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Here, I revisit this connection focusing on embryonic development, in particular nematode embryogenesis.
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Much of the controversy surrounding the cells focuses on embryonic stem cells, ones collected from human embryos.
We focused on embryonic development as this is considered to be a sensitive life stage to environmental pollution.
Most previous studies of proteomic changes focused on embryonic callus and non-embryonic callus after induction for 4 weeks or even later in only one inbred line9, 10.
Much of his early work focused on embryonic pattern formation in Caenorhabditis elegans –in particular, the ancient pathways that govern the nematode's early stage growth.
This analysis, mostly focused on embryonic and adult stem cells, took into account only a couple of iPSC lines.
The seminal screen of Kasarskis et al. [10] focused on embryonic day 9.5 embryos, while in the screen by Herron et al. [11] fetuses of E18.5 day were analyzed.
Earlier studies on the Hh pathway mostly focused on embryonic development and neural tissue homeostasis.
Because we focused on embryonic gene expression, two competing hypotheses as to what patterns we might find were plausible.
We focus on embryonic day 11.5 (E11.5), which is equivalent to roughly 40 days of gestation in human.
Thus, we have focussed on embryonic stem (ES) cell expertise to produce neurons that can be studied in culture, derived from ES cells carrying pathogenic mtDNA defects.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com