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invivomab anti mouse cd22 antibody  (Bio X Cell)


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    Bio X Cell invivomab anti mouse cd22 antibody
    Invivomab Anti Mouse Cd22 Antibody, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 94/100, based on 19 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/invivomab+anti+mouse+cd22+antibody/pm41896238-489-6-12?v=Bio+X+Cell
    Average 94 stars, based on 19 article reviews
    invivomab anti mouse cd22 antibody - by Bioz Stars, 2026-07
    94/100 stars

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    Expression profile of <t>CD22</t> in circulating immune cell subsets from patients with NMOSD and controls. A Single-cell sequencing analysis of immune cells from human peripheral blood samples from patients with NMOSD and healthy controls (total: 90,381 cells from 5 NMOSD patients and 5 controls; control: 43,985 cells; NMOSD: 46,396 cells). B , C CD22 expression profiles of B cells B and B-cell subsets C from patients with NMOSD and healthy controls; n = 5 per group. D CD22 expression profiles across various immune cell subsets in patients with NMOSD and healthy controls at the individual patient level; n = 5 per group. E Gating strategy for human circulating immune cell subsets, including neutrophils (CD45 + CD3 − CD16 + ), monocytes (CD45 + CD16 − CD14 + ), B cells (CD45 + CD3 − CD19 + ), CD4 + T cells (CD45 + CD3 − CD4 + ), CD8 + T cells (CD45 + CD3 − CD8 + ) and NK cells (CD45 + CD3 − CD56 + ). F Summarized bar graph showing CD22 expression in monocytes, neutrophils, B cells, CD4 + T cells, CD8 + T cells and NK cells; n = 6 per group. G Visualization of circulating exosomes from patients with NMOSD and controls. H Flow cytometry gating strategy and bar graph showing microglia-derived exosomes (CD22 + TMEM119 + ); n = 8 per group. The data are presented as the mean ± SEM. ** p < 0.01
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    Expression profile of <t>CD22</t> in circulating immune cell subsets from patients with NMOSD and controls. A Single-cell sequencing analysis of immune cells from human peripheral blood samples from patients with NMOSD and healthy controls (total: 90,381 cells from 5 NMOSD patients and 5 controls; control: 43,985 cells; NMOSD: 46,396 cells). B , C CD22 expression profiles of B cells B and B-cell subsets C from patients with NMOSD and healthy controls; n = 5 per group. D CD22 expression profiles across various immune cell subsets in patients with NMOSD and healthy controls at the individual patient level; n = 5 per group. E Gating strategy for human circulating immune cell subsets, including neutrophils (CD45 + CD3 − CD16 + ), monocytes (CD45 + CD16 − CD14 + ), B cells (CD45 + CD3 − CD19 + ), CD4 + T cells (CD45 + CD3 − CD4 + ), CD8 + T cells (CD45 + CD3 − CD8 + ) and NK cells (CD45 + CD3 − CD56 + ). F Summarized bar graph showing CD22 expression in monocytes, neutrophils, B cells, CD4 + T cells, CD8 + T cells and NK cells; n = 6 per group. G Visualization of circulating exosomes from patients with NMOSD and controls. H Flow cytometry gating strategy and bar graph showing microglia-derived exosomes (CD22 + TMEM119 + ); n = 8 per group. The data are presented as the mean ± SEM. ** p < 0.01
    Anti Mouse Cd22 Antibody, supplied by Bio X Cell, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/invivomab+anti+mouse+cd22+antibody/pm38851088-55-42-49?v=Bio+X+Cell
    Average 94 stars, based on 1 article reviews
    anti mouse cd22 antibody - by Bioz Stars, 2026-07
    94/100 stars
      Buy from Supplier

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    Expression profile of CD22 in circulating immune cell subsets from patients with NMOSD and controls. A Single-cell sequencing analysis of immune cells from human peripheral blood samples from patients with NMOSD and healthy controls (total: 90,381 cells from 5 NMOSD patients and 5 controls; control: 43,985 cells; NMOSD: 46,396 cells). B , C CD22 expression profiles of B cells B and B-cell subsets C from patients with NMOSD and healthy controls; n = 5 per group. D CD22 expression profiles across various immune cell subsets in patients with NMOSD and healthy controls at the individual patient level; n = 5 per group. E Gating strategy for human circulating immune cell subsets, including neutrophils (CD45 + CD3 − CD16 + ), monocytes (CD45 + CD16 − CD14 + ), B cells (CD45 + CD3 − CD19 + ), CD4 + T cells (CD45 + CD3 − CD4 + ), CD8 + T cells (CD45 + CD3 − CD8 + ) and NK cells (CD45 + CD3 − CD56 + ). F Summarized bar graph showing CD22 expression in monocytes, neutrophils, B cells, CD4 + T cells, CD8 + T cells and NK cells; n = 6 per group. G Visualization of circulating exosomes from patients with NMOSD and controls. H Flow cytometry gating strategy and bar graph showing microglia-derived exosomes (CD22 + TMEM119 + ); n = 8 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: Expression profile of CD22 in circulating immune cell subsets from patients with NMOSD and controls. A Single-cell sequencing analysis of immune cells from human peripheral blood samples from patients with NMOSD and healthy controls (total: 90,381 cells from 5 NMOSD patients and 5 controls; control: 43,985 cells; NMOSD: 46,396 cells). B , C CD22 expression profiles of B cells B and B-cell subsets C from patients with NMOSD and healthy controls; n = 5 per group. D CD22 expression profiles across various immune cell subsets in patients with NMOSD and healthy controls at the individual patient level; n = 5 per group. E Gating strategy for human circulating immune cell subsets, including neutrophils (CD45 + CD3 − CD16 + ), monocytes (CD45 + CD16 − CD14 + ), B cells (CD45 + CD3 − CD19 + ), CD4 + T cells (CD45 + CD3 − CD4 + ), CD8 + T cells (CD45 + CD3 − CD8 + ) and NK cells (CD45 + CD3 − CD56 + ). F Summarized bar graph showing CD22 expression in monocytes, neutrophils, B cells, CD4 + T cells, CD8 + T cells and NK cells; n = 6 per group. G Visualization of circulating exosomes from patients with NMOSD and controls. H Flow cytometry gating strategy and bar graph showing microglia-derived exosomes (CD22 + TMEM119 + ); n = 8 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Expressing, Sequencing, Control, Flow Cytometry, Derivative Assay

    CD22 expression profile in microglia and leukocytes from NMOSD mice. A Flow cytometry gating strategy for microglia (CD45 + CD11b int ), monocytes (CD45 high CD11b + Ly6C + ), neutrophils (CD45 high CD11b + Ly6G + ), B cells (CD45 high CD3 − CD19 + ), CD4 + T cells (CD45 high CD3 + CD4 + ), CD8 + T cells (CD45 high CD3 + CD8 + ) and NK cells (CD45 high CD3 − NK1.1 + ). B Histograms showing CD22-expressing cell subsets in sham and NMOSD mice. C , D Bar graphs showing the percentage of each cell type expressing CD22 in brain and spleen tissues from NMOSD mice; n = 8 per group. The data are presented as the mean ± SEM. * p < 0.05, ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: CD22 expression profile in microglia and leukocytes from NMOSD mice. A Flow cytometry gating strategy for microglia (CD45 + CD11b int ), monocytes (CD45 high CD11b + Ly6C + ), neutrophils (CD45 high CD11b + Ly6G + ), B cells (CD45 high CD3 − CD19 + ), CD4 + T cells (CD45 high CD3 + CD4 + ), CD8 + T cells (CD45 high CD3 + CD8 + ) and NK cells (CD45 high CD3 − NK1.1 + ). B Histograms showing CD22-expressing cell subsets in sham and NMOSD mice. C , D Bar graphs showing the percentage of each cell type expressing CD22 in brain and spleen tissues from NMOSD mice; n = 8 per group. The data are presented as the mean ± SEM. * p < 0.05, ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Expressing, Flow Cytometry

    CD22 blockade exacerbates NMOSD pathology in mice. A T2WI scans revealed demyelinating lesions in the indicated groups of NMOSD mice. The lesion areas are marked with red lines. Scale bar: 2 mm. B Bar graphs depicting the volume of demyelinating lesions in the indicated groups of NMOSD mice; n = 10 per group. C Immunostaining of the indicated markers (GFAP, AQP4, or MBP) in brain tissue sections from NMOSD mice receiving the anti-CD22 mAb or IgG control on day 3 after NMOSD induction. The white lines indicate areas with loss of AQP4, GFAP or MBP. Scale bar: 3,000 μm (left), 100 μm (right). D Bar graphs illustrating demyelination in NMOSD mice receiving anti-CD22 mAb or IgG control; n = 10 per group. The data are expressed as the mean ± SEM. ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: CD22 blockade exacerbates NMOSD pathology in mice. A T2WI scans revealed demyelinating lesions in the indicated groups of NMOSD mice. The lesion areas are marked with red lines. Scale bar: 2 mm. B Bar graphs depicting the volume of demyelinating lesions in the indicated groups of NMOSD mice; n = 10 per group. C Immunostaining of the indicated markers (GFAP, AQP4, or MBP) in brain tissue sections from NMOSD mice receiving the anti-CD22 mAb or IgG control on day 3 after NMOSD induction. The white lines indicate areas with loss of AQP4, GFAP or MBP. Scale bar: 3,000 μm (left), 100 μm (right). D Bar graphs illustrating demyelination in NMOSD mice receiving anti-CD22 mAb or IgG control; n = 10 per group. The data are expressed as the mean ± SEM. ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Immunostaining, Control

    CD22 blockade augments the inflammatory activity of microglia in NMOSD mice. A Flow cytometry gating strategy for inflammatory markers (CD86, IL-1β and TNF-α) and immune regulatory markers (CD206, IL-10 and TGF-β) in microglia. B Bar graph showing the effects of CD22 blockade on the counts of microglia, brain-infiltrating monocytes, neutrophils, B cells, CD4 + T cells and CD8 + T cells in NMOSD mice; n = 10 per group. C Flow cytometry results showing the effects of CD22 blockade on the expression of inflammatory markers (CD86, IL-1β and TNF-α) and immunoregulatory markers (CD206, IL-10 and TGF-β) in microglia from NMOSD mice; n = 6 per group. D Immunostaining showing Iba1 + cells in the indicated groups. The white lines delineate the areas with an accumulation of Iba1 + cells. Scale bar: 100 μm. E Bar graph showing that CD22 blockade enhanced the accumulation of Iba1 + cells. n = 10 per group. F , G Skeletal analysis showing that the lengths of microglial processes were reduced on day 3 in mice treated with the anti-CD22 mAb; n = 6 per group. H Sholl analysis summarizing the results of microglial processes in NMOSD mice receiving the anti-CD22 mAb or IgG control. The data are presented as the mean ± SEM. * p < 0.05, ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: CD22 blockade augments the inflammatory activity of microglia in NMOSD mice. A Flow cytometry gating strategy for inflammatory markers (CD86, IL-1β and TNF-α) and immune regulatory markers (CD206, IL-10 and TGF-β) in microglia. B Bar graph showing the effects of CD22 blockade on the counts of microglia, brain-infiltrating monocytes, neutrophils, B cells, CD4 + T cells and CD8 + T cells in NMOSD mice; n = 10 per group. C Flow cytometry results showing the effects of CD22 blockade on the expression of inflammatory markers (CD86, IL-1β and TNF-α) and immunoregulatory markers (CD206, IL-10 and TGF-β) in microglia from NMOSD mice; n = 6 per group. D Immunostaining showing Iba1 + cells in the indicated groups. The white lines delineate the areas with an accumulation of Iba1 + cells. Scale bar: 100 μm. E Bar graph showing that CD22 blockade enhanced the accumulation of Iba1 + cells. n = 10 per group. F , G Skeletal analysis showing that the lengths of microglial processes were reduced on day 3 in mice treated with the anti-CD22 mAb; n = 6 per group. H Sholl analysis summarizing the results of microglial processes in NMOSD mice receiving the anti-CD22 mAb or IgG control. The data are presented as the mean ± SEM. * p < 0.05, ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Activity Assay, Flow Cytometry, Expressing, Immunostaining, Control

    Microglia contribute to exacerbated NMOSD pathology in mice receiving anti-CD22 mAb. A Flow chart depicting drug administration and the indicated assessment. On day 14 after microglial depletion via PLX5622, wild-type mice received intrastriatal injections of anti-CD22 mAb after NMOSD induction. B Assessment of microglia following PLX5622 administration; n = 7 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines outline lesion areas. Scale bar: 2 mm. D Bar graph showing lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: Microglia contribute to exacerbated NMOSD pathology in mice receiving anti-CD22 mAb. A Flow chart depicting drug administration and the indicated assessment. On day 14 after microglial depletion via PLX5622, wild-type mice received intrastriatal injections of anti-CD22 mAb after NMOSD induction. B Assessment of microglia following PLX5622 administration; n = 7 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines outline lesion areas. Scale bar: 2 mm. D Bar graph showing lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques:

    Gr-1 + myeloid cells contribute to exacerbating NMOSD pathology in mice receiving anti-CD22 mAb. A Flow chart depicting the drug administration and experimental procedures. Mice received anti-Gr-1 mAb before and one day after NMOSD induction. B Assessment of Gr-1 + myeloid cells in mice receiving anti-Gr-1 mAb or IgG control; n = 6 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines mark the lesion areas. D Bar graph depicting lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: Gr-1 + myeloid cells contribute to exacerbating NMOSD pathology in mice receiving anti-CD22 mAb. A Flow chart depicting the drug administration and experimental procedures. Mice received anti-Gr-1 mAb before and one day after NMOSD induction. B Assessment of Gr-1 + myeloid cells in mice receiving anti-Gr-1 mAb or IgG control; n = 6 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines mark the lesion areas. D Bar graph depicting lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Control

    CD22 blockade exacerbated NMOSD pathology in mice receiving anti-CD20 mAb. A Flow chart depicting the experimental procedures. The mice received anti-CD20 mAb three days prior to NMOSD induction. B Assessment of B cells in mice receiving anti-CD20 mAb; n = 6 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines mark the lesion areas. D Bar graph showing lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: CD22 blockade exacerbated NMOSD pathology in mice receiving anti-CD20 mAb. A Flow chart depicting the experimental procedures. The mice received anti-CD20 mAb three days prior to NMOSD induction. B Assessment of B cells in mice receiving anti-CD20 mAb; n = 6 per group. C T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Red lines mark the lesion areas. D Bar graph showing lesion volume in the indicated groups of NMOSD mice; n = 6 per group. The data are presented as the mean ± SEM. ** p < 0.01

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques:

    The detrimental effects of CD22 blockade on NMOSD pathology involve SYK-GSK3β signaling. A Flow chart depicting the experimental procedures. The mice received R406 starting from the onset of modeling until they were sacrificed. B , C Assessment of the phosphorylation levels of SYK and GSK3β in the indicated groups of NMOSD mice; n = 4 per group. D T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Bar graph showing lesion volume in the indicated groups of NMOSD mice. Red lines mark the lesion areas; n = 6 per group. The data are presented as the mean ± SEM. * p < 0.05

    Journal: Journal of Neuroinflammation

    Article Title: CD22 blockade exacerbates neuroinflammation in Neuromyelitis optica spectrum disorder

    doi: 10.1186/s12974-024-03305-2

    Figure Lengend Snippet: The detrimental effects of CD22 blockade on NMOSD pathology involve SYK-GSK3β signaling. A Flow chart depicting the experimental procedures. The mice received R406 starting from the onset of modeling until they were sacrificed. B , C Assessment of the phosphorylation levels of SYK and GSK3β in the indicated groups of NMOSD mice; n = 4 per group. D T2WI scans showing brain lesions in the indicated groups of NMOSD mice. Bar graph showing lesion volume in the indicated groups of NMOSD mice. Red lines mark the lesion areas; n = 6 per group. The data are presented as the mean ± SEM. * p < 0.05

    Article Snippet: An anti-CD22 monoclonal antibody (clone ID: CY34.1; BioXcell, West Lebanon, NH) was given to NMOSD mice via intrastriatal injection at a dose of 100 μg/mouse to deplete CD22-expressing cells [ ].

    Techniques: Phospho-proteomics