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5 Results Retrieved With “EGFR”
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Egfr-flox
Product ID:
S-CKO-02161
Strain:
C57BL/6JCya
Status:
Frozen Sperm
Description:
Egfr is located on chromosome 11 of mice. SgRNA and ssDNA were designed using Nuclease Technology; Egfr conditional knockout mice were obtained by high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr is located on chromosome 11 of mice. SgRNA and ssDNA were designed using Nuclease Technology; Egfr conditional knockout mice were obtained by high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
hEGFR
Product ID:
C001782
Strain:
C57BL/6NCya
Status:
Live Mouse
Description:
The Epidermal Growth Factor Receptor (EGFR) gene (also known as ERBB1 or HER1) encodes a transmembrane glycoprotein that belongs to the protein kinase superfamily. It is widely expressed in various cellular tissues, including epithelial and mesenchymal cells, bone cells, blood and immune cells, heart cells, glia, and stem neural cells, and is particularly abundant in the placenta [1]. Its primary function is to act as a receptor for members of the epidermal growth factor family, such as EGF and TGF-alpha. Upon ligand binding, EGFR undergoes dimerization and tyrosine autophosphorylation, initiating crucial downstream signaling pathways (like RAS-RAF-MEK-ERK and PI3 kinase-AKT) that regulate essential cellular processes including proliferation, survival, differentiation, and migration [2]. Aberrant gene expression, particularly overexpression, amplification, or activating mutations in EGFR, leads to its constitutive activation, promoting uncontrolled cell growth and survival [3]. This dysregulation is a significant factor in the development and progression of numerous cancers, most notably non-small cell lung cancer (especially adenocarcinoma), glioblastoma, colorectal carcinoma, and breast carcinoma, making EGFR a key target for personalized cancer therapies [4]. The hEGFR mouse is a humanized model constructed by replacing exon 2 and part of intron 2 of the mouse Egfr gene with the EGFR Chimeric cDNA-WPRE BGH pA cassette. The murine signal peptide and partial extracellular domain are preserved. hEGFR mice can be used for research into the pathogenesis of various cancers, including non-small cell lung cancer (adenocarcinoma), glioblastoma, colorectal cancer, and breast cancer, as well as for the screening, development, and safety assessment of EGFR-targeted therapies.
The Epidermal Growth Factor Receptor (EGFR) gene (also known as ERBB1 or HER1) encodes a transmembrane glycoprotein that belongs to the protein kinase superfamily. It is widely expressed in various cellular tissues, including epithelial and mesenchymal cells, bone cells, blood and immune cells, heart cells, glia, and stem neural cells, and is particularly abundant in the placenta [1]. Its primary function is to act as a receptor for members of the epidermal growth factor family, such as EGF and TGF-alpha. Upon ligand binding, EGFR undergoes dimerization and tyrosine autophosphorylation, initiating crucial downstream signaling pathways (like RAS-RAF-MEK-ERK and PI3 kinase-AKT) that regulate essential cellular processes including proliferation, survival, differentiation, and migration [2]. Aberrant gene expression, particularly overexpression, amplification, or activating mutations in EGFR, leads to its constitutive activation, promoting uncontrolled cell growth and survival [3]. This dysregulation is a significant factor in the development and progression of numerous cancers, most notably non-small cell lung cancer (especially adenocarcinoma), glioblastoma, colorectal carcinoma, and breast carcinoma, making EGFR a key target for personalized cancer therapies [4]. The hEGFR mouse is a humanized model constructed by replacing exon 2 and part of intron 2 of the mouse Egfr gene with the EGFR Chimeric cDNA-WPRE BGH pA cassette. The murine signal peptide and partial extracellular domain are preserved. hEGFR mice can be used for research into the pathogenesis of various cancers, including non-small cell lung cancer (adenocarcinoma), glioblastoma, colorectal cancer, and breast cancer, as well as for the screening, development, and safety assessment of EGFR-targeted therapies.
Egfr-KO
Product ID:
S-KO-01851
Strain:
C57BL/6JCya
Status:
Frozen Sperm
Description:
Egfr is located on chromosome 11 of mice. Nuclease Technology will be used to design sgRNA; Egfr knockout mice will be obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr is located on chromosome 11 of mice. Nuclease Technology will be used to design sgRNA; Egfr knockout mice will be obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr-KO
Product ID:
S-KO-01849
Strain:
C57BL/6NCya
Status:
Frozen Sperm
Description:
Egfr is located on chromosome 11 of mice. Nuclease Technology was used to design sgRNA; Egfr knockout mice were obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr is located on chromosome 11 of mice. Nuclease Technology was used to design sgRNA; Egfr knockout mice were obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr-KO
Product ID:
S-KO-01850
Strain:
C57BL/6JCya
Status:
Research and Development
Description:
Egfr is located on chromosome 11 of mice. Nuclease Technology will be used to design sgRNA; Egfr knockout mice will be obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Egfr is located on chromosome 11 of mice. Nuclease Technology will be used to design sgRNA; Egfr knockout mice will be obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
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