaques/métabolisme , Protéines proto-oncogènes c-kit/métabolisme , Animaux , Différenciation cellulaire/effets des médicaments et des substances chimiques , Lignée cellulaire , Prolifération cellulaire/effets des médicaments et des substances chimiques , Techniques de coculture , Oestradiol/pharmacologie , Récepteur alpha des oestrogènes/agonistes , Récepteur alpha des oestrogènes/métabolisme , Cytométrie en flux , Technique d'immunofluorescence , Immunotransfert , Mâle , Myoblastes/cytologie , Myoblastes/effets des médicaments et des substances chimiques , Myoblastes/métabolisme , Myocytes cardiaques/cytologie , Myocytes cardiaques/effets des médicaments et des substances chimiques , Phénols , Réaction de polymérisation en chaîne , Pyrazoles/pharmacologie , Rats , Rat Wistar
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