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Journal: Biology
Article Title: Development of Replicon Cell Pools Bearing a Flavivirus RNA Replicon as a Source of HIV-1 Gag-Pol for Lentiviral Vector Production
doi: 10.3390/biology15110848
Figure Lengend Snippet: Characterization of a CAR-T cell product generated using LV/CAR vector produced from RCP cells. ( a ) Representative flow cytometry plots showing the gating strategy used for counting CAR + cells (debris exclusion, CD45 + leukocytes, viable cells, CD3 + T cells, and CAR + subset within CD3 + cells). ( b ) Summary of cell product composition after T-cell selection and transduction, including cell subsets, markers, event counts, and relative frequencies.
Article Snippet: The CAR-T cell product was analyzed by flow cytometry using the following antibody panel from
Techniques: Generated, Plasmid Preparation, Produced, Flow Cytometry, Selection, Transduction
Journal: Molecular Therapy Oncology
Article Title: Engineered Salmonella -mediated c-di-AMP delivery activates STING to remodel the tumor microenvironment
doi: 10.1016/j.omton.2026.201185
Figure Lengend Snippet: Effect of SL disA therapy on T cells and macrophage from tumor samples (A, B) Flow Cytometry analysis of CD3 and CD8 surface markers(A) and CD3 + CD8 + cells statistical graph (B). (C, D) Flow cytometry analysis of CD3 and CD4 surface markers (C) and CD3 + CD4 + cells statistical graph (D). (E, F) Flow cytometry analysis of F4/80 and CD86 surface markers (E) and F4/80 + CD86 + cells statistical graph (F). Data are expressed as mean ± SEM, n = 3. ∗ p < 0.05, ∗∗ p < 0.01, ∗∗∗ p < 0.001, ∗∗∗∗ p < 0.0001, one-way ANOVA with Tukey’s multiple comparisons tests.
Article Snippet: The following antibodies were used: FITC anti-mouse F4/80 (clone CI: A3-1), APC anti-mouse CD86 (clone GL-1),
Techniques: Flow Cytometry
Journal: iScience
Article Title: Targeting KIF20A blocks lactylation modification to suppress immune escape in hepatocellular carcinoma
doi: 10.1016/j.isci.2026.115372
Figure Lengend Snippet: Knockdown of LDHA/B inhibits HCC growth by activating CD8 + T cell-mediated antitumor immunity (A) WB analysis of LDHA, LDHB, and β-actin (loading control) expression in control and LDHA/B DKO Hepa 1–6 cells. (B) Representative images of tumors dissected from tumor-bearing mice ( n = 6). Tumor weights (C), tumor growth curves (D), Kaplan-Meier survival curve ( n = 6) (E), and lactate contents in tumor tissues (F) of the control and LDHA/B DKO groups ( n = 6). (G) IHC staining of H3K18la and Pan Kla in tumor tissues (scale bars, 100 μm, n = 6). (H–M) FC analysis of tumor-infiltrating immune cells: TILs were isolated from control and LDHA/B-DKO tumors. FC plots (left) and quantitative statistics (right) show: the proportion of CD3 + CD8 + CTLs (H), the proportion of CD44hiCD62Llo effector memory CTLs (I), and the proportions of intratumoral GzMB + (J), and IFN-γ + (K) CTLs with representative scatterplots ( n = 6). Cell aggregates and debris were first excluded, followed by gating on the target cell populations and markers of interest. Representative FC plots and quantitative data are presented. (L and M) Tumor size and growth curves of mice treated with anti-CD8 antibody to deplete CD8 + T cells or isotype control (IgG) ( n = 6). (N) Mouse body weights at the end of the experiment ( n = 6). Data are presented as mean ± SD. (C–F, and H–M) were analyzed using Student’s t test, and (N) was analyzed by two-way ANOVA. ∗ p < 0.05, ∗∗ p < 0.01, and ∗∗∗ p < 0.001; ns, not significant. All experiments were repeated three times. β-actin served as the loading control for WB experiments.
Article Snippet:
Techniques: Knockdown, Control, Expressing, Immunohistochemistry, Isolation