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Models

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Mice

Ctnnb1-Flox

Strain Name:C57BL/6Smoc-Ctnnb1em1(flox)Smoc
Strain State:Repository Live | Cat. NO.:NM-CKO-200154

These mice carry loxP sites flanking exon 2-6 of Ctnnb1 gene. When crossed with a Cre recombinase-expressing strain, this strain is useful in eliminating tissue-specific conditional expression of Ctnnb1 gene.

Mice

Braf-Flox

Strain Name:C57BL/6Smoc-Brafem1(flox)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-CKO-200073

These mice carry loxP sites flanking exon 5 of Braf gene. When crossed with a Cre recombinase-expressing strain, this strain is useful in eliminating tissue-specific conditional expression of Braf gene.

Mice

Cnst-KO

Strain Name:C57BL/6Smoc-Cnstem1Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KO-200134

Exon 3 of Cnst gene was deleted to generate Cnst knockout mice.

Mice

Stk4-KO

Strain Name:C57BL/6Smoc-Stk4em1Smoc
Strain State:Repository Live | Cat. NO.:NM-KO-191039

Stk4-KO mice(Stock No.NM-KO-191039)carry a knockout allele derived from the targeted deletion of exon 3-4.

Mice

Stk4-Flox

Strain Name:C57BL/6Smoc-Stk4em1(flox)Smoc
Strain State:Sperm cryopreservation | Cat. NO.:NM-CKO-200226

These mice carry loxP sites flanking exon 4-5 of Stk4 gene. When crossed with a Cre recombinase-expressing strain, this strain is useful in eliminating tissue-specific conditional expression of Stk4 gene.

Mice

Kdm6b-Flox

Strain Name:C57BL/6Smoc-Kdm6bem1(flox)Smoc
Strain State:Sperm cryopreservation | Cat. NO.:NM-CKO-200113

These mice carry loxP sites flanking exon 14-20 of Kdm6b gene. When crossed with a Cre recombinase-expressing strain, this strain is useful in eliminating tissue-specific conditional expression of Kdm6b gene.

Mice

Dicer1-Flox

Strain Name:C57BL/6Smoc-Dicer1em1(flox)Smoc
Strain State:Sperm cryopreservation | Cat. NO.:NM-CKO-200158

These mice carry loxP sites flanking exon 23 of Dicer1 gene. When crossed with a Cre recombinase-expressing strain, this strain is useful in eliminating tissue-specific conditional expression of Dicer1 gene.

Mice

Rag1-KO(Rag1-EGFP)

Strain Name:B6;129S-Rag1tm1(loxP-EGFP-PolyA-loxP-Neo-loxP)Smoc
Strain State:Repository Live | Cat. NO.:NM-KI-00069

A loxP-EGFP-PolyA-loxP-Neo-loxP expression cassette was knocked into the Rag1 gene start codon site. As a Rag1 knockout mouse model, this stain can be used in subcutaneous inoculation of liver cancer tissues and tumor cells. Tumors can esaily form and grow. The amount of T and B lymphocytes in peripheral blood of mice was extremely low tested by FACS, which was comparable to or lower than that of Nude mice, and there was a significant difference compared with wild type mice. The pathological sections of HE staining of tumor tissues showed that the tumor sections of Rag1 KO mice and Nude mice were similar. This strain has the potential to replace Nude, NOD-SCID mice as a tumor-bearing mouse model.

Mice

Rag2-KO(Rag2-EGFP)

Strain Name:B6;129S-Rag2tm1(loxP-EGFP-PolyA-loxP-Neo-loxP)Smoc
Strain State:Embryo cryopreservation | Cat. NO.:NM-KI-00070

A loxP-EGFP-PolyA-loxP-Neo-loxP expression cassette was knocked into the Rag2 gene start codon site. As a Rag2 knockout mouse model, this stain can be used in subcutaneous inoculation of liver cancer tissues and tumor cells. Tumors can esaily form and grow. The amount of T and B lymphocytes in peripheral blood of mice was extremely low tested by FACS, which was comparable to or lower than that of Nude mice, and there was a significant difference compared with wild type mice. The pathological sections of HE staining of tumor tissues showed that the tumor sections of Rag2 KO mice and Nude mice were similar. This strain has the potential to replace Nude, NOD-SCID mice as a tumor-bearing mouse model.

Mice

Nkx2-1-CreERT2

Strain Name:C57BL/6Smoc-Nkx2-1em1(CreERT2-pA)Smoc
Strain State:Repository Live | Cat. NO.:NM-KI-200123

A CreERT2-pA expression cassette was knocked into the Nkx2-1 gene start codon site. Nkx2-1, a key molecule in lung development, is expressed in adult bronchial and alveolar type Ⅱ epithelial cells. Besides, Nkx2-1 expression as a prognostic marker is also been applied to lung cancer research including lung adenocarcinoma.

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