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Diagram of Cellular Differentiation Methods Poster
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Diagram of Cellular Differentiation Methods Poster
In developmental biology, cellular differentiation is the process by which a less specialized cell becomes a more specialized cell type. Differentiation occurs numerous times during the development of a multicellular organism as the organism changes from a simple zygote to a complex system of tissues and cell types. Differentiation is a common process in adults as well: adult stem cells divide and create fully differentiated daughter cells during tissue repair and during normal cell turnover. Differentiation dramatically changes a cell's size, shape, membrane potential, metabolic activity, and responsiveness to signals. These changes are largely due to highly controlled modifications in gene expression. With a few exceptions, cellular differentiation almost never involves a change in the DNA sequence itself. Thus, different cells can have very different physical characteristics despite having the same genome.
Dedifferentiation to totipotency or pluripotency: an overview of methods. Various methods exist to revert adult somatic cells to pluripotency or totipotency. In the case of totipotency, reprogramming is mediated through a mature metaphase II oocyte as in somatic cell nuclear transfer (Wilmut et al., 1997). Recent work has demonstrated the feasibility of enucleated zygotes or early blastomeres chemically arrested during mitosis, such that nuclear envelope break down occurs, to support reprogramming to totipotency in a process called chromosome transfer (Egli and Eggan, 2010).
Direct reprogramming methods support reversion to pluripotency; though, vehicles and biotypes vary considerably in efficiencies (Takahashi and Yamanaka, 2006). Viral-mediated transduction robustly supports dedifferentiation to pluripotency through retroviral or DNA-viral routes but carries the onus of insertional inactivation. Additionally, epigenetic reprogramming by enforced expression of OSKM through DNA routes exists such as plasmid DNA, minicircles, transposons, episomes and DNA mulicistronic construct targeting by homologous recombination has also been demonstrated; however, these methods suffer from the burden to potentially alter the recipient genome by gene insertion (Ho et al., 2010). While protein-mediated transduction supports reprogramming adult cells to pluripotency, the method is cumbersome and requires recombinant protein expression and purification expertise, and reprograms albeit at very low frequencies (Kim et al., 2009). A major obstacle of using RNA for reprogramming is its lability and that single-stranded RNA biotypes trigger innate antiviral defense pathways such as interferon and NF-kB-dependent pathways. In vitro transcribed RNA, containing stabilizing modifications such as 5-methylguanosine capping or substituted ribonucleobases, e.g. pseudouracil, is 35-fold more efficient than viral transduction and has the additional benefit of not altering the somatic genome (Warren et al., 2010).
An overarching goal of reprogramming methods is to replace genes with small molecules to assist in reprogramming. No cocktail has been identified to completely reprogram adult cells to totipotency or pluripotency, but many examples exist that improve the overall efficiency of the process and can supplant one or more genes by direct reprogramming routes (Feng et al., 2009; Zhu et al., 2010).
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differentiation "Cellular differentiation" "cell biology" "cellular biology" cell biology diagram "differentiation method" totipotency pluripotency chart diagram science "science chart" "science diagram" "school chart" "school diagram" "teacher's aid"
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By Sharon S.July 31, 2025 • Verified Purchase
Print, Size: 36.00" x 25.10", Media: Value Poster Paper (Semi-Gloss)
I was so amazed at how this all turned out. Everyone who attended the funeral was in awe of how beautiful it was made.
And I owe it all to Zazzle. I wouldn’t have done it better myself not to mention I wouldnt have time to do it.
The great part of it all was they had templates that was catered to my needs and that I could use it in ways I wanted to use to resize it my way. It took some time but I was happy it turned out great. I did 100 photos, 89, 66 photos (I think) lol templates.
The only suggestion is that the templates, before sending through would tell you of errors like; saying please revise or resize it again for any photos that is not perfectly well sitting or not show it’s cutting off some of them and where it tells you there’s duplicates.
Staring, placing and resizing all 100 + pictures into the template can be tiresome and overwhelming and it makes my eyes blurred that I can’t tell if they’re cutting off or overlapping or duplicates.
Overall I am very pleased and will be using Zazzle again should the need arises.
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Altogether I’ve done 3 collages 1 profile picture and couple pictures with 1 frame and yet this is my first time ordering as a 1 time customer.
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By Peyton C.November 8, 2023 • Verified Purchase
Print, Size: 8.00" x 10.00", Media: Value Poster Paper (Semi-Gloss)
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The sign was beautiful and matched our theme. The paper was good quality. Excellent printing!!
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By Marianne O.November 26, 2021 • Verified Purchase
Print, Size: 12.00" x 12.00", Media: Value Poster Paper (Semi-Gloss)
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Fun bright artwork that really captures the mood I’m going for! Pop art with cyberpunk energy. A little sweet but also spicy. This art is the perfect size and vibe for our art gallery wall. The printing looks great, high quality with vibrant colors! I went with the semi-gloss finish, which adds a little extra shine and thickness to the print making it excellent for high-traffic areas like the staircase wall.
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Product ID: 228510229265579076
Created on: 7/26/2011, 1:58 PM
Rating: G
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