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Molecular and cellular biology I

Code: PDCCV_4     Acronym: PDCCV_4

Keywords
Classification Keyword
OFICIAL Medicine

Instance: 2015/2016 - 1S Ícone do Moodle

Active? Yes
Responsible unit: Physiology and Cardiothoracic Surgery Department
Course/CS Responsible: Doctoral Programm in Cardiovascular Sciences

Cycles of Study/Courses

Acronym No. of Students Study Plan Curricular Years Credits UCN Credits ECTS Contact hours Total Time
PDCCV 11 Ciências Cardiovasculares_13 1 - 3 13,5 81

Teaching Staff - Responsibilities

Teacher Responsibility
Inês Maria Falcão Sousa Pires Marques

Teaching - Hours

Theoretical and practical : 0,29
Laboratory Practice: 0,43
Others: 0,25
Type Teacher Classes Hour
Theoretical and practical Totals 1 0,29
Inês Maria Falcão Sousa Pires Marques 0,15
Paula Alexandra Costa Martins 0,14
Laboratory Practice Totals 2 0,86
Paula Alexandra Costa Martins 0,56
Inês Maria Falcão Sousa Pires Marques 0,30
Others Totals 1 0,25
Paula Alexandra Costa Martins 0,11
Inês Maria Falcão Sousa Pires Marques 0,14
Mais informaçõesLast updated on 2016-01-04.

Fields changed: Components of Evaluation and Contact Hours, Obtenção de frequência

Teaching language

Suitable for English-speaking students

Objectives

The contents in this course include various methodologies ranging from good laboratory practice to histology and cell culture. These tools will allow students to identify and interpret myocardial gene expression changes underlying cardiovascular diseases.

Learning outcomes and competences

Students are expect to acquire knowledge and develop basic skills for carrying out scientific projects in the cardiovascular area that require the use of molecular and cellular techniques. This includes to:

  1. Learn and follow good laboratorial practices.
  2. Understand the basic principles underlying a proper collection, preservation and processing of biological samples for molecular or cellular analysis.
  3. Plan and execute at least two techniques of molecular and cellular biology and cellular, among the following: processing and analysing DNA, mRNA, protein, cell cultures or histology.
  4. Develop an experimental protocol using molecular and cell biology techniques.
  5. Solve scientific problems.
  6. Critically evaluate scientific papers of the area.
  7. Analyse and present scientific results arising from the used techniques.

Working method

Presencial

Program

Lectures:

1.DNA and mRNA quantification and analysis.

2.Protein quantification and analysis.

3.Genomic, transcriptomics and proteomics.

4.Histology.

5.Cell culture techniques.

 

Practical classes:

1.Quantification of RNA and proteins levels.

2.Histology and cell culture.

 

E-learning:

1.Critical analysis of results derived from molecular analysis techniques.

Mandatory literature

Sambrook, J., & Russel, D. W. ; Molecular Cloning, a laboratory manual third edition., 2001
Freshney, R. I. ; Culture of specific cell types. , John Wiley & Sons, Inc., 2005
Pasterkamp, G., & de Kleijn, D. (Eds.). ; Cardiovascular research: new technologies, methods, and applications. , Springer Science & Business Media, 2007

Teaching methods and learning activities

Total contact hours: 13.5 hours

Theoretic-practical: 4 hours (including 1 hour for evaluation)

Tutorials: 3.5 hours

Laboratory Practices: 6 hours

Total work hours: 81 hours.

Evaluation Type

Distributed evaluation with final exam

Assessment Components

Designation Weight (%)
Exame 75,00
Trabalho laboratorial 25,00
Total: 100,00

Eligibility for exams

It is also obligatiory to assist to 2/3 of total classes

Calculation formula of final grade

Continuous assessment based on students-teachers contact/interaction during the hours of contact (25% of the final classification). A final written exam will weight 75% of the final grade. It is also obligatiory to pass the E-learning module.
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