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| <span style="font-size:150%">'''News - Australian Screening for Spinal Muscular Atrophy'''</span>
| <span style="font-size:150%">'''News - Complete human day 14 post-implantation embryo models from naïve Embryonic Stem Cells'''</span>
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| valign=top|[[File:Guthrie card.jpg|thumb|link=Guthrie test|NSW Newborn Screening Programme]]SMA added to newborn heel prick ({{Guthrie test}}) "In an Australian first, newborn babies are now being routinely screened for the genetic condition SMA, or spinal muscular atrophy". SMA leads to a loss of motor neurons and progressive muscle wasting and has several different forms: Type 1, Type 2, and Type 3a SMA. [http://www.abc.net.au/news/2018-10-14/genetic-testing-sma-added-to-newborn-heel-prick-test/10359622 ABC News]
| valign=top|[[File:Stage6 bf03.jpg|thumb|150px|alt=Carnegie Stage 6 Embryo|Carnegie Stage 6 Embryo]]
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{{Neonatal Diagnosis links}}
This recent Nature paper{{#pmid:37673118|PMID37673118}} describes the use of naïve human Embryonic Stem Cells to recapitulate the early stages of human development.
 
"The ability to study human post-implantation development remains limited due to ethical and technical challenges associated with intrauterine development after implantation....only genetically unmodified human naïve human ES cells...recapitulate the organization of nearly all known lineages and compartments of post-implantation human embryos including epiblast, hypoblast, extra-embryonic mesoderm, and trophoblast surrounding the latter layers...These human complete SEMs demonstrated developmental growth dynamics that resemble key hallmarks of post-implantation stage embryogenesis up to 13-14 days post-fertilization (dpf) (Carnegie stage 6a)."
 
:'''Links:''' {{stem cells}} | Carnegie stage {{CS6}}
 
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Latest revision as of 16:10, 8 September 2023

News - Complete human day 14 post-implantation embryo models from naïve Embryonic Stem Cells
Carnegie Stage 6 Embryo
Carnegie Stage 6 Embryo

This recent Nature paper[1] describes the use of naïve human Embryonic Stem Cells to recapitulate the early stages of human development.

"The ability to study human post-implantation development remains limited due to ethical and technical challenges associated with intrauterine development after implantation....only genetically unmodified human naïve human ES cells...recapitulate the organization of nearly all known lineages and compartments of post-implantation human embryos including epiblast, hypoblast, extra-embryonic mesoderm, and trophoblast surrounding the latter layers...These human complete SEMs demonstrated developmental growth dynamics that resemble key hallmarks of post-implantation stage embryogenesis up to 13-14 days post-fertilization (dpf) (Carnegie stage 6a)."

Links: stem cells | Carnegie stage 6
  1. Oldak B, Wildschutz E, Bondarenko V, Comar MY, Zhao C, Aguilera-Castrejon A, Tarazi S, Viukov S, Pham TXA, Ashouokhi S, Lokshtanov D, Roncato F, Ariel E, Rose M, Livnat N, Shani T, Joubran C, Cohen R, Addadi Y, Chemla M, Kedmi M, Keren-Shaul H, Pasque V, Petropoulos S, Lanner F, Novershtern N & Hanna JH. (2023). Complete human day 14 post-implantation embryo models from naïve ES cells. Nature , , . PMID: 37673118 DOI.
Older News Articles  
Older News Articles - Climate Change Abnormal Development | Air Pollution | Rare Sesquizygotic Twinning | Australia's mothers and babies 2017 | Spinal Muscular Atrophy Screening | Australian 2018 Pregnancy Care Guidelines | CRISPR | Ronan O’Rahilly