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Molecular signaling
Viñals’s lab

DESCRIPTION

Our research is focused on the study of the implication of intracellular signaling cascades driving to pathological situations in cancer and vascular diseases.

The molecular signaling cascades that take place inside the cells are essential to respond to changes in their environment or to alter their homeostasis, for example, at the level of cell proliferation, movement, growth or metabolism. Understanding how these mechanisms of signal transduction work can explain how biological processes are controlled in a normal physiological context, but also, the alterations that take place in many pathologies. Our group investigates this in two pathological contexts: The first is ovarian epithelial cancer, where we study the pathways involved in metastasis and the mechanisms of resistance to therapies. A second context is a rare vascular disease, HHTs, in which, in collaboration with the group led by Toni Riera (Hospital de Bellvitge), we study which signaling pathways are altered in patients with mutations that cause this disease, and how treat them with new drugs.

Group members

Francesc Viñals

Group leaders

Group Leader

Agnès Figueras

Researchers

Núria Gendrau Sanclemente

PhD student

Ferran Medina Jover

PhD student

José Luís Rocamora

PhD student

Tianyu Dai

PhD student

Publications

Phosphorylated map kinase (ERK1, ERK2) expression is associated with early tau deposition in neurones and glial cells, but not with increased nuclear DNA vulnerability and cell death, in Alzheimer disease, Pick’s disease, progressive supranuclear palsy and corticobasal degeneration

17 de April de 2001/in Viñals's lab/by miguel

Brain Pathol. 2001 Apr;11(2):144-58. doi: 10.1111/j.1750-3639.2001.tb00387.x. ABSTRACT Abnormal tau phosphorylation and deposition in neurones and glial cells is one of the major features in taupathies. The present study examines the involvement of the Ras/MEK/ERK pathway of tau phosphorylation in Alzheimer disease (AD), Pick’s disease (PiD), progressive supranuclear palsy (PSP) and corticobasal degeneration (CBD), by Western […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2001-04-17 10:00:002001-04-17 10:00:00Phosphorylated map kinase (ERK1, ERK2) expression is associated with early tau deposition in neurones and glial cells, but not with increased nuclear DNA vulnerability and cell death, in Alzheimer disease, Pick’s disease, progressive supranuclear palsy and corticobasal degeneration

Growth factor-stimulated protein synthesis is inhibited by sodium orthovanadate

12 de April de 2001/in Viñals's lab/by miguel

Eur J Biochem. 2001 Apr;268(8):2308-14. doi: 10.1046/j.1432-1327.2001.02108.x. ABSTRACT The study of intracellular signaling pathways has been aided by the use of sodium orthovanadate, a cell-permeable inhibitor of tyrosine phosphatases. However, long-term addition of sodium orthovanadate is often cytotoxic. In this study we demonstrate that the growth factor-mediated increase in the rate of protein synthesis was […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2001-04-12 10:00:002001-04-12 10:00:00Growth factor-stimulated protein synthesis is inhibited by sodium orthovanadate

Signaling angiogenesis via p42/p44 MAP kinase and hypoxia

29 de September de 2000/in Viñals's lab/by miguel

Biochem Pharmacol. 2000 Oct 15;60(8):1171-8. doi: 10.1016/s0006-2952(00)00423-8. ABSTRACT Angiogenesis is associated with a number of pathological situations. In this study, we have focused our attention on the role of p42/p44 MAP (mitogen-activated protein) kinases and hypoxia in the control of angiogenesis. We demonstrate that p42/p44 MAP kinases play a pivotal role in angiogenesis by exerting […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2000-09-29 10:00:002000-09-29 10:00:00Signaling angiogenesis via p42/p44 MAP kinase and hypoxia

Signaling angiogenesis via p42/p44 MAP kinase cascade

24 de June de 2000/in Viñals's lab/by miguel

Ann N Y Acad Sci. 2000 May;902:187-200. doi: 10.1111/j.1749-6632.2000.tb06313.x. ABSTRACT Vascular endothelial growth factor (VEGF), a potent agonist secreted by virtually all cells, controls migration and division of vascular endothelial cells. Disruption of one VEGF allele in mice has revealed a dramatic lethal effect in early embryogenesis, suggesting a key role in vasculogenesis. We analyzed […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel2000-06-24 10:00:002000-06-24 10:00:00Signaling angiogenesis via p42/p44 MAP kinase cascade

GLUT1 glucose transporter gene transcription is repressed by Sp3. Evidence for a regulatory role of Sp3 during myogenesis

11 de November de 1999/in Viñals's lab/by miguel

J Mol Biol. 1999 Nov 19;294(1):103-19. doi: 10.1006/jmbi.1999.3216. ABSTRACT GLUT1 glucose transporters are highly expressed in proliferating and transformed cells as well as in tissues during fetal life. However, the mechanisms that regulate GLUT1 gene expression remain largely unknown. Here, we demonstrate that Sp3 proteins bind to the GLUT1 proximal promoter gene and inhibit transcriptional […]

https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg 0 0 miguel https://procure-oncology.com/wp-content/uploads/2023/10/Procure-icoRecurso-1@2x-100.jpg miguel1999-11-11 11:00:001999-11-11 11:00:00GLUT1 glucose transporter gene transcription is repressed by Sp3. Evidence for a regulatory role of Sp3 during myogenesis
Page 22 of 23«‹20212223›

Research Projects

– Ref: PID2020-117815RB-I00 Title: El perfil metabólico como una oportunidad terapéutica en el cáncer epitelial de ovario. implicaciones en metástasis y resistencia a los tratamientos. DGICYT, MINECO. 2021-2024. 217.800 euros. Principal Investigator: Francesc Viñals Canals, IDIBELL.

– Ref: SAF2017-85869-R Title: Mecanismos de señalización y control metabólico implicados en la diseminación y quimioresistencia en cáncer epitelial de ovario. DGICYT, MINECO. 2018-2020. 181.500 euros. Principal Investigator: Francesc Viñals Canals, IDIBELL.

Collaborations

Peter B. Vermeulen, University of Antwerp and GZA Hospitals, Belgium
Artur Mezheyeuski, VHIO, Barcelona
Pnina Brodt, Mc Gill University, Montreal, Canada
and Liver Metastases Research Network members

Viñals's lab
Program Against Cancer Therapeutic Resistance

CONTACT US

Campus IDIBELL
(L’Hospitalet del Llobregat)
Hospital Duran i Reynals, Gran Via 199,
L’Hospitalet del Llobregat,
Barcelona 08908
Tel. +34 93 260 7952

Campus IGTP-IJC
(Badalona)
Campus Can Ruti – IGTP – Building Muntanya,
Rd. Can Ruti, Camí de les escoles s/n,
Badalona, Barcelona 08916
Tel. +34 93 554 3069

Campus IDIBGI
(Girona)
Parc Hospitalari Martí i Julià de Salt, Dr. Castany s/n,
Salt, Girona 17190
Tel. +34 872 987 087

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