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Organizado por Maria Jimenez Movilla, Pilar Coy, Sebastián Cánovas

Epiconcept Training School in Epigenetics in Reproductive Biology

  • Fechas:

    Del 18/04/16 al 21/04/16

  • Lugar:

    Facultad de Veterinaria, Murcia, España (mapa)

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Descripción ↑ subir

Epiconcept Training School in Epigenetics in Reproductive Biology, Murcia, Spain
18 April - 21 April 2016

The Epiconcept Training School in Epigenetics in Reproductive Biology is intended to introduce students to the fundamentals of epigenetic and provide the necessary skills that allow students to understand the epigenetics factors involved in the biology of reproduction and their analysis techniques. Epigenetics and their study represent a very novel scientific field (“hot topic”) and constantly revised therefore the contents and competencies must be updated every year.

The course is held on “Campus de Espinardo”, University of Murcia, which is just a 15 minute tramride from the city center. Theoretical and practical sessions will use different facilities from the Veterinary Schools as well as from the Central Services for Research Support located on Campus.

Speakers and course directors expect that students enjoy the “world of the epigenetic” as they have, and it is useful for the development of their careers and/or research.

EPICONCEPT COST-action has provided financial support for the Training School on Epigenetics in Reproductive Biology in Murcia, therefore, 19 students from 19 countries have been selected to enjoy the lectures/practical training. Due to the high number of applicants we have decided to open the lectures for every non-selected applicant interested in attending. Unfortunately, the practical sessions must keep restricted to those applicants which have got the COST grant.

Lugar ↑ subir

Programa ↑ subir

Abr 2016
  • 07:30 - 08:00
    Welcome and introduction to the course

    Welcome to the course

  • 08:00 - 10:00
    What is epigenetics and how can epigenetics be studied?

    Dr. Ann Van Soom. Univ of Ghent, Belgium

  • 10:00 - 12:00
    Epigenetics mechanisms in reproductive biology

    Dr Sebastian Cánovas. Dept of Physiology. University of Murcia

  • 13:30 - 15:30
    DNA methylation profiling in sigles cells: Challenges and opportunities.

    Dr. Gavin Kelsey. The Babraham Institute/ University of Cambridge

Abr 2016
  • 07:00 - 08:00
    Lab session. Step I (restricted to COST-student)

    Cell lysis and bisulfite treatment.

  • 08:00 - 10:00
    Understanding how DNA methylation is patterned in the gametes

    Dr. Gavin Kelsey. The Babraham Institute/ University of Cambridge

  • 10:00 - 11:30
    Lab session. Step II. (restricted to COST-student)

    Bisulfite treatment. First strand synthesis.

  • 13:30 - 14:30
    Lab session. Step III (restricted to COST-student)

    Exo I treatment

Abr 2016
  • 07:00 - 08:00
    Lab session. Step IV (restricted to COST-student)

    Reaction clean up: beads purification

  • 08:00 - 09:00
    Epigenetics control in embryonic cell lines.

    Dr. Susana Chuva Sousa Lopes. Dept of Anatomy and Embryology, Leiden University Medical Center

  • 09:00 - 10:00
    Epigenetics re-programming through the germ cell development and gametogenesis.

    Dr. Susana Chuva Sousa Lopes. Dept of Anatomy and Embryology, Leiden University Medical Center

  • 10:00 - 12:00
    Impact of DNA methylation in human testicular tumors of germinal cells

    Dr. Sebastian Cánovas. Dept of Physiology, University of Murcia

  • 13:30 - 16:30
    Lab session. Step V (restricted to COST-student)

    Biotin capture, second strand synthesis and PCR amplification.

Abr 2016
  • 07:00 - 08:30
    Lab session. Step VI (restricted to COST-student)

    Library purification

  • 08:30 - 09:30
    Impact of epigenetics in embryonic development and adaptation

    Dr. Alfonso Gutierrez Adan. Dept of Animal Reproduction INIA-Madrid

  • 10:30 - 12:00
    The theory of bisulphite methylation data processing and analysis

    Dr. Simon Andrews. The Babraham Institute

  • 13:30 - 15:30
    Lab session. (restricted to COST-student)

    Differential methylation analysis from bisulphite data.

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