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Structured Review

Synthego Inc multi guide rna targeting pd l1
Generation <t>of</t> <t>PD-L1</t> CAR-T and validation of PD-L1 expression in target cells (A) Schematic of the second-generation PD-L1 CAR construct containing an anti-PD-L1 scFv, CD4 transmembrane domain, and 4-1BB/CD3ζ signaling domains and tEGFR safety switch. (B) Flow cytometry results of PD-L1 expression in HuCCT1, HuCCT1-PD-L1 KO, and SNU1079 cells. (C) Characterization of non-CAR-T and CAR-T showing 98.8% and 98.6% CD3 expression and 1.03% and 28% EGFR expression, respectively.
Multi Guide Rna Targeting Pd L1, supplied by Synthego Inc, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multi+guide+rna/a4+guide+human+mage+mod+multi+sgrna/pmc13156596-187-4-8
Average 86 stars, based on 1 article reviews
multi guide rna targeting pd l1 - by Bioz Stars, 2026-10
86/100 stars

Images

1) Product Images from "CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study"

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

Journal: Molecular Therapy Oncology

doi: 10.1016/j.omton.2026.201209

Generation of PD-L1 CAR-T and validation of PD-L1 expression in target cells (A) Schematic of the second-generation PD-L1 CAR construct containing an anti-PD-L1 scFv, CD4 transmembrane domain, and 4-1BB/CD3ζ signaling domains and tEGFR safety switch. (B) Flow cytometry results of PD-L1 expression in HuCCT1, HuCCT1-PD-L1 KO, and SNU1079 cells. (C) Characterization of non-CAR-T and CAR-T showing 98.8% and 98.6% CD3 expression and 1.03% and 28% EGFR expression, respectively.
Figure Legend Snippet: Generation of PD-L1 CAR-T and validation of PD-L1 expression in target cells (A) Schematic of the second-generation PD-L1 CAR construct containing an anti-PD-L1 scFv, CD4 transmembrane domain, and 4-1BB/CD3ζ signaling domains and tEGFR safety switch. (B) Flow cytometry results of PD-L1 expression in HuCCT1, HuCCT1-PD-L1 KO, and SNU1079 cells. (C) Characterization of non-CAR-T and CAR-T showing 98.8% and 98.6% CD3 expression and 1.03% and 28% EGFR expression, respectively.

Techniques Used: Biomarker Discovery, Expressing, Construct, Flow Cytometry

PD-L1 CAR-T delay tumor progression and reduce tumor burden in vivo (A) Longitudinal bioluminescent imaging of mice with orthotopic HuCCT1 tumors treated with PBS as a control, Non-CAR-T, or CAR-T at 7 and 14 days. (B) Quantification of total bioluminescent signal confirming significantly reduced tumor burden in CAR-T treated animals compared with both control groups. Results are reported as mean ± standard deviation (SD). Two-way ANOVA with Tukey’s multiple comparisons between tumor control and CAR-T are represented by ( p values: ∗∗ ≤0.01), and between non-CAR-T and CAR-T by ( p values: # # ≤ 0.01). n = 6 biological replicates at all days and time points with the exception of non-CAR-T week 9, where n = 5 biological replicates.
Figure Legend Snippet: PD-L1 CAR-T delay tumor progression and reduce tumor burden in vivo (A) Longitudinal bioluminescent imaging of mice with orthotopic HuCCT1 tumors treated with PBS as a control, Non-CAR-T, or CAR-T at 7 and 14 days. (B) Quantification of total bioluminescent signal confirming significantly reduced tumor burden in CAR-T treated animals compared with both control groups. Results are reported as mean ± standard deviation (SD). Two-way ANOVA with Tukey’s multiple comparisons between tumor control and CAR-T are represented by ( p values: ∗∗ ≤0.01), and between non-CAR-T and CAR-T by ( p values: # # ≤ 0.01). n = 6 biological replicates at all days and time points with the exception of non-CAR-T week 9, where n = 5 biological replicates.

Techniques Used: In Vivo, Imaging, Control, Standard Deviation

Antigen-specific degranulation and granzyme B released by PD-L1 CAR-T (A) CD8 + T cell degranulation in response to HuCCT1 wild-type (WT) or PD-L1 knockout (KO) cells by flow cytometry after CAR-T co-culture at 6 h. (B) CD4 + T cell degranulation under the same conditions, showing CAR-T-mediated activity against WT but not KO cells. (C) Degranulation of CD8 + and CD4 + T cells in response to SNU1079 cells by flow cytometry after CART co-culture at 6 h compared with non-CAR-T controls. (D) Granzyme B release in HuCCT1 WT and KO cells following co-culture by ELISA after 72 h n = 3 technical replicates. Two-way ANOVA with Tukey’s multiple comparisons test. ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).
Figure Legend Snippet: Antigen-specific degranulation and granzyme B released by PD-L1 CAR-T (A) CD8 + T cell degranulation in response to HuCCT1 wild-type (WT) or PD-L1 knockout (KO) cells by flow cytometry after CAR-T co-culture at 6 h. (B) CD4 + T cell degranulation under the same conditions, showing CAR-T-mediated activity against WT but not KO cells. (C) Degranulation of CD8 + and CD4 + T cells in response to SNU1079 cells by flow cytometry after CART co-culture at 6 h compared with non-CAR-T controls. (D) Granzyme B release in HuCCT1 WT and KO cells following co-culture by ELISA after 72 h n = 3 technical replicates. Two-way ANOVA with Tukey’s multiple comparisons test. ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Techniques Used: Knock-Out, Flow Cytometry, Co-Culture Assay, Activity Assay, Enzyme-linked Immunosorbent Assay, Standard Deviation

CAR-T release cytotoxic effector molecules and reduce tumor cell viability in an antigen-dependent manner (A and B) Granzyme B and perforin release from CAR-T and non-transduced T cells co-cultured with HuCCT1 (A) or SNU1079 (B) cells at 1:1 and 2:1 effector-to-target (E:T) ratios. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase viability assay of HuCCT1, PD-L1 knockout HuCCT1, or SNU1079 cells at 1:1 and 2:1 effector-to-target after 24 and 48 h. n = 6 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).
Figure Legend Snippet: CAR-T release cytotoxic effector molecules and reduce tumor cell viability in an antigen-dependent manner (A and B) Granzyme B and perforin release from CAR-T and non-transduced T cells co-cultured with HuCCT1 (A) or SNU1079 (B) cells at 1:1 and 2:1 effector-to-target (E:T) ratios. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase viability assay of HuCCT1, PD-L1 knockout HuCCT1, or SNU1079 cells at 1:1 and 2:1 effector-to-target after 24 and 48 h. n = 6 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Techniques Used: Cell Culture, Luciferase, Viability Assay, Knock-Out, Standard Deviation

PD-L1 CAR-T disrupt and kill tumor cells in multicellular CSFE spheroids (A) Brightfield images of HuCCT1 and SNU1079 CSFE spheroids following 24 h co-culture with non-CAR-T or CAR-T at 1:1 or 2:1 effector-to-target (E:T) ratios. Quantification of spheroid area is shown. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. Scale bar is 300 µm (B) Live/dead staining (calcein-AM/propidium iodide) and luciferase viability assays of spheroids under the same conditions. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 100 µm.
Figure Legend Snippet: PD-L1 CAR-T disrupt and kill tumor cells in multicellular CSFE spheroids (A) Brightfield images of HuCCT1 and SNU1079 CSFE spheroids following 24 h co-culture with non-CAR-T or CAR-T at 1:1 or 2:1 effector-to-target (E:T) ratios. Quantification of spheroid area is shown. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. Scale bar is 300 µm (B) Live/dead staining (calcein-AM/propidium iodide) and luciferase viability assays of spheroids under the same conditions. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 100 µm.

Techniques Used: Co-Culture Assay, Staining, Luciferase, Standard Deviation

Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in HuCCT1 cells (A) Schematic of experimental design for gemcitabine pretreatment. (B) Flow cytometry showing increased PD-L1 surface expression in HuCCT1 cells after Gem treatment, with maximal induction at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates, two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of HuCCT1 CSFE spheroids under the same conditions. ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.
Figure Legend Snippet: Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in HuCCT1 cells (A) Schematic of experimental design for gemcitabine pretreatment. (B) Flow cytometry showing increased PD-L1 surface expression in HuCCT1 cells after Gem treatment, with maximal induction at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates, two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of HuCCT1 CSFE spheroids under the same conditions. ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Techniques Used: Flow Cytometry, Expressing, Luciferase, Staining, Standard Deviation

Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in SNU1079 cells (A) Schematic depicting Gemcitabine pretreatment. (B) Flow cytometry showing Gemcitabine-induced PD-L1 upregulation in SNU1079 cells, with maximal effect at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates. Two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of SNU1079 CSFE spheroids under the same conditions. p value∗ ≤ 0.05, p value∗∗ ≤ 0.01, p value∗∗∗∗ ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.
Figure Legend Snippet: Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in SNU1079 cells (A) Schematic depicting Gemcitabine pretreatment. (B) Flow cytometry showing Gemcitabine-induced PD-L1 upregulation in SNU1079 cells, with maximal effect at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates. Two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of SNU1079 CSFE spheroids under the same conditions. p value∗ ≤ 0.05, p value∗∗ ≤ 0.01, p value∗∗∗∗ ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Techniques Used: Flow Cytometry, Luciferase, Staining, Standard Deviation

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Article Snippet: .. The multi-guide RNA for generating H/NRAS gene knockout was designed and synthesized at Synthego. .. 2x105 cells were harvested and resuspended in Resuspension Buffer R (Thermo Fisher Scientific, MPK1025) immediately prior to transfection.

Synthesized:

Article Title: Abrogation of Oncogenic RAS Signaling by a RAS(ON) Inhibitor Doublet Primes Immune-refractory KRAS G12C-mutant NSCLC for Immune Checkpoint Blockade
Article Snippet: .. The multi-guide RNA for generating H/NRAS gene knockout was designed and synthesized at Synthego. .. 2x105 cells were harvested and resuspended in Resuspension Buffer R (Thermo Fisher Scientific, MPK1025) immediately prior to transfection.



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Image Search Results


Generation of PD-L1 CAR-T and validation of PD-L1 expression in target cells (A) Schematic of the second-generation PD-L1 CAR construct containing an anti-PD-L1 scFv, CD4 transmembrane domain, and 4-1BB/CD3ζ signaling domains and tEGFR safety switch. (B) Flow cytometry results of PD-L1 expression in HuCCT1, HuCCT1-PD-L1 KO, and SNU1079 cells. (C) Characterization of non-CAR-T and CAR-T showing 98.8% and 98.6% CD3 expression and 1.03% and 28% EGFR expression, respectively.

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: Generation of PD-L1 CAR-T and validation of PD-L1 expression in target cells (A) Schematic of the second-generation PD-L1 CAR construct containing an anti-PD-L1 scFv, CD4 transmembrane domain, and 4-1BB/CD3ζ signaling domains and tEGFR safety switch. (B) Flow cytometry results of PD-L1 expression in HuCCT1, HuCCT1-PD-L1 KO, and SNU1079 cells. (C) Characterization of non-CAR-T and CAR-T showing 98.8% and 98.6% CD3 expression and 1.03% and 28% EGFR expression, respectively.

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Biomarker Discovery, Expressing, Construct, Flow Cytometry

PD-L1 CAR-T delay tumor progression and reduce tumor burden in vivo (A) Longitudinal bioluminescent imaging of mice with orthotopic HuCCT1 tumors treated with PBS as a control, Non-CAR-T, or CAR-T at 7 and 14 days. (B) Quantification of total bioluminescent signal confirming significantly reduced tumor burden in CAR-T treated animals compared with both control groups. Results are reported as mean ± standard deviation (SD). Two-way ANOVA with Tukey’s multiple comparisons between tumor control and CAR-T are represented by ( p values: ∗∗ ≤0.01), and between non-CAR-T and CAR-T by ( p values: # # ≤ 0.01). n = 6 biological replicates at all days and time points with the exception of non-CAR-T week 9, where n = 5 biological replicates.

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: PD-L1 CAR-T delay tumor progression and reduce tumor burden in vivo (A) Longitudinal bioluminescent imaging of mice with orthotopic HuCCT1 tumors treated with PBS as a control, Non-CAR-T, or CAR-T at 7 and 14 days. (B) Quantification of total bioluminescent signal confirming significantly reduced tumor burden in CAR-T treated animals compared with both control groups. Results are reported as mean ± standard deviation (SD). Two-way ANOVA with Tukey’s multiple comparisons between tumor control and CAR-T are represented by ( p values: ∗∗ ≤0.01), and between non-CAR-T and CAR-T by ( p values: # # ≤ 0.01). n = 6 biological replicates at all days and time points with the exception of non-CAR-T week 9, where n = 5 biological replicates.

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: In Vivo, Imaging, Control, Standard Deviation

Antigen-specific degranulation and granzyme B released by PD-L1 CAR-T (A) CD8 + T cell degranulation in response to HuCCT1 wild-type (WT) or PD-L1 knockout (KO) cells by flow cytometry after CAR-T co-culture at 6 h. (B) CD4 + T cell degranulation under the same conditions, showing CAR-T-mediated activity against WT but not KO cells. (C) Degranulation of CD8 + and CD4 + T cells in response to SNU1079 cells by flow cytometry after CART co-culture at 6 h compared with non-CAR-T controls. (D) Granzyme B release in HuCCT1 WT and KO cells following co-culture by ELISA after 72 h n = 3 technical replicates. Two-way ANOVA with Tukey’s multiple comparisons test. ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: Antigen-specific degranulation and granzyme B released by PD-L1 CAR-T (A) CD8 + T cell degranulation in response to HuCCT1 wild-type (WT) or PD-L1 knockout (KO) cells by flow cytometry after CAR-T co-culture at 6 h. (B) CD4 + T cell degranulation under the same conditions, showing CAR-T-mediated activity against WT but not KO cells. (C) Degranulation of CD8 + and CD4 + T cells in response to SNU1079 cells by flow cytometry after CART co-culture at 6 h compared with non-CAR-T controls. (D) Granzyme B release in HuCCT1 WT and KO cells following co-culture by ELISA after 72 h n = 3 technical replicates. Two-way ANOVA with Tukey’s multiple comparisons test. ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Knock-Out, Flow Cytometry, Co-Culture Assay, Activity Assay, Enzyme-linked Immunosorbent Assay, Standard Deviation

CAR-T release cytotoxic effector molecules and reduce tumor cell viability in an antigen-dependent manner (A and B) Granzyme B and perforin release from CAR-T and non-transduced T cells co-cultured with HuCCT1 (A) or SNU1079 (B) cells at 1:1 and 2:1 effector-to-target (E:T) ratios. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase viability assay of HuCCT1, PD-L1 knockout HuCCT1, or SNU1079 cells at 1:1 and 2:1 effector-to-target after 24 and 48 h. n = 6 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: CAR-T release cytotoxic effector molecules and reduce tumor cell viability in an antigen-dependent manner (A and B) Granzyme B and perforin release from CAR-T and non-transduced T cells co-cultured with HuCCT1 (A) or SNU1079 (B) cells at 1:1 and 2:1 effector-to-target (E:T) ratios. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase viability assay of HuCCT1, PD-L1 knockout HuCCT1, or SNU1079 cells at 1:1 and 2:1 effector-to-target after 24 and 48 h. n = 6 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD).

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Cell Culture, Luciferase, Viability Assay, Knock-Out, Standard Deviation

PD-L1 CAR-T disrupt and kill tumor cells in multicellular CSFE spheroids (A) Brightfield images of HuCCT1 and SNU1079 CSFE spheroids following 24 h co-culture with non-CAR-T or CAR-T at 1:1 or 2:1 effector-to-target (E:T) ratios. Quantification of spheroid area is shown. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. Scale bar is 300 µm (B) Live/dead staining (calcein-AM/propidium iodide) and luciferase viability assays of spheroids under the same conditions. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 100 µm.

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: PD-L1 CAR-T disrupt and kill tumor cells in multicellular CSFE spheroids (A) Brightfield images of HuCCT1 and SNU1079 CSFE spheroids following 24 h co-culture with non-CAR-T or CAR-T at 1:1 or 2:1 effector-to-target (E:T) ratios. Quantification of spheroid area is shown. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. Scale bar is 300 µm (B) Live/dead staining (calcein-AM/propidium iodide) and luciferase viability assays of spheroids under the same conditions. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. ∗ p value ≤ 0.05, ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 100 µm.

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Co-Culture Assay, Staining, Luciferase, Standard Deviation

Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in HuCCT1 cells (A) Schematic of experimental design for gemcitabine pretreatment. (B) Flow cytometry showing increased PD-L1 surface expression in HuCCT1 cells after Gem treatment, with maximal induction at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates, two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of HuCCT1 CSFE spheroids under the same conditions. ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in HuCCT1 cells (A) Schematic of experimental design for gemcitabine pretreatment. (B) Flow cytometry showing increased PD-L1 surface expression in HuCCT1 cells after Gem treatment, with maximal induction at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates, two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of HuCCT1 CSFE spheroids under the same conditions. ∗∗ p value ≤ 0.01, ∗∗∗ p value ≤ 0.001, ∗∗∗∗ p value ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Flow Cytometry, Expressing, Luciferase, Staining, Standard Deviation

Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in SNU1079 cells (A) Schematic depicting Gemcitabine pretreatment. (B) Flow cytometry showing Gemcitabine-induced PD-L1 upregulation in SNU1079 cells, with maximal effect at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates. Two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of SNU1079 CSFE spheroids under the same conditions. p value∗ ≤ 0.05, p value∗∗ ≤ 0.01, p value∗∗∗∗ ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Journal: Molecular Therapy Oncology

Article Title: CAR-T cells directed toward PD-L1 demonstrate potent, antigen-specific activity against cholangiocarcinoma: A proof of concept study

doi: 10.1016/j.omton.2026.201209

Figure Lengend Snippet: Gemcitabine upregulates PD-L1 and enhances CAR-T cytotoxicity in SNU1079 cells (A) Schematic depicting Gemcitabine pretreatment. (B) Flow cytometry showing Gemcitabine-induced PD-L1 upregulation in SNU1079 cells, with maximal effect at 0.2 μM for 48 h. n = 3 technical replicates. One-way ANOVA with Tukey’s multiple comparisons test. (C) Luciferase-based viability assays at both effector-to-target (E:T) ratios and at 24 and 48 h time points. n = 6 technical replicates. Two-way ANOVA with Šídák’s multiple comparisons test. (D) Representative live/dead staining of SNU1079 CSFE spheroids under the same conditions. p value∗ ≤ 0.05, p value∗∗ ≤ 0.01, p value∗∗∗∗ ≤ 0.0001. Results are reported as mean ± standard deviation (SD). Scale bar is 50 µm.

Article Snippet: Cas9 was combined with multi-guide RNA targeting PD-L1 (Synthego, Redwood City, CA, USA) in NEB buffer (New England Biolabs) at a 12:1 ratio and incubated to form RNP complexes.

Techniques: Flow Cytometry, Luciferase, Staining, Standard Deviation

Effect of β-AR antagonists and CRISPR/Cas9-mediated knockout on IL-17A production. Effect of (A) β 1 -AR antagonist (metoprolol) and (B) non-selective β-AR antagonist (bupranolol) on the production of IL-17A on memory Th cells. Activated memory Th cells were blocked for 30 min with metoprolol or bupranolol before treatment with nebivolol and incubated for 5 days. IL-17A was measured in cell culture supernatants. Pooled data are expressed as the mean ± SEM of four independent biological experiments. Effect of CRISPR/Cas9-mediated knockout of β2AR on nebivolol treatment in activated memory Th cells. Stimulated memory Th cells were electroporated with a CRISPR/Cas9 system targeted by multi-sgRNA against β 2 -AR or non-targeting genes. (C) The expression of ADRB2 at mRNA levels as verification in non-electroporated, non-targeting and β 2 multi-sgRNA conditions has shown as the relative amounts normalized to housekeeping RNA and compared to a control set to 1.0 (dotted line). The data of this figure are representative of three independent biological experiments. Three days after electroporation, memory Th cells were cultured with or without nebivolol for another 5 days and (D) A representative of IL-17A levels in cell culture supernatants in both control and knock-out β 2 -AR conditions was shown. ANOVA was followed by Tukey’s multiple comparison tests. *<0.05, **<0.01, ***p<0.001, and****p<0.0001. ns, non-significant.

Journal: Frontiers in Immunology

Article Title: The β 2 -adrenergic biased agonist nebivolol inhibits the development of Th17 and the response of memory Th17 cells in an NF-κB-dependent manner

doi: 10.3389/fimmu.2024.1446424

Figure Lengend Snippet: Effect of β-AR antagonists and CRISPR/Cas9-mediated knockout on IL-17A production. Effect of (A) β 1 -AR antagonist (metoprolol) and (B) non-selective β-AR antagonist (bupranolol) on the production of IL-17A on memory Th cells. Activated memory Th cells were blocked for 30 min with metoprolol or bupranolol before treatment with nebivolol and incubated for 5 days. IL-17A was measured in cell culture supernatants. Pooled data are expressed as the mean ± SEM of four independent biological experiments. Effect of CRISPR/Cas9-mediated knockout of β2AR on nebivolol treatment in activated memory Th cells. Stimulated memory Th cells were electroporated with a CRISPR/Cas9 system targeted by multi-sgRNA against β 2 -AR or non-targeting genes. (C) The expression of ADRB2 at mRNA levels as verification in non-electroporated, non-targeting and β 2 multi-sgRNA conditions has shown as the relative amounts normalized to housekeeping RNA and compared to a control set to 1.0 (dotted line). The data of this figure are representative of three independent biological experiments. Three days after electroporation, memory Th cells were cultured with or without nebivolol for another 5 days and (D) A representative of IL-17A levels in cell culture supernatants in both control and knock-out β 2 -AR conditions was shown. ANOVA was followed by Tukey’s multiple comparison tests. *<0.05, **<0.01, ***p<0.001, and****p<0.0001. ns, non-significant.

Article Snippet: According to published protocols ( , ), before electroporation briefly, 100 pmol of optimized multi single-guide RNA (sgRNA) (payload sequences attached in ) (Synthego, USA) and 50 pmol of Cas9 (Thermo Fisher, CA) per 1 million cells were mixed in 5 μl of Resuspension Buffer R and incubated at room temperature for 10 min to form the Cas9-ribonucleoprotein (RNP) complex.

Techniques: CRISPR, Knock-Out, Incubation, Cell Culture, Expressing, Control, Electroporation, Comparison

Effect of A) β1AR antagonist (metoprolol) and B) non-selective βARs antagonist (bupranolol) on the production of IL-17A on memory Th cells. Activated memory Th cells were blocked for 30 minutes with metoprolol or bupranolol before treatment with nebivolol and incubated for five days. IL-17A was measured in cell culture supernatants. Pooled data are expressed as the Mean ± SEM of four independent biological experiments. Effect of CRISPR/Cas9-mediated knockout of β2AR on nebivolol treatment in activated memory Th cells. Stimulated memory Th cells were electroporated with a CRISPR/Cas9 system targeted by multi-sgRNA against β2AR or non-targeting genes. C) The expression of ADRB2 at mRNA levels as verification in non-electroporated, non-targeting and β2 multi-sgRNA conditions has shown as the relative amounts normalized to housekeeping RNA and compared to a control set to 1.0 (dotted line). The data of this figure is representative of three independent biological experiments. Three days after electroporation, memory Th cells were cultured with or without nebivolol for another 5 days and D) A representative of IL-17A levels in cell culture supernatants in both control and knock-out β2AR conditions was shown. ANOVA was followed by Tukey’s multiple comparisons tests.

Journal: bioRxiv

Article Title: β2-Adrenergic Biased Agonist Nebivolol Inhibits the Development of Th17 and the Response of Memory Th17 Cells in an NF-κB-Dependent Manner

doi: 10.1101/2024.09.08.611829

Figure Lengend Snippet: Effect of A) β1AR antagonist (metoprolol) and B) non-selective βARs antagonist (bupranolol) on the production of IL-17A on memory Th cells. Activated memory Th cells were blocked for 30 minutes with metoprolol or bupranolol before treatment with nebivolol and incubated for five days. IL-17A was measured in cell culture supernatants. Pooled data are expressed as the Mean ± SEM of four independent biological experiments. Effect of CRISPR/Cas9-mediated knockout of β2AR on nebivolol treatment in activated memory Th cells. Stimulated memory Th cells were electroporated with a CRISPR/Cas9 system targeted by multi-sgRNA against β2AR or non-targeting genes. C) The expression of ADRB2 at mRNA levels as verification in non-electroporated, non-targeting and β2 multi-sgRNA conditions has shown as the relative amounts normalized to housekeeping RNA and compared to a control set to 1.0 (dotted line). The data of this figure is representative of three independent biological experiments. Three days after electroporation, memory Th cells were cultured with or without nebivolol for another 5 days and D) A representative of IL-17A levels in cell culture supernatants in both control and knock-out β2AR conditions was shown. ANOVA was followed by Tukey’s multiple comparisons tests.

Article Snippet: According to published protocols ( , ), before electroporation briefly, 100 pmol of optimized multi single-guide RNA (sgRNA) (payload sequences attached in supplementary table1) (Synthego, USA) and 50 pmol of Cas9 (Thermofisher, CA) per 1 million cells were mixed in 5 μL of Resuspension Buffer R and incubated at room temperature for 10 minutes to form the Cas9-ribonucleoprotein (RNP) complex.

Techniques: Incubation, Cell Culture, CRISPR, Knock-Out, Expressing, Control, Electroporation