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B7-H3 expression analysis in B-hB7-H3 B16-F10 cells by flow cytometry. Single cell suspensions from wild-type B16-F10 cells and B-hB7-H3 B16-F10 #2-C04, #2-A03 were stained with species-specific anti-mouse B7-H3 antibody (Biolegend, 124508) and anti-human B7-H3 antibody (Biolegend, 351006). Human B7-H3 was detectable on the surface of B-hB7-H3 B16-F10 cells but not on the wild-type B16-F10 cells. Mouse B7-H3 was not detectable on the wild-type B16-F10 cells.
Subcutaneous tumor growth of B-hB7-H3 B16-F10 cells. B-hB7-H3 B16-F10 cells (2×105) and wild-type B16-F10 cells (2×105) were subcutaneously implanted into B-hB7-H3 mice (female, 7-week-old, n=6). Tumor volume and body weight were measured twice a week. (A) Average tumor volume. (B) Body weight. Volume was expressed in mm3 using the formula: V=0.5 × long diameter × short diameter2. As shown in panel A, B-hB7-H3 B16-F10 cells were able to establish tumors in vivo and can be used for efficacy studies.
Subcutaneous tumor growth of B-hB7-H3 B16-F10 cells. B-hB7-H3 B16-F10 cells and wild-type B16-F10 cells were subcutaneously implanted into wild-type C57BL/6JNifd mice (female, 6-week-old, n=6). Tumor volume and body weight were measured twice a week. (A) Average tumor volume. (B) Body weight. Volume was expressed in mm3 using the formula: V=0.5 × long diameter × short diameter2. As shown in panel A, B-hB7-H3 B16-F10 cells were able to establish tumors in vivo and can be used for efficacy studies.
Human B7-H3 expression evaluated in B-hB7-H3 B16-F10 cells by flow cytometry. B-hB7-H3 B16-F10 cells were subcutaneously transplanted into wild-type C57BL/6JNifdc mice (female, 6-week-old, n=6. Tumor cells were harvested and analyzed for mouse B7-H3 (Biolegend, 135605) and human B7-H3 (Biolegend, 351006) expression by flow cytometry. Human B7-H3 was only detectable in B-hB7-H3 B16-F10 cells and tumor cells. Mouse B7-H3 was not detectable in wild-type B16-F10 cells or B-hB7-H3 B16-F10 cells and tumor cells.