Geschreven door studenten die geslaagd zijn Direct beschikbaar na je betaling Online lezen of als PDF Verkeerd document? Gratis ruilen 4,6 TrustPilot
logo-home
Document preview thumbnail
Voorbeeld 4 van de 67 pagina's
Samenvatting

Samenvatting - Developmental Biology Chapter 5-7 (E08C3b)

Document preview thumbnail
Voorbeeld 4 van de 67 pagina's

Dit is een samenvatting van hoofdstukken 5-7 van het vak Concepts of Developmental Biology in het 3e jaar biomedische wetenschappen (jaarvak). Dit zijn mijn eigen notities & informatie van op de slides. Veel succes! - chapter 5: gastrulation - chapter 6: mesoderm & neuroectoderm patterning - chapter 7: somitogenesis & limb development

Voorbeeld van de inhoud

DEVELOPMENTAL BIOLOGY
Chapter 5: Gastrulation

Introduction to the process of gastrulation
Gastrulation is responsible for embryo organization → during this process some of the
embryonic ectoderm will transform into mesoderm & endoderm (and the mesoderm
will differentiate into subtypes of mesoderm) → this is the exact moment the embryo
exists out of 3 germ layers.

When does gastrulation happen in the development of the embryo?
- Fertilization
- Cells start to cleave → formation of the blastula (= hallow ball with a clump of
cells) → embryo consists of 2 germ layers → endoderm & ectoderm.
- Gastrulation happens → formation of the gastrula → cells start to migrate & form
the third germ layer → mesoderm.

Together with gastrulation and the formation of mesoderm, we also have the formation of
the body axis & a primitive body plan.
Cells are given new positions & neighbors Gastrulation results in the formation of:
(migration – cells come in contact with different - Ectoderm
cells and other signaling molecules) & this is - Mesoderm
combined with the transformation of epithelial - Endoderm
cells into mesenchymal cells (EMT) and
endoderm cells. + formation of body axis, …

- Folding happens → neurulation (formation of the nervous system) →
gastrointestinal track starts to form.
- Organogenesis makes the organs start to develop.

Phylotypic stage
Across all different organisms, there is a moment/stage in their development where they
all look alike → we compare them all to study gastrulation.

The other stages (like cleavage, organogenesis, …) are different between the species.

,→ Gastrulation stops when the organism gets the form of a shrimp.

The 3 embryonic germ layers
Every single cell in our body is derived from one of these layers.

Ectoderm (outside) - Epidermis
→ apical-basal polarity + columnar cells - Nervous system
- Neural crest cells
Mesoderm (the middle) - Skeleto-muscular system
→ loose + apolar cells - Connective tissue
- Blood/cardiovascular system
- Urogenital system
Endoderm (inside) - Gastro-intestinal system &
→ thight + flattened cells associated organs (lungs, liver,
pancreas, …)
- Formation of a primitive gut
(archenteron)

When the three germ layers first form during gastrulation, all 3 are primarily made
of epithelial cells:
• Tightly connected with adhesive cell junctions
• Organized in sheets
• Polarized (top and bottom side → the bottom is attached to a membrane by
integrins).

The mesoderm undergoes an epithelial-to-mesenchymal transition (EMT):
• Epithelial cells lose tight connections

, • They become mesenchymal cells (loose & migratory cells)

Epithelial-to-mesenchymal transition (EMT) & MET
Ecto-, endo- & mesoderm are first made up of epithelial cells → EMT is the process of
transforming these epithelial cells into mesenchym cells to further distinguish the
mesoderm → this happens during the activation of gastrulation in specific places of the




embryo.

- Starts with an epithelial layer of ectoderm → settled on a basal lamina.
- The epithelial cells are connected to the lamina with integrins + the cells are
connected to each other with E-cadherin, Actin, Catenins, …
= apical-basal polarity
- Paracriene factors are released → changes in transcriptomes of the cells →
triggers the formation of mesenchymal cells → cell adhesions are broken & the
basal lamina gets dissolved.
- Mesenchymal cells escape the basal lamina & can start to migrate (→
reorganization of the cytoskeleton → cells can operate as individual units).

Triggers for EMT
• Transcription factors that trigger EMT:
o ZEB-family (ZEB1/2)
o SNAIL and/or SLUG
o TWIST1
• TF are ACTIVE → repression of epithelial genes (E-cadherin, Occludines,
Claudines, …) & activation of mesenchymal genes (N-cadherin, Vimentin,
Fibronectin, …).
= cells become migratory mesenchymal cells
• TF are INACTIVE → epithelial genes remain expressed & cell junctions remain
intact.
= cells stay epithelial

, Cells don’t always switch fully → they often go through partial EMT (= they have both
epithelial and mesenchymal features. This happens in:
• Embryonic development
• Wound healing
• Cancer metastasis




Triggers for MET
• Loss of EMT-inducing signals (EMT is mostly triggered by pathways like Notch,
Wnt, …) → when these are turned off, epitelial genes are no longer inhibited.
• Activation of epithelial gene programs to restore tight junctions, cell-cell
adhesion, …

Documentinformatie

Studie
Geüpload op
12 april 2026
Aantal pagina's
67
Geschreven in
2025/2026
Type
Samenvatting
$18.01

Verkeerd document? Gratis ruilen Binnen 14 dagen na aankoop en voor het downloaden kun je een ander document kiezen. Je kunt het bedrag gewoon opnieuw besteden.
Geschreven door studenten die geslaagd zijn
Direct beschikbaar na je betaling
Online lezen of als PDF

Seller avatar
leontienpauwels
4.0
(1)
Verkocht
5
Volgers
0
Items
13
Laatst verkocht
3 weken geleden



Waarom studenten kiezen voor Stuvia

Gemaakt door medestudenten, geverifieerd door reviews

Kwaliteit die je kunt vertrouwen: geschreven door studenten die slaagden en beoordeeld door anderen die dit document gebruikten.

Niet tevreden? Kies een ander document

Geen zorgen! Je kunt voor hetzelfde geld direct een ander document kiezen dat beter past bij wat je zoekt.

Betaal zoals je wilt, start meteen met leren

Geen abonnement, geen verplichtingen. Betaal zoals je gewend bent via iDeal of creditcard en download je PDF-document meteen.

Student with book image

“Gekocht, gedownload en geslaagd. Zo makkelijk kan het dus zijn.”

Alisha Student

Bezig met je bronvermelding?

Maak nauwkeurige citaten in APA, MLA en Harvard met onze gratis bronnengenerator.

Bezig met je bronvermelding?

Veelgestelde vragen