ov 90 Search Results


97
ATCC streptomyces clavuligerus
Streptomyces Clavuligerus, supplied by ATCC, used in various techniques. Bioz Stars score: 97/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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ATCC crl 11732 tm
Crl 11732 Tm, supplied by ATCC, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Jackson Laboratory ov-90 folr1 knockout cells
Ultrahigh-content imaging enables the identification of <t>FOLR1</t> as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.
Ov 90 Folr1 Knockout Cells, supplied by Jackson Laboratory, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
clea japan inc ov- 90 cell implants
Ultrahigh-content imaging enables the identification of <t>FOLR1</t> as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.
Ov 90 Cell Implants, supplied by clea japan inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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90
Janvier Labs ov-90 cells
Ultrahigh-content imaging enables the identification of <t>FOLR1</t> as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.
Ov 90 Cells, supplied by Janvier Labs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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88
Santa Cruz Biotechnology ov 90 cells
Ultrahigh-content imaging enables the identification of <t>FOLR1</t> as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.
Ov 90 Cells, supplied by Santa Cruz Biotechnology, used in various techniques. Bioz Stars score: 88/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Ultrahigh-content imaging enables the identification of FOLR1 as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: Ultrahigh-content imaging enables the identification of FOLR1 as potential target for high-grade serous epithelial OvCa. ( a ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in HGSOC samples (each number indicates an individual patient sample). Individual stainings are shown in . Scale bar represents 100 µm. ( b ) Co-expression of EPCAM (cyan) and FOLR1 (magenta) in a selection of healthy tissues. Individual stainings and additional healthy samples are presented in . Scale bar represents 100 µm. ( c ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from primary OvCa tissue. ( d ) Quantification of FOLR1 expression on a single-cell level on epithelial cells from healthy tissue.

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: Imaging, Expressing, Selection

In vitro evaluation of novel CAR T cell candidates. ( a ) Schematic diagram of the anti-FOLR1 CAR library designed with varying hinges (IgG4 or CD8α), scFv sequences, and scFv orientations. FOLR1 binding scFvs are derived from either MORAb-003 (anti-FOLR1 CAR candidates A–D) or M9346A4 (anti-FOLR1 CAR candidates E–H). ( b ) Anti-FOLR1 CAR expression was detected via anti-LNGFR staining and flow cytometry. Each bar represents the mean ± SEM of three donors ( n = 3). ( c ) Representative killing kinetics of the different anti-FOLR1 CAR T cell candidates with OV-90 wt or FOLR1 KO cells in co-culture at an effector-to-target ratio of 2:1 (additional T cell donors are shown in ). Each data point represents mean ± SEM ( n = 3). ( d ) Activation markers CD25, CD69, and 4-1BB expressed by CAR T cells after 48 h of co-culture assay. ( e ) Secreted cytokines GM-CSF, IFN-γ, IL-2, and TNF-α after 24 h of co-culture with OV-90 wt or FOLR1 KO cells. ( f ) Expressions of Granzyme B by anti-FOLR1 CAR T cells were analyzed after 24 h of co-culture with OV-90 wt or FOLR1 KO cells. Intracellular Granzyme B was detected via flow cytometry. Each bar represents the mean value ± SEM of three replicates from three donors ( n = 9).

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: In vitro evaluation of novel CAR T cell candidates. ( a ) Schematic diagram of the anti-FOLR1 CAR library designed with varying hinges (IgG4 or CD8α), scFv sequences, and scFv orientations. FOLR1 binding scFvs are derived from either MORAb-003 (anti-FOLR1 CAR candidates A–D) or M9346A4 (anti-FOLR1 CAR candidates E–H). ( b ) Anti-FOLR1 CAR expression was detected via anti-LNGFR staining and flow cytometry. Each bar represents the mean ± SEM of three donors ( n = 3). ( c ) Representative killing kinetics of the different anti-FOLR1 CAR T cell candidates with OV-90 wt or FOLR1 KO cells in co-culture at an effector-to-target ratio of 2:1 (additional T cell donors are shown in ). Each data point represents mean ± SEM ( n = 3). ( d ) Activation markers CD25, CD69, and 4-1BB expressed by CAR T cells after 48 h of co-culture assay. ( e ) Secreted cytokines GM-CSF, IFN-γ, IL-2, and TNF-α after 24 h of co-culture with OV-90 wt or FOLR1 KO cells. ( f ) Expressions of Granzyme B by anti-FOLR1 CAR T cells were analyzed after 24 h of co-culture with OV-90 wt or FOLR1 KO cells. Intracellular Granzyme B was detected via flow cytometry. Each bar represents the mean value ± SEM of three replicates from three donors ( n = 9).

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: In Vitro, Binding Assay, Derivative Assay, Expressing, Staining, Flow Cytometry, Co-Culture Assay, Activation Assay, Co-culture Assay

Anti-FOLR1 CAR T candidates efficiently eradicate OV-90 wt tumors in vivo. ( a ) Scheme of this study evaluating intravenously injected CAR T cell efficacy against subcutaneous OV-90 wt xenograft tumors. ( b ) Representative bioluminescence images of individual OV-90 xenograft tumor-bearing NSG mice post CAR T cell injection. ( c ) Quantification of bioluminescence as total flux in photons per second (p/s) of the different experimental groups after CAR T cell injection over 21 d. Data points represent mean ± SEM. Human leucocyte expansion in peripheral blood of injected mice was analyzed by flow cytometry over time. ( d ) Human CD45 expression and ( e ) CAR-positive cells relative to mouse CD45 cells in blood samples collected at day 7, 14, and 21 post T cell injection were measured. Data are shown as mean ± SEM. On day 21 post T cell injection, mice were sacrificed, and the respective organs were collected and dissociated for ex vivo analysis by flow cytometry. ( f ) Human CD4 and CD8 frequencies as well as ( g ) CAR expression (detected as LNGFR positive) among human CD45 in mouse bone marrow, spleen, lung, and tumor were analyzed, respectively. Each data point represents an individual mouse and horizontal lines represent the mean of the respective group. ( h ) Secretion of human cytokines was analyzed in peripheral blood samples over time. Plasma was isolated from blood samples collected on days 7, 14, and 21 post T cell injection, and cytokine levels were subsequently determined with the human MACSplex Cytokine 12 Kit. Data are shown as mean ± SEM.

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: Anti-FOLR1 CAR T candidates efficiently eradicate OV-90 wt tumors in vivo. ( a ) Scheme of this study evaluating intravenously injected CAR T cell efficacy against subcutaneous OV-90 wt xenograft tumors. ( b ) Representative bioluminescence images of individual OV-90 xenograft tumor-bearing NSG mice post CAR T cell injection. ( c ) Quantification of bioluminescence as total flux in photons per second (p/s) of the different experimental groups after CAR T cell injection over 21 d. Data points represent mean ± SEM. Human leucocyte expansion in peripheral blood of injected mice was analyzed by flow cytometry over time. ( d ) Human CD45 expression and ( e ) CAR-positive cells relative to mouse CD45 cells in blood samples collected at day 7, 14, and 21 post T cell injection were measured. Data are shown as mean ± SEM. On day 21 post T cell injection, mice were sacrificed, and the respective organs were collected and dissociated for ex vivo analysis by flow cytometry. ( f ) Human CD4 and CD8 frequencies as well as ( g ) CAR expression (detected as LNGFR positive) among human CD45 in mouse bone marrow, spleen, lung, and tumor were analyzed, respectively. Each data point represents an individual mouse and horizontal lines represent the mean of the respective group. ( h ) Secretion of human cytokines was analyzed in peripheral blood samples over time. Plasma was isolated from blood samples collected on days 7, 14, and 21 post T cell injection, and cytokine levels were subsequently determined with the human MACSplex Cytokine 12 Kit. Data are shown as mean ± SEM.

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: In Vivo, Injection, Flow Cytometry, Expressing, Ex Vivo, Clinical Proteomics, Isolation

In vitro evaluation of optimized anti-FOLR1 CAR T cells. ( a ) Schematic diagram of the second generation anti-FOLR1 CAR T cell designed with CD8α hinge and CD8α transmembrane domain and scFv in Vh-Vl orientation without truncated LNGFR reporter gene. Anti-FOLR1 CAR candidate A or untransduced T cells (Mock) produced with the CliniMACS Prodigy ® TCT process were co-cultured for 48 h with OvCa cell lines at an effector cell-to-target cell ratio of 2:1. ( b ) Co-culture experiments of GFP-expressing target cell lines OV-90 FOLR1 KO, OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 with anti-FOLR1 CAR T cell candidate A. Data points of each group are normalized to baseline (defined as 100% confluency at the first timepoint (T = 0 h)), and each data point represents mean ± SEM ( n = 3). Anti-FOLR1 CAR T cells express various levels of activation markers. ( c ) After 48 h of co-culture with the different target cells, CAR T cells were assessed by flow cytometry for expressions of activation markers CD25, CD69, and CD137. Each bar represents the mean ± SEM ( n = 3). ( d ) Anti-FOLR1 CAR T cells antigen-dependently secrete cytokines in co-culture with OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 cells, whereas OV-90 FOLR1 KO cells did not induce cytokine secretion by CAR T cells. Supernatants were collected after 24 h of co-culture, and cytokine concentration was subsequently determined with the human MACSplex Cytokine 12 Kit. Each bar represents the mean ± SEM ( n = 3). ( e ) Anti-FOLR1 CAR T cells express Granzyme B antigen dependently in co-culture with OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 cells, whereas OV-90 FOLR1 KO cells did not induce Granzyme B expression in CAR T cells. T cells were collected after 24 h of co-culture and overnight block of protein secretion by incubation with Brefeldin A (1 μg/mL). Cells were subsequently fixed, stained for CD8 surface marker, and permeabilized, and finally, intracellular Granzyme B was detected via flow cytometry. Each bar represents the mean ± SEM ( n = 3).

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: In vitro evaluation of optimized anti-FOLR1 CAR T cells. ( a ) Schematic diagram of the second generation anti-FOLR1 CAR T cell designed with CD8α hinge and CD8α transmembrane domain and scFv in Vh-Vl orientation without truncated LNGFR reporter gene. Anti-FOLR1 CAR candidate A or untransduced T cells (Mock) produced with the CliniMACS Prodigy ® TCT process were co-cultured for 48 h with OvCa cell lines at an effector cell-to-target cell ratio of 2:1. ( b ) Co-culture experiments of GFP-expressing target cell lines OV-90 FOLR1 KO, OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 with anti-FOLR1 CAR T cell candidate A. Data points of each group are normalized to baseline (defined as 100% confluency at the first timepoint (T = 0 h)), and each data point represents mean ± SEM ( n = 3). Anti-FOLR1 CAR T cells express various levels of activation markers. ( c ) After 48 h of co-culture with the different target cells, CAR T cells were assessed by flow cytometry for expressions of activation markers CD25, CD69, and CD137. Each bar represents the mean ± SEM ( n = 3). ( d ) Anti-FOLR1 CAR T cells antigen-dependently secrete cytokines in co-culture with OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 cells, whereas OV-90 FOLR1 KO cells did not induce cytokine secretion by CAR T cells. Supernatants were collected after 24 h of co-culture, and cytokine concentration was subsequently determined with the human MACSplex Cytokine 12 Kit. Each bar represents the mean ± SEM ( n = 3). ( e ) Anti-FOLR1 CAR T cells express Granzyme B antigen dependently in co-culture with OV-90 wt, Caov-3, SKOV-3, and OVCAR-3 cells, whereas OV-90 FOLR1 KO cells did not induce Granzyme B expression in CAR T cells. T cells were collected after 24 h of co-culture and overnight block of protein secretion by incubation with Brefeldin A (1 μg/mL). Cells were subsequently fixed, stained for CD8 surface marker, and permeabilized, and finally, intracellular Granzyme B was detected via flow cytometry. Each bar represents the mean ± SEM ( n = 3).

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: In Vitro, Produced, Cell Culture, Co-Culture Assay, Expressing, Activation Assay, Flow Cytometry, Concentration Assay, Blocking Assay, Incubation, Staining, Marker

Evaluation of CAR T cells in advanced in vitro assays. ( a ) FOLR1-directed CAR and untransduced T cells were co-cultured with GFP-expressing OV-90 spheroids for 16 h. Spheroids were analyzed for GFP expression and CD3 cell presence. The scale bar represents 100 µm for each condition. ( b ) FOLR1-directed CAR and untransduced T cells were co-cultured with GFP-expressing OV-90 spheroids for 4 h. Spheroids were analyzed by light sheet microscopy for CAR T cell infiltration. Light sheet microscopy of OV-90 (left graph) shows FOLR1 expression in OV-90 spheroid. Middle and right graph color coding for anti-CD3 stains indicates distance of CD3 cells to surface. Number of infiltrated CAR T cells and penetration depth were quantified. Fold change is based on N/µm 3 measurements. Patient-derived OvCa samples were dissociated, and FOLR1 expression was analyzed by flow cytometry. ( c ) FOLR1-directed CAR T cells were co-cultured with dissociated primary OvCa tumor for 16 h. Thereafter, the frequency of FOLR1-expressing tumor cells was analyzed by flow cytometry. ( d ) After co-culture with OvCa tumor cells, FOLR1 CAR T cells were analyzed for expression of the indicated surface markers by flow cytometry. ( e ) Concentration of secreted cytokines was determined in the co-culture supernatant.

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: Evaluation of CAR T cells in advanced in vitro assays. ( a ) FOLR1-directed CAR and untransduced T cells were co-cultured with GFP-expressing OV-90 spheroids for 16 h. Spheroids were analyzed for GFP expression and CD3 cell presence. The scale bar represents 100 µm for each condition. ( b ) FOLR1-directed CAR and untransduced T cells were co-cultured with GFP-expressing OV-90 spheroids for 4 h. Spheroids were analyzed by light sheet microscopy for CAR T cell infiltration. Light sheet microscopy of OV-90 (left graph) shows FOLR1 expression in OV-90 spheroid. Middle and right graph color coding for anti-CD3 stains indicates distance of CD3 cells to surface. Number of infiltrated CAR T cells and penetration depth were quantified. Fold change is based on N/µm 3 measurements. Patient-derived OvCa samples were dissociated, and FOLR1 expression was analyzed by flow cytometry. ( c ) FOLR1-directed CAR T cells were co-cultured with dissociated primary OvCa tumor for 16 h. Thereafter, the frequency of FOLR1-expressing tumor cells was analyzed by flow cytometry. ( d ) After co-culture with OvCa tumor cells, FOLR1 CAR T cells were analyzed for expression of the indicated surface markers by flow cytometry. ( e ) Concentration of secreted cytokines was determined in the co-culture supernatant.

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: In Vitro, Cell Culture, Expressing, Microscopy, Derivative Assay, Flow Cytometry, Co-Culture Assay, Concentration Assay

Optimized anti-FOLR1 CAR T cells efficiently and specifically eradicate tumors in vivo. ( a ) Representative bioluminescence images of individual OV-90 xenograft tumor-bearing NSG mice post CAR T cell injection. ( b ) Quantification of bioluminescence as total flux in photons per second (p/s) of the different experimental groups after CAR T cell injection over 21 d. Data points represent mean ± SEM. Human leucocyte expansion in peripheral blood of injected mice was analyzed by flow cytometry over time. ( c ) Quantification of tumor size of the different experimental groups before and after CAR T cell injection. Data points represent mean ± SEM. ( d ) Human CD45 expressions in blood samples collected at days 7, 14, and 21 post T cell injection were measured. Data are shown as mean ± SEM. ( e ) CAR T cell count among murine CD45 in mouse blood, bone marrow, spleen, and tumor was analyzed, respectively. On day 21 post T cell injection, mice were sacrificed, and the respective organs were collected and dissociated for ex vivo analysis by flow cytometry. Each data point represents an individual mouse, and horizontal lines represent the mean of the respective group.

Journal: Cancers

Article Title: Preclinical Evaluation of Novel Folate Receptor 1-Directed CAR T Cells for Ovarian Cancer

doi: 10.3390/cancers16020333

Figure Lengend Snippet: Optimized anti-FOLR1 CAR T cells efficiently and specifically eradicate tumors in vivo. ( a ) Representative bioluminescence images of individual OV-90 xenograft tumor-bearing NSG mice post CAR T cell injection. ( b ) Quantification of bioluminescence as total flux in photons per second (p/s) of the different experimental groups after CAR T cell injection over 21 d. Data points represent mean ± SEM. Human leucocyte expansion in peripheral blood of injected mice was analyzed by flow cytometry over time. ( c ) Quantification of tumor size of the different experimental groups before and after CAR T cell injection. Data points represent mean ± SEM. ( d ) Human CD45 expressions in blood samples collected at days 7, 14, and 21 post T cell injection were measured. Data are shown as mean ± SEM. ( e ) CAR T cell count among murine CD45 in mouse blood, bone marrow, spleen, and tumor was analyzed, respectively. On day 21 post T cell injection, mice were sacrificed, and the respective organs were collected and dissociated for ex vivo analysis by flow cytometry. Each data point represents an individual mouse, and horizontal lines represent the mean of the respective group.

Article Snippet: Cell line-derived xenografts (CDXs) were generated by injection of 1 × 10 7 OV-90 or OV-90 FOLR1 knockout cells s.c. into the right flank of NOD SCID gamma (NSG; NOD.CgPrkdcscidIl2rgtm1Wjl/SzJ) mice (Jackson Laboratory, Bar Harbor, ME, USA, provided by Charles River).

Techniques: In Vivo, Injection, Flow Cytometry, Cell Counting, Ex Vivo