Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Expression of FGF receptor gene in rat development

View through CrossRef
Abstract We examined the expression of FGF-receptor (FGF-R) mRNA during rat development with in situ hybridization histochemistry. Embryonic tissues (E9, E12, E14, E17) and postnatal neural tissues (Pl, P7, P14, adult) were examined. We detected significant levels of FGF-R mRNA in various tissues at different developmental stages. As postulated by previous studies using other methods, FGF-R gene expression was observed primarily in mesoderm- and neuroectodenn-derived tissues. In the nervous system, the pattern of gene expression was developmentally regulated; in embryos, FGF-R mRNA was mainly detected in the ependymal layer of the central nervous system (CNS). Postnatally, FGF-R transcripts were observed in specific neuronal populations, such as hippocampal neurons. FGF-R mRNA was also found in sensory systems such as trigeminal and dorsal root ganglia in late stage embryos; however, FGF-R mRNA decreased in the postnatal period. FGF-R mRNA expression was modulated in the developing retina: FGF-R messages were observed in the pigment epithelium and neuroblast layer at embryonic stages; in the postnatal period, they were found in the ganglion cell and inner granular layer. In non-neuronal embryonic tissues, a wide variety of organs expressed FGF-R message. Particularly, the prevertebral column, bone, kidney and skin showed high levels of expression. These observations reinforce the idea that FGF exerts effects on the development of various tissues.
Title: Expression of FGF receptor gene in rat development
Description:
Abstract We examined the expression of FGF-receptor (FGF-R) mRNA during rat development with in situ hybridization histochemistry.
Embryonic tissues (E9, E12, E14, E17) and postnatal neural tissues (Pl, P7, P14, adult) were examined.
We detected significant levels of FGF-R mRNA in various tissues at different developmental stages.
As postulated by previous studies using other methods, FGF-R gene expression was observed primarily in mesoderm- and neuroectodenn-derived tissues.
In the nervous system, the pattern of gene expression was developmentally regulated; in embryos, FGF-R mRNA was mainly detected in the ependymal layer of the central nervous system (CNS).
Postnatally, FGF-R transcripts were observed in specific neuronal populations, such as hippocampal neurons.
FGF-R mRNA was also found in sensory systems such as trigeminal and dorsal root ganglia in late stage embryos; however, FGF-R mRNA decreased in the postnatal period.
FGF-R mRNA expression was modulated in the developing retina: FGF-R messages were observed in the pigment epithelium and neuroblast layer at embryonic stages; in the postnatal period, they were found in the ganglion cell and inner granular layer.
In non-neuronal embryonic tissues, a wide variety of organs expressed FGF-R message.
Particularly, the prevertebral column, bone, kidney and skin showed high levels of expression.
These observations reinforce the idea that FGF exerts effects on the development of various tissues.

Related Results

Runahead threads
Runahead threads
Los temas de investigación sobre multithreading han ganado mucho interés en la arquitectura de computadores con la aparición de procesadores multihilo y multinucleo. Los procesador...
Long-Pentraxin 3 Affects Primary Cilium in Zebrafish Embryo and Cancer Cells via the FGF System
Long-Pentraxin 3 Affects Primary Cilium in Zebrafish Embryo and Cancer Cells via the FGF System
Primary cilium drives the left-right asymmetry process during embryonic development. Moreover, its dysregulation contributes to cancer progression by affecting various signaling pa...
The prognostic impact of fibroblast growth factor-23 on cardiovascular death after cardiac surgery
The prognostic impact of fibroblast growth factor-23 on cardiovascular death after cardiac surgery
Abstract Background Fibroblast growth factor 23 (FGF-23) participates in phosphate and vitamin D metabolism and proved to be ass...
Blood fibroblast growth factor 23 concentration in cats with and without chronic kidney disease: a scoping review
Blood fibroblast growth factor 23 concentration in cats with and without chronic kidney disease: a scoping review
Objectives This study undertook a scoping review of research on blood fibroblast growth factor 23 (FGF-23) concentrations in healthy non-azotemic cats and cats ...
Controlled release of FGF‐2 using fragmin/protamine microparticles and effect on neovascularization
Controlled release of FGF‐2 using fragmin/protamine microparticles and effect on neovascularization
AbstractWater‐insoluble fragmin/protamine microparticles of about 0.5–1 μm in diameter were prepared by simple mixing of low‐molecular‐weight heparin (fragmin) with protamine. We i...

Back to Top