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Basic Cell Biology 5th Edition

31 October 2026 - 00:00

OVERVIEW

Name

Basic Cell Biology 5th Edition

Caption

Build a solid foundation in cell biology and pursue advanced paths in life sciences, clinical biology, biotechnology, or medicine!

Application Deadline

2026-10-31

CIVIS Hub

Health


Field of studies related to the course

Medicine and Health





General description

The programme aims to establish a sustainable, multidisciplinary professional network of teaching scientists with shared interests in life sciences and medicine. It seeks to develop personal contacts between project members to facilitate joint dissemination and exploitation of teaching and learning results and applications for other collaborative projects. 

The BIP's purpose is to provide students with a strong foundation in fundamental cell biology and a solid base for further studies in the life sciences, clinical biology, biotechnology, and medicine. Specific objectives include creating stable human resources in life sciences by providing experience, skills, and competencies through effective learning. 

The course also aims to improve students' English skills, favouring their integration and future development within the scientific community and the CIVIS alliance.

Main topics addressed during the course

The virtual mobility module covers the program’s theoretical part from November to January and combines face-to-face meetings with asynchronous online sessions. 

The syllabus is divided into three knowledge blocks: 

  1. Prokaryotic versus Eukaryotic Cells: Cytoplasm, Membranes, Cytoskeleton, 
  2. Energy conversion: Mitochondria, Chloroplast 
  3. Organelles and the Secretory Pathway: Endoplasmic Reticulum, Golgi Apparatus, Endocytosis, Vesicle Traffic 
  4. Nucleus Organization and Cell Cycle: Chromosomes, Mitosis, Meiosis, Cell Cycle, Mechanisms of Cellular Death

Learning outcomes

Students will acquire knowledge of Cell Biology by establishing an interactive framework. The main learning objective is to comprehensively understand the structure and function of the cell and its organelles and familiarize with different basic techniques used in Cell Biology. At the end of this course, the students should be able to:

  • know and understand cell morphology, ultrastructure, function, cell cycle, and proliferation;
  • understand some of the technologies currently used in research in cellular biology;
  • work collaboratively, share responsibility/tasks, work in multidisciplinary teams;
  • clearly and effectively communicate scientific results.- Generate new scientific ideas, promote creativity and initiative;
  • read and solve problems;
  • self-evaluate and recognize the need for continuous personal improvement;
  • feel the need for continuous improvement and continuous learning, independently updating own knowledge;
  • search, analyse, interpret, evaluate information.

Editors

David TOUZOT

Summary

This program aims to provide students with a strong foundation in fundamental cell biology and a solid base for further studies in the life sciences, clinical biology, biotechnology, and medicine. 

PRACTICAL DETAILS

Academic Year

2026/2027


Open to

Bachelor's





Hosting university

Universidad Autónoma de Madrid





Partner universities

Aix-Marseille Université





 

University of Bucharest





 

Université libre de Bruxelles





 

Universidad Autónoma de Madrid





Course language

English





Language level required

B2


Duration of the course (hours)

169 hours

ECTS credits

6

PHYSICAL MOBILITY

Physical Part starting date

2027-06-28

Physical Part closing date

2027-07-02

Course location

Madrid, Spain

Physical Part Description

The physical mobility part will take place between 28 June - 2 July 2027 in Madrid, Spain. 

Students will be divided into teams to investigate the differentiation of an immortalized adipocyte cell line. Each team, supervised by a teacher, will investigate different aspects of the differentiation process:

1. Analyzing Adipocyte differentiation - two teams (A and B) 

  • team A: Differentiation visualization by lipid droplet staining. Microscopy, conventional and fluorescent. 
  • team B. Differentiation Marker Expression – Perilipin expression through differentiation. Western Blot; Immunohistochemistry 

2. Analyzing Organellar Subcellular localization - team A: Organelle observation with transfected fluorescent markers. Microscopy. Subcellular fractionation and Western blot. 

3. Cell cycle; Apoptosis, necrosis. Vital Colorant Staining. Western blot.

The last day and a half will be devoted to summarizing and interpreting their results and preparing a presentation for the last day. Each team will explain the results in an open discussion, and all questions and doubts will be solved.

VIRTUAL COMPONENT

Virtual Part starting date

2027-02-09

Virtual Part closing date

2027-04-29

Virtual Part Description

The virtual module will take place between 09 February -  29 April 2027. The online sessions will last 2 hours/ each and take place between 17:00 - 19:00 CET. 

There will be 20 sessions: 4 asynchronous + 16 synchronous, in average 2 sessions per week, plus an introductory session (week 0)

Week 0

  • Before the start of the topic: previous knowledge assesment - team formation test
  • Basic Cell Biology presentation

Week 1

  • Introduction to Cell Biology (Sychronous)
  • Prokaryotic vs Eukaryotic Cells; Cytoplasm & Cytosol (Asychronous)

Week 2

  • Plasma Membrane & Extracellular Matrix (Sychronous)
  • Plasma Membrane structure & transport; Cytoskeleton 1 (Sychronous)

Week 3

  • Cytoskeleton 2 (Sychronous)
  • Mitochondria (Sychronous)

Week 4

  • Chloroplasts (Sychronous)
  • Introduction to membranous systems (Asychronous)

Week 5

  • Endoplasmic reticulum 1 (Sychronous)
  • Endoplasmic reticulum 2 (Sychronous)
  • Golgi Apparatus and Endocytosis (Asychronous)

Week 6

  • Golgi Apparatus and Endocytosis (Sychronous)
  • Membranes & Vesicle Traffic(Sychronous)
  • 18 / 26
  • Interphase nucleus (Asychronous)

Week 7

  • Cell cycle (Sychronous)
  • Mitosis/ Meiosis 1 (Sychronous)

Week 8

  • Mitosis/ Meiosis 2 (Sychronous)
  • Cell cycle signals and control 1 (Sychronous)

Week 9

  • Cell cycle signals and control 2 (Sychronous)
  • Aging & Cell Death (Sychronous)

ASSESSMENT

Course assessment

Students will be evaluated according to:

For the virtual component:

  • active contribution and assistance during the teaching process (20%);
  • performance on activities and results on homework and classwork in teams or individually (50%);
  • final exam containing multiple-choice, problems and essay (30%).

For the physical mobility evaluation:

  • participation and performance during hands-on activities (70%);
  • oral presentation of the project conducted in teams (30%).

REQUIREMENTS

Academic pre-requisites for applicants

Basic cell biology is mandatory in the first courses of most life sciences and medicine-related degrees. So, no previous prerequisite studies are needed besides enrolling in the first or second year on one of these degrees in any of the participant CIVIS partners.


To be eligible for your selected CIVIS programme, you must be a fully enrolled student at your CIVIS home university at the time you will be undertaking the programme. Applications for this course are only available for the 11 CIVIS member universities in Europe.

SELECTION PROCESS

Application requirements

Motivation Letter





 

Level of english (According to CEFR)





Evaluation Criteria

We intend to select students with the best motivation to participate in this course and the best abilities to communicate with teachers and peers in each institution. 

Hence, participating students will be selected according to several criteria, which will include knowledge of English, the applicant’s motivation expressed by a motivation letter, and an interview.

ABOUT THE LECTURERS

About the lecturer(s)

The trainers - professors and scientists with extensive expertise in:

  • neuroscience, biochemistry (Mar Perez, UAM)
  • embryology, diabetes (Laurence Ladriere, ULB), 
  • cancer biology (Sylvie Thuault, AMU), 
  • developmental biology, biochemistry (Juan Jose Arredondo), 
  • electrophysiology, neuropathology (Rivera Claudio) 
  • tumoral biology and electrophysiology (Dana Cucu and Florentina Piciu). 

All the trainers are cell biology experts and have long teaching experience. 

CONTACT

Coordinator

Juan Jose Arredondo Lamas

Coordinator email

juan.arredondo@uam.es