Difference between revisions of "Nuclear Transplantation/Cloning - Anatomy & Physiology"

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<big><center>[[Reproductive System|'''BACK TO REPRODUCTIVE SYSTEM''']]</center></big>
 
 
<big><center>[[Reproductive_System#Reproductive_Technologies|'''BACK TO REPRODUCTIVE TECHNOLOGIES''']]</center></big>
 
 
 
 
* Commonly used in mice to propagate required characteristics.
 
* Commonly used in mice to propagate required characteristics.
 
* '''Embryonic stem cells''' are used as a source of '''totipotent nuclei''', which are capable of dividing into a range of new cells.
 
* '''Embryonic stem cells''' are used as a source of '''totipotent nuclei''', which are capable of dividing into a range of new cells.
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* The cell source ,capable of replication in culture, can be stored by freezing and is therefore 'immortal' and able to produce many identical individuals.
 
* The cell source ,capable of replication in culture, can be stored by freezing and is therefore 'immortal' and able to produce many identical individuals.
 
* Cloned individuals have a high percentage of developmental abnormalities.
 
* Cloned individuals have a high percentage of developmental abnormalities.
** Often associated with Arthritis and Joint problems.
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** Often associated with [[:Category:Arthritis|Arthritis]] and [[:Category:Joints - Pathology|Joint problems]].
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[[Category:Reproductive Technologies]]
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[[Category:Bullet Points]]

Latest revision as of 13:49, 5 July 2012

  • Commonly used in mice to propagate required characteristics.
  • Embryonic stem cells are used as a source of totipotent nuclei, which are capable of dividing into a range of new cells.
  • These cells are fused with pre-ovulatory oocytes which have had their own haploid nucleus removed using electrofusion.
  • Cells are artificially stimulated to the second meiotic division and begin embryonic development.
  • The cell source ,capable of replication in culture, can be stored by freezing and is therefore 'immortal' and able to produce many identical individuals.
  • Cloned individuals have a high percentage of developmental abnormalities.