C57BL/6-Pdcd1tm1(PDCD1)Bcgen Ctla4tm1(CTLA4)Bcgen/Bcgen • 120519
Overview of PD-1, VEGFA, and CTLA4 in Cancer Immunotherapy and Angiogenesis
Gene targeting strategy for B-hPD-1/hCTLA4 mice. The exon 2 of mouse Pdcd1 gene that encode the IgV domain was replaced by human PDCD1 exon 2 in B-hPD-1/hCTLA4 mice. The exon 2 of mouse Ctla4 gene that encodes the extracellular domain was replaced by human CTLA4 exon 2 in B-hPD-1/hCTLA4 mice.
Strain specific analysis of PD-1 and CTLA4 gene expression in C57BL/6 and hPD-1/hCTLA4 mice by RT-PCR. Mouse Pdcd1 and Ctla4 mRNA were detectable only in spleen of wild-type mice (+/+). Human PDCD1 and CTLA4 mRNA were detectable only in spleen of B-hPD-1/hCTLA4 mice (H/H), but not in wild-type (+/+) mice.
Mouse and human PD-1 expression analysis in splenocytes. Splenocytes were collected from wild-type C57BL/6 mice and homozygous B-hPD-1/hCTLA4 mice stimulated with anti-CD3ε in vivo. PD-1 expression on T cells was analyzed by flow cytometry using species-specific anti-PD-1 antibodies.
Antitumor activity of anti-human PD-1 antibody combined with anti-human CTLA4 antibody in B-hPD-1/hCTLA4 mice. Murine colon cancer MC38 cells were subcutaneously implanted into homozygous B-hPD-1/hCTLA4 mice (female, 6-7 week-old, n=5). Mice were grouped when tumor volume reached approximately 100 mm3, at which time they were treated with pembrolizumab and ipilimumab with doses and schedules indicated in panel. (A) Tumor growth curves. (B) Body weight changes during treatment. As shown in panel A, combination of pembrolizumab and ipilimumab shows more inhibitory effects than individual groups, demonstrating that the B-hPD-1/hCTLA4 mice provide a powerful preclinical model for in vivo evaluating combination therapy efficacy of hPD-1 antibodies and hCTLA4 antibodies. Values are expressed as mean ± SEM. (All antibodies were made in house)
Establishment of a B-hVEGFA MC38 mouse model and in vivo efficacy evaluation of an anti-human PD-1/VEGFA/CTLA4 trispecific antibody. B-hVEGFA MC38 mouse colon carcinoma cells were subcutaneously implanted into homozygous B-hPD-1/hCTLA4 mice (female, 10 weeks old, n=4). When the mean tumor volume reached approximately 110 mm³ (AK112 and GB268 group) or 220 mm³ (CS2009 group), mice were randomized and treated intraperitoneally with either the anti-PD-1/VEGFA bispecific antibody (AK112) and anti-PD-1/VEGFA/CTLA4 trispecific antibody (CS2009 or GB268). The all antibodies were provided by the client, and the experiment was conducted in collaboration with the client.
Efficacy of an anti-human PD-1/VEGFA/CTLA4 trispecific antibody in B-hPD-1/hCTLA4 mice. (A) Tumor growth curves. (B) Body weight changes. As shown in panel A, anti-PD-1/VEGFA bispecific antibody (AK112) and anti-PD-1/VEGFA/CTLA4 trispecific antibody (CS2009 or GB268) that shown in the panel were efficacious in controlling tumor growth in B-hPD-1/hCTLA4 mice, demonstrating that the B-hPD-1/hCTLA4 mice provide a powerful preclinical model for in vivo evaluation of anti-PD-1/VEGFA/CTLA4 Tri-specific antibodies. The antibodies were provided by the client, and the experiment was conducted in collaboration with the client. Values are expressed as mean ± SEM.