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Models

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Mice

hLAG3/hCTLA-4

Strain Name:B6.129S-Lag3tm1(hLAG3)Ctla4em1(hCTLA4)/Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-190018

This LAG3 and CTLA4 double knockin strain is established by crossing LAG3-HU and CTLA4-HU mice together. These double double knockin mouse models can be useful for evalueting the efficacy of potential immunotherapy drug combinations.

Mice

hCTLA-4/4-1BB

Strain Name:C57BL/6Smoc-Ctla4em1(hCTLA4) Tnfrsf9em1(hTNFRSF9) /Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-18020

This CTLA4 and 4-1BB double knockin strain is established by crossing CTLA4-HU and 4-1BB-HU mice together. These double double knockin mouse models can be useful for evalueting the efficacy of potential immunotherapy drug combinations.

Mice

hFCRN

Strain Name:C57BL/6Smoc-Gt(ROSA)26Sorem1(CAG-hFcRn)Fcgrtem1/Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-00109

This FcRn humanized strain is established by mating endogenous mouse Fcgrt gene Knockout mice with R26-hFcRn(FCGRT) Knock-in mice. These FcRn humanized mouse models can be useful for evalueting the efficacy of potential immunotherapy drug combinations. While hFCRN(2)(Stock No.NM-HU-190070) and hFCRN(3)(Stock No.NM-HU-2000032)mice function similarly to hFCRN mice,for more detailed information please contact our technical advisor.

Mice

Rag2/Il2rg-KO/hSIRPA(BALB/c,2)

Strain Name:BALB/cAnSmoc-Sirpatm(hSIRPA)Rag2em1IL2rgem1Smoc
Strain State:Sperm cryopreservation | Cat. NO.:NM-KO-234081

On the basis of strain hSIRPA(BALB/c,2), Rag2 and Il2rg gene exon3 and Il2rg gene exon2 were knocked out to establish Rag2 and IL2RG gene knockout mouse models in hSIRPA(BALB/c,2) background.

Mice

Rag2/IL2rg-KO/hVEGFR2

Strain Name:C57BL/6Smoc-Il2rgem1Kdrtm2(hKDR)Rag2em1Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-HU-220087

IL2rg-KO (NM-KO-210098) mice were crossed with Rag2-KO/hKDR (NM-HU-200280) mice to generate Rag2/IL2rg-KO/hKDR mouse models.

Mice

Rag2/IL2rg/Flt3-KO(BALB/c)

Strain Name:BALB/cAnSmoc-Rag2em1IL2rgem1Flt3em1Smoc
Strain State:Sperm cryopreservation | Cat. NO.:NM-KO-234080

In the background of Rag2/IL2rg-KO (BALB/c)(NM-KO-210231), the exon3 of Flt3 gene was knocked out to establish Rag2, IL2rg and Flt3 gene knockout mouse models.

Mice

MHC Class II(I-A/I-E)-KO(Nod-Scid)

Strain Name:NOD-PrkdcscidH2-Ab1em1H2-Aaem1H2-Eb1em1H2-Eb2em1H2-Ea-psem1Smoc
Strain State:Developing | Cat. NO.:NM-KO-18057

All sequences from the upstream of mouse H2-Ab1 gene exon 2 to the upstream of the H2-Ea-ps gene exon 1 were knocked out to obtain H2-Ab1、H2-Aa、H2-Eb1、H2-Eb2、H2-Ea-ps knockout mouse models. These MHC class II molecule-deficient mice were on the Nod-Scid genetic background and lacked cell surface expression of both class II-A and class II-E MHC proteins.

Mice

MHC ClassII(I-A/I-E)-KO(NMG)

Strain Name:NOD-PrkdcscidIl2rgem1H2-Ab1em1H2-Aaem1H2-Eb1em1H2-Eb2em1H2-Ea-ps em1Smoc
Strain State:Developing | Cat. NO.:NM-NSG-003

All sequences from the upstream of  mouse H2-Ab1 gene exon 2  to the upstream of the H2-Ea-ps gene  exon 1 were knocked out to obtain H2-Ab1、H2-Aa、H2-Eb1、H2-Eb2、H2-Ea-ps knockout mouse models.  These MHC class II molecule-deficient mice were on the NMG genetic background and also lacked cell surface expression of both class II-A and class II-E MHC proteins.

Mice

MHC Class II (I-A/I-E) -KO

Strain Name:C57BL/6Smoc-H2-Ab1em1H2-Aaem1 H2-Eb1em1H2-Eb2em1H2-Ea-ps em1 Smoc
Strain State:Repository Live | Cat. NO.:NM-KO-18032

All sequences from the upstream of mouse H2-Ab1 gene exon 2 to the upstream of the H2-Ea-ps gene exon 1 were knocked out to obtain H2-Ab1、H2-Aa、H2-Eb1、H2-Eb2、H2-Ea-ps knockout mouse models. These MHC class II molecule-deficient mice were on the C57BL/6J genetic background and also lacked cell surface expression of both class II-A and class II-E MHC proteins.

Mice

Tagln-Cre

Strain Name:C57BL/6Smoc-Taglnem1(Cre-WPRE-polyA)Smoc
Strain State:Repository Live | Cat. NO.:NM-KI-200144

A Cre-WPRE-polyA expression cassette was knocked into the Tagln gene start codon site. This gene encodes a smooth muscle cell-specific cytoskeletal protein. When crossed with a strain carrying a gene flanked by loxP sites, the flanked gene will be removed in vascular smooth muscle cells. In mouse models of atherosclerosis, the gene product may be involved in plaque cell and atherosclerotic lesion formation during atherogenesis.

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