an in vitro study on chick somite ability to express cerberus, chordin, fgf8,follistatin, and noggin transcripts

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چکیده

background: in vitro simulation of developmental processes is an invaluable tool to shed light on the intrinsic mechanism of developmental biosystems such as central nervous system in mammals. chick somites have been used to simulate the neural differentiation of human neural progenitor cells. in the present study, we aimed to indicate whether somites have the ability to express required neural differentiation factors at mrna level. methods: chick embryos were isolated from the yolk surface of the fertilized eggs and somites were subsequently isolated from embryos under a dissecting microscope. total rna of the somites was extracted and rt-pcr carried out with specific primers of cerberus, chordin, fgf8, follistatin and noggin. results: data showed that five aforementioned factors were co-expressed after 7 days in vitro by somites. conclusion: we concluded that neural induction property of somites appeared by production of required neural differentiation factors including cerberus, chordin, fgf8, follistatin and noggin.

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An In vitro Study on Chick Somite Ability to Express Cerberus, Chordin, FGF8, Follistatin, and Noggin Transcripts

BACKGROUND In vitro simulation of developmental processes is an invaluable tool to shed light on the intrinsic mechanism of developmental biosystems such as central nervous system in mammals. Chick somites have been used to simulate the neural differentiation of human neural progenitor cells. In the present study, we aimed to indicate whether somites have the ability to express required neural ...

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The origin of the signals that induce the differentiation of the central nervous system (CNS) is a long-standing question in vertebrate embryology. Here we show that Xenopus neural induction starts earlier than previously thought, at the blastula stage, and requires the combined activity of two distinct signaling centers. One is the well-known Nieuwkoop center, located in dorsal-vegetal cells, ...

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15 صفحه اول

The BMP antagonists cerberus-like and noggin do not interact during mouse forebrain development.

Mouse cerberus-like encodes for a secreted factor of the Cerberus/Dan family. This molecule has neural inducing capabilities and can bind to BMP-4 and nodal molecules in the extracellular space. When cerberus-like is inactivated, its function may be compensated for another molecule, since no abnormalities can be observed in the mouse mutant. Compensation mechanisms have been shown to occur betw...

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عنوان ژورنال:
avicenna journal of medical biotechnology

جلد ۶، شماره ۲، صفحات ۱۱۹-۱۲۲

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