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“3454” 에 대한 검색 결과 3 건
필터
정렬 기준:
알파벳순 (A-Z)
베스트셀러
hIFNAR1/R2-EC
제품 ID:
C001998
계통(Strain):
C57BL/6NCya
상태:
Live Mouse
설명:
Interferons (IFNs) are a multigene family of cytokines that play critical roles in antiviral defense and regulation of tumor immunity [1]. Human IFNs are classified into type I, II, and III based on receptor-binding specificity. Among them, type I IFNs comprise nearly 20 subtypes, whose signaling relies on a heterodimeric receptor composed of IFNAR1 and IFNAR2 subunits. Ligand binding triggers the JAK-STAT signaling pathway, inducing the expression of interferon-stimulated genes (ISGs) and thereby executing antiviral and immunomodulatory functions [2-3]. IFN-α2, an early discovered and well‑characterized type I IFN subtype, has been approved for clinical use against chronic hepatitis B virus (HBV) infection and certain tumors since the 1990s. However, its clinical application is limited by low response rates and severe side effects [4-5]. Furthermore, the interaction between human IFN and IFNAR is species‑specific, rendering wild-type mice largely unresponsive to human type I IFN — a major obstacle for dissecting the functions of human IFN subtypes and developing novel interferon‑based therapeutics [6]. The hIFNAR1/R2-EC mouse model harbors chimeric receptors (IFNAR-hEC) consisting of the humanized IFNAR extracellular domain and murine transmembrane and intracellular domains, while preserving the regulatory elements and signal peptide regions of the murine Ifnar1/2 loci. Using gene editing, the region from aa.27 in exon 2 to partial intron 2 of the mouse Ifnar1 was replaced with the IFNAR1 chimera CDS, and the region from aa.22 in exon 3 to partial intron 3 of the mouse Ifnar2 was replaced with the IFNAR2 chimera CDS. This immunocompetent mouse model responds robustly to human type I IFNs. It enables characterization of the differential activation of the JAK-STAT pathway by human IFN-α2, α14, and other subtypes, and supports in vivo validation of the long‑term antiviral efficacy of clinically used pegylated human IFN‑α2 in HBV replication models. It therefore provides a powerful platform for investigating the antiviral and immunomodulatory mechanisms of human type I IFN subtypes and for preclinical evaluation of interferon‑based drugs [7].
Interferons (IFNs) are a multigene family of cytokines that play critical roles in antiviral defense and regulation of tumor immunity [1]. Human IFNs are classified into type I, II, and III based on receptor-binding specificity. Among them, type I IFNs comprise nearly 20 subtypes, whose signaling relies on a heterodimeric receptor composed of IFNAR1 and IFNAR2 subunits. Ligand binding triggers the JAK-STAT signaling pathway, inducing the expression of interferon-stimulated genes (ISGs) and thereby executing antiviral and immunomodulatory functions [2-3]. IFN-α2, an early discovered and well‑characterized type I IFN subtype, has been approved for clinical use against chronic hepatitis B virus (HBV) infection and certain tumors since the 1990s. However, its clinical application is limited by low response rates and severe side effects [4-5]. Furthermore, the interaction between human IFN and IFNAR is species‑specific, rendering wild-type mice largely unresponsive to human type I IFN — a major obstacle for dissecting the functions of human IFN subtypes and developing novel interferon‑based therapeutics [6]. The hIFNAR1/R2-EC mouse model harbors chimeric receptors (IFNAR-hEC) consisting of the humanized IFNAR extracellular domain and murine transmembrane and intracellular domains, while preserving the regulatory elements and signal peptide regions of the murine Ifnar1/2 loci. Using gene editing, the region from aa.27 in exon 2 to partial intron 2 of the mouse Ifnar1 was replaced with the IFNAR1 chimera CDS, and the region from aa.22 in exon 3 to partial intron 3 of the mouse Ifnar2 was replaced with the IFNAR2 chimera CDS. This immunocompetent mouse model responds robustly to human type I IFNs. It enables characterization of the differential activation of the JAK-STAT pathway by human IFN-α2, α14, and other subtypes, and supports in vivo validation of the long‑term antiviral efficacy of clinically used pegylated human IFN‑α2 in HBV replication models. It therefore provides a powerful platform for investigating the antiviral and immunomodulatory mechanisms of human type I IFN subtypes and for preclinical evaluation of interferon‑based drugs [7].
Stard5-flox
제품 ID:
S-CKO-03454
계통(Strain):
C57BL/6JCya
상태:
Research and Development
설명:
Stard5 is located on chromosome 7 of mice. SgRNA and ssDNA will be designed using Nuclease Technology; Stard5 conditional knockout mice will be obtained by high-throughput electroporation of fertilized eggs. After sexual maturity, sperm will be collected for cryopreservation.
Stard5 is located on chromosome 7 of mice. SgRNA and ssDNA will be designed using Nuclease Technology; Stard5 conditional knockout mice will be obtained by high-throughput electroporation of fertilized eggs. After sexual maturity, sperm will be collected for cryopreservation.
Numbl-KO
제품 ID:
S-KO-03454
계통(Strain):
C57BL/6JCya
상태:
Research and Development
설명:
Numbl is located on chromosome 7 of mice. Nuclease Technology will be used to design sgRNA; Numbl knockout mice will be obtained by applying high-throughput electroporation of fertilized eggs. After sexual maturity, sperm were collected for cryopreservation.
Numbl is located on chromosome 7 of mice. Nuclease Technology will be used to design sgRNA; Numbl 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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더보기
전체 필터
Strain Type
Mouse
Rat
Modification Type
Knockout
Conditional Knockout
Knockin
Point Mutation
Transgenic
Conditional Knockin
Others
Status
Live Mice
R&D
Frozen Sperm
Validation Data
Verified
In Progress
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확인
모델 라이브러리
모델 라이브러리
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리소스
동물 품질
동물 품질
고객 지원
고객 지원
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800-921-8930 (8-6pm PST)
+1408-963-0306 (lnt’l)
팩스:
408-969-0336
이메일:
[email protected]
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