Alisson C Cardoso
State University of Campinas
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Publication
Featured researches published by Alisson C Cardoso.
PLOS Neglected Tropical Diseases | 2017
José Xavier-Neto; Murilo Carvalho; Bruno S. Pascoalino; Alisson C Cardoso; Ângela Maria Sousa Costa; Ana Helena Macedo Pereira; Luana Nunes Santos; Ângela Saito; Rafael Elias Marques; Juliana Helena Costa Smetana; Sílvio Roberto Consonni; Carla Letícia Bandeira; Vivian V. Costa; Marcio Chaim Bajgelman; Paulo Sergio Lopes de Oliveira; Marli Tenorio Cordeiro; Laura H.V.G. Gil; Bianca Alves Pauletti; Daniela C. Granato; Adriana Franco Paes Leme; Lucio H. Freitas-Junior; Carolina Borsoi Moraes Holanda de Freitas; Mauro M. Teixeira; Estela Bevilacqua; Kleber G. Franchini
The teratogenic mechanisms triggered by ZIKV are still obscure due to the lack of a suitable animal model. Here we present a mouse model of developmental disruption induced by ZIKV hematogenic infection. The model utilizes immunocompetent animals from wild-type FVB/NJ and C57BL/6J strains, providing a better analogy to the human condition than approaches involving immunodeficient, genetically modified animals, or direct ZIKV injection into the brain. When injected via the jugular vein into the blood of pregnant females harboring conceptuses from early gastrulation to organogenesis stages, akin to the human second and fifth week of pregnancy, ZIKV infects maternal tissues, placentas and embryos/fetuses. Early exposure to ZIKV at developmental day 5 (second week in humans) produced complex manifestations of anterior and posterior dysraphia and hydrocephalus, as well as severe malformations and delayed development in 10.5 days post-coitum (dpc) embryos. Exposure to the virus at 7.5–9.5 dpc induces intra-amniotic hemorrhage, widespread edema, and vascular rarefaction, often prominent in the cephalic region. At these stages, most affected embryos/fetuses displayed gross malformations and/or intrauterine growth restriction (IUGR), rather than isolated microcephaly. Disrupted conceptuses failed to achieve normal developmental landmarks and died in utero. Importantly, this is the only model so far to display dysraphia and hydrocephalus, the harbinger of microcephaly in humans, as well as arthrogryposis, a set of abnormal joint postures observed in the human setting. Late exposure to ZIKV at 12.5 dpc failed to produce noticeable malformations. We have thus characterized a developmental window of opportunity for ZIKV-induced teratogenesis encompassing early gastrulation, neurulation and early organogenesis stages. This should not, however, be interpreted as evidence for any safe developmental windows for ZIKV exposure. Late developmental abnormalities correlated with damage to the placenta, particularly to the labyrinthine layer, suggesting that circulatory changes are integral to the altered phenotypes.
PLOS ONE | 2009
Ana Helena Macedo Pereira; Carolina F.M.Z. Clemente; Alisson C Cardoso; Thais Holtz Theizen; Silvana A. Rocco; Carla C. Judice; Maria Carolina Zumstein Guido; Vinícius D. B. Pascoal; Iscia Lopes-Cendes; José Roberto Matos Souza; Kleber G. Franchini
Background The activation of the members of the myocyte enhancer factor-2 family (MEF2A, B, C and D) of transcription factors promotes cardiac hypertrophy and failure. However, the role of its individual components in the pathogenesis of cardiac hypertrophy remains unclear. Methodology/Principal Findings In this study, we investigated whether MEF2C plays a role in mediating the left ventricular hypertrophy by pressure overload in mice. The knockdown of myocardial MEF2C induced by specific small interfering RNA (siRNA) has been shown to attenuate hypertrophy, interstitial fibrosis and the rise of ANP levels in aortic banded mice. We detected that the depletion of MEF2C also results in lowered levels of both PGC-1α and mitochondrial DNA in the overloaded left ventricle, associated with enhanced AMP:ATP ratio. Additionally, MEF2C depletion was accompanied by defective activation of S6K in response to pressure overload. Treatment with the amino acid leucine stimulated S6K and suppressed the attenuation of left ventricular hypertrophy and fibrosis in the aforementioned aortic banded mice. Conclusion/Significance These findings represent new evidences that MEF2C depletion attenuates the hypertrophic responses to mechanical stress and highlight the potential of MEF2C to be a target for new therapies to cardiac hypertrophy and failure.
American Journal of Physiology-heart and Circulatory Physiology | 2011
Thais F. Tornatore; Ana Paula Dalla Costa; Carolina F.M.Z. Clemente; Carla C. Judice; Silvana A. Rocco; Vivian C. Calegari; Leandro Cardoso; Alisson C Cardoso; Anderson Gonçalves; Kleber G. Franchini
We studied the implication of focal adhesion kinase (FAK) in cardiac mitochondrial biogenesis induced by mechanical stress. Prolonged stretching (2-12 h) of neonatal rat ventricular myocytes (NRVM) upregulated the main components of mitochondrial transcription cascade [peroxisome proliferator-activated receptor coactivator-1 (PGC-1α), nuclear respiratory factor (NRF-1), and mitochondrial transcription factor A]. Concomitantly, prolonged stretching enhanced mitochondrial biogenesis [copy number of mitochondrial DNA (mtDNA), content of the subunit IV of cytochrome oxidase, and mitochondrial staining-green fluorescence intensity of Mitotracker green] and induced the hypertrophic growth (cell size and atrial natriuretic peptide transcripts) of NRVM. Furthermore, the stretching of NRVM enhanced phosphorylation, nuclear localization, and association of FAK with PGC-1α. Recombinant FAK COOH-terminal, but not the NH(2)-terminal or kinase domain, precipitated PGC-1α from nuclear extracts of NRVM. Depletion of FAK by RNA interference suppressed the upregulation of PGC-1α and NRF-1 and markedly attenuated the enhanced mitochondrial biogenesis and hypertrophic growth of stretched NRVM. In the context of energy metabolism, FAK depletion became manifest by a reduction of ATP levels in stretched NRVM. Complementary studies in adult mice left ventricle demonstrated that pressure overload upregulated PGC-1α, NRF-1, and mtDNA. In vivo FAK silencing transiently attenuated the upregulation of PGC-1α, NRF-1, and mtDNA, as well as the left ventricular hypertrophy induced by pressure overload. In conclusion, activation of FAK signaling seems to be important for conferring enhanced mitochondrial biogenesis coupled to the hypertrophic growth of cardiomyocytes in response to mechanical stress, via control of mitochondrial transcription cascade.
Nature Communications | 2014
Michelle B. M. Pereira; Aline Santos; Danieli Cristina Gonçalves; Alisson C Cardoso; Sílvio Roberto Consonni; Fabio C. Gozzo; Paulo Sergio Lopes de Oliveira; Ana Mendes Pereira; Alana dos Reis Figueiredo; Ana O. Tiroli-Cepeda; Carlos Ramos; André A. de Thomaz; Carlos L. Cesar; Kleber G. Franchini
Focal adhesion kinase (FAK) contributes to cellular homeostasis under stress conditions. Here we show that αB-crystallin interacts with and confers protection to FAK against calpain-mediated proteolysis in cardiomyocytes. A hydrophobic patch mapped between helices 1 and 4 of the FAK FAT domain was found to bind to the β4-β8 groove of αB-crystallin. Such an interaction requires FAK tyrosine 925 and is enhanced following its phosphorylation by Src, which occurs upon FAK stimulation. αB-crystallin silencing results in calpain-dependent FAK depletion and in the increased apoptosis of cardiomyocytes in response to mechanical stress. FAK overexpression protects cardiomyocytes depleted of αB-crystallin against the stretch-induced apoptosis. Consistently, load-induced apoptosis is blunted in the hearts from cardiac-specific FAK transgenic mice transiently depleted of αB-crystallin by RNA interference. These studies define a role for αB-crystallin in controlling FAK function and cardiomyocyte survival through the prevention of calpain-mediated degradation of FAK.
Nature Chemical Biology | 2012
Aline Santos; Deborah Schechtman; Alisson C Cardoso; Carolina F.M.Z. Clemente; Júlio C Silva; Mariana Fioramonte; Michelle B. M. Pereira; Talita M. Marin; Paulo Sergio Lopes de Oliveira; Ana Figueira; Saulo Henrique Pires de Oliveira; Iris L. Torriani; Fabio C. Gozzo; José Xavier Neto; Kleber G. Franchini
Focal adhesion kinase (FAK) regulates cellular processes that affect several aspects of development and disease. The FAK N-terminal FERM (4.1 protein-ezrin-radixin-moesin homology) domain, a compact clover-leaf structure, binds partner proteins and mediates intramolecular regulatory interactions. Combined chemical cross-linking coupled to MS, small-angle X-ray scattering, computational docking and mutational analyses showed that the FAK FERM domain has a molecular cleft (~998 Å(2)) that interacts with sarcomeric myosin, resulting in FAK inhibition. Accordingly, mutations in a unique short amino acid sequence of the FERM myosin cleft, FP-1, impaired the interaction with myosin and enhanced FAK activity in cardiomyocytes. An FP-1 decoy peptide selectively inhibited myosin interaction and increased FAK activity, promoting cardiomyocyte hypertrophy through activation of the AKT-mammalian target of rapamycin pathway. Our findings uncover an inhibitory interaction between the FAK FERM domain and sarcomeric myosin that presents potential opportunities to modulate the cardiac hypertrophic response through changes in FAK activity.
European Journal of Pharmacology | 2015
Elizângela S. Oliveira; Ana Helena Macedo Pereira; Alisson C Cardoso; Kleber G. Franchini; José Wilson Magalhães Bassani; Rosana A. Bassani
Although increase in heart rate is a crucial determinant for enhancement of cardiac output in the neonate, information on the chronotropic reactivity to catecholamines during postnatal development is scarce. The present study was aimed at investigating the role of β-adrenoceptor subtypes and catecholamine removal mechanisms in the adrenergic chronotropic response during the early post-natal period. Right atria isolated from immature (0-21 day old) and adult (4-6 month old) rats were used for determination of the responsiveness to agonists and quantitation of the transcripts of proteins involved in β-adrenergic signaling. The main results were: (a) the maximum response (Rmax) to norepinephrine increased with age, whereas sensitivity decreased; (b) age-dependent differences in sensitivity to norepinephrine were abolished by inhibition of the neuronal norepinephrine transporter; (c) Rmax to isoproterenol was similar in immature and adult atria, and depressed only in the former by β2-adrenoceptor blockade with ICI118,551; (d) neonatal atria showed greater β2-adrenoceptor mRNA levels, and more prominent positive chronotropic response to the β2- and β3-adrenoceptor agonists zinterol and YM178, respectively (nanomolar range); (e) in atria of immature rats, transcript levels of the extraneuronal monoamine transporter were lower, and its inhibition did not affect sensitivity to isoproterenol; and (f) reactivity to forskolin and 3-isobutyl-1-methylxanthine was not affected by age. The increased β2- and β3-adrenoceptor participation in the adrenergic chronotropic response, in addition to weaker catecholamine removal, may compensate for the immature cardiac innervation and the apparently reduced efficiency of β1-adrenoceptor signaling in the neonate, increasing the responsiveness to endogenous and exogenous β2-adrenoceptor agonists.
Structure | 2016
Alisson C Cardoso; Ana Helena Macedo Pereira; Andre Luis Berteli Ambrosio; Sílvio Roberto Consonni; Renata Rocha de Oliveira; Marcio C. Bajgelman; Sandra Martha Gomes Dias; Kleber G. Franchini
Toxicology Letters | 2017
Desirée Cigaran Schuck; Eduardo Pagani; Fernanda Luisa Basei; Talita M. Marin; Carla Abdo Brohem; Alisson C Cardoso; Márcio Lorencini
Circulation Research | 2014
Carlos Roberto Koscky Paier; Alisson C Cardoso; Tatiani L Brenneli; Rodrigo Vargas Honorato; Fabio C. Gozzo; Paulo Sergio Lopes de Oliveira; Kleber G. Franchini
Circulation Research | 2014
Aline Santos; Michelle B. M. Pereira; Danieli Cristina Gonçalves; Alisson C Cardoso; Sílvio Roberto Consonni; Fabio C. Gozzo; Paulo Sergio Lopes de Oliveira; Alana dos Reis Figueiredo; André A. de Thomaz; Carlos L. Cesar; Carlos H.I. Ramos; Kleber G. Franchini