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Summary Lecture 18 -- Human Development

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This is a summary of lecture 18 of Human Development. With all of my summaries for this course I passed it with an 8,2!

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  • January 28, 2021
  • 4
  • 2018/2019
  • Summary

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By: abigailmurray • 2 year ago

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Human Development – Lecture 18 – The Skeleton and muscle
system
Epiblast migrate to form intraembryonic mesoderm (FGF-8 controls this cell
specification) and endoderm.
Ectoderm – mesoderm – endoderm

Ectoderm give rise to neural tube (brain and spinal cord), epidermis, hair, nails, lens
of eye, skin glands.
Mesoderm give rise to axial, paraxial, intermediate, lateral mesoderm and
cardiovascular systems, dermis
Endoderm give rise to digestive, respiratory, bladder and thyroid liver and pancrease

Lateral mesoderm; splanchnic, somatic and extra-embryonic. Limbs, lining body
wall
o Somatic/pariental mesoderm + ectoderm; lateral & ventral body wall; boven
o Splanic/visceral mesoderm + endoderm; gut wall; onder

Intermediate mesoderm; kidney, urogenital tract

Paraxial mesoderm; forms only in medial-cranial part
o Head
o Somite;
o Sclerotome
o Myotome (muscle)
▪ Dicht bij neural tube; epimere (epaxial myotome) (dorsal side)
▪ Ver weg neural tube; hypomere (hypaxial myotome) (lateral &
ventral body wall)
o Syndotome (spinal vertebrae, skull basis)
o Dermatome (skin)
▪ Dicht bij neural tube; pars epaxialis
▪ Ver weg neural tube; pars hypaxialis
o Endothelial cells

First the mesoderm is epithelial, forming a lumen.
Ventral and medial become mesenchymal, they migrate
around neural tube & notochord = sclerotome
Dermomyotome is formed first. Dorsomedial (epimere) and
ventrolateral (hypomere) become muscle cells.
Responsible for this?
o Dorsomedial; medium BMP4 and high Wnt (MYF5)
o Ventrolateral; high BMP4 and medium Wnt → become
sclerotome (MYOD)
Upregulation FGF and Shh lead to upregulation Chorin &
noggin which leads to decrease BMP4
With BMP4; NOT all tissues become neural plate
Without BMP4; all tissues become neural plate

BMP4 and SHH induces (veroorzaken) expression of other factors → PAX genes
that determine fate (lot) of neural cells. PAX genes also important in dermatome
development

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