Review



hla-dr antibody, anti-human, readye_lease  (Miltenyi Biotec)


Bioz Verified Symbol Miltenyi Biotec is a verified supplier
Bioz Manufacturer Symbol Miltenyi Biotec manufactures this product  
  • Logo
  • About
  • News
  • Press Release
  • Team
  • Advisors
  • Partners
  • Contact
  • Bioz Stars
  • Bioz vStars
  • 93

    Structured Review

    Miltenyi Biotec hla-dr antibody, anti-human, readye_lease
    Hla Dr Antibody, Anti Human, Readye Lease, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 93/100, based on 5 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/HLA-DR+Antibody%2C+anti-human%2C+REAdye_lease/custom%40130-123-076%4042502392
    Average 93 stars, based on 5 article reviews
    hla-dr antibody, anti-human, readye_lease - by Bioz Stars, 2026-09
    93/100 stars

    Images

    Related Articles

    Incubation:

    Article Title: 3D-bioprinted kartogenin-laden hydrogel promotes cartilage regeneration via smad1/5/9-mediated chondrogenesis of bone marrow stromal cells
    Article Snippet: Flow cytometric analysis was performed using a Fortessa flow cytometer (BD Biosciences, USA) to assess BMSC markers. .. After PBS washing, cells were incubated with fluorochrome-conjugated antibodies against CD44, CD90, CD105, CD73, CD146, CD45, CD34, and HLA-DR (Miltenyi Biotec, USA), along with corresponding isotype controls. .. Stained cells were incubated on ice for 30 minutes, washed with MACS buffer (Miltenyi Biotec, USA), and resuspended in the same buffer for analysis.

    other:

    Article Title: What Is the Role of Giant Endosomal Sorting Complexes Required for Transport (ESCRT) Structures in T Cell Activation?
    Article Snippet: HLA‐DR, DP, DQ‐APC , Human , 1:50 , REAfinityTM Miltenyi Biotec , 130‐123‐843, 130‐124‐037.

    Flow Cytometry:

    Article Title: A novel Chimeric Antigen Receptor (CAR) - strategy to target EGFR VIII -mutated glioblastoma cells via macrophages.
    Article Snippet: .. Flow cytometry was performed by using classical myeloid markers such as CD11b (Miltenyi Biotec Cat#: 130-110-558), HLA-DR(MHC-II) (Miltenyi Biotec Cat#: 130-111-795) as well as M1 and M2-skewed markers like CD80(Miltenyi Biotec Cat#: 130-117-719), CD86(Miltenyi Biotec Cat#: 130-116- 164), CD206(Miltenyi Biotec Cat#: 130-133-375) and CD163(Miltenyi Biotec Cat#: 130-112-129). ..

    Article Title: Bloodstream-associated Salmonella Typhimurium and Enteritidis iNTS pathovariants hyper-replicate in human macrophages
    Article Snippet: After THP-1 differentiation into macrophages, or their further polarisation into M1- and M2-like macrophages, cells were washed twice with PBS without Ca 2+ and Mg 2+ (Gibco) and detached with Versene (Gibco). .. Macrophage surface markers expression was assessed via flow cytometry by staining the cells with anti CD11b (FITC, #130-110-552, Miltenyi Biotec), anti CD14 (APC, #130-110-520, Miltenyi Biotec), anti CD36 (APC-Vio770, #130-110-743, Miltenyi Biotec), anti CD86 (PerCP-Vio700, #130-116-267, Miltenyi Biotec), anti HLA-DR (VioGreen, #130-111-795, Miltenyi Biotec), anti CD163 (PE, #130-112-128, Miltenyi Biotec), anti CD206 (VioBlue, #130-127-809, Miltenyi Biotec) according to manufacturer’s instructions. ..

    Expressing:

    Article Title: Bloodstream-associated Salmonella Typhimurium and Enteritidis iNTS pathovariants hyper-replicate in human macrophages
    Article Snippet: After THP-1 differentiation into macrophages, or their further polarisation into M1- and M2-like macrophages, cells were washed twice with PBS without Ca 2+ and Mg 2+ (Gibco) and detached with Versene (Gibco). .. Macrophage surface markers expression was assessed via flow cytometry by staining the cells with anti CD11b (FITC, #130-110-552, Miltenyi Biotec), anti CD14 (APC, #130-110-520, Miltenyi Biotec), anti CD36 (APC-Vio770, #130-110-743, Miltenyi Biotec), anti CD86 (PerCP-Vio700, #130-116-267, Miltenyi Biotec), anti HLA-DR (VioGreen, #130-111-795, Miltenyi Biotec), anti CD163 (PE, #130-112-128, Miltenyi Biotec), anti CD206 (VioBlue, #130-127-809, Miltenyi Biotec) according to manufacturer’s instructions. ..

    Staining:

    Article Title: Bloodstream-associated Salmonella Typhimurium and Enteritidis iNTS pathovariants hyper-replicate in human macrophages
    Article Snippet: After THP-1 differentiation into macrophages, or their further polarisation into M1- and M2-like macrophages, cells were washed twice with PBS without Ca 2+ and Mg 2+ (Gibco) and detached with Versene (Gibco). .. Macrophage surface markers expression was assessed via flow cytometry by staining the cells with anti CD11b (FITC, #130-110-552, Miltenyi Biotec), anti CD14 (APC, #130-110-520, Miltenyi Biotec), anti CD36 (APC-Vio770, #130-110-743, Miltenyi Biotec), anti CD86 (PerCP-Vio700, #130-116-267, Miltenyi Biotec), anti HLA-DR (VioGreen, #130-111-795, Miltenyi Biotec), anti CD163 (PE, #130-112-128, Miltenyi Biotec), anti CD206 (VioBlue, #130-127-809, Miltenyi Biotec) according to manufacturer’s instructions. ..



    Similar Products

    99
    NSJ Bioreagents hla-dr antibody
    Hla Dr Antibody, supplied by NSJ Bioreagents, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/HLA-DR+Antibody/custom%40v7421%4042682916
    Average 99 stars, based on 1 article reviews
    hla-dr antibody - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    93
    Miltenyi Biotec hla-dr antibody, anti-human, readye_lease
    Hla Dr Antibody, Anti Human, Readye Lease, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 93/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/HLA-DR+Antibody%2C+anti-human%2C+REAdye_lease/custom%40130-123-076%4042502392
    Average 93 stars, based on 1 article reviews
    hla-dr antibody, anti-human, readye_lease - by Bioz Stars, 2026-09
    93/100 stars
      Buy from Supplier

    99
    Biotium hla-dr (mhc ii)(tal 1b5)
    Hla Dr (Mhc Ii)(Tal 1b5), supplied by Biotium, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/HLA-DR+(MHC+II)(TAL+1B5)/custom%40bnc042187-100%4042486979
    Average 99 stars, based on 1 article reviews
    hla-dr (mhc ii)(tal 1b5) - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    99
    NSJ Bioreagents hla-dp/dq/dr antibody
    Hla Dp/Dq/Dr Antibody, supplied by NSJ Bioreagents, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/HLA-DP%2FDQ%2FDR+Antibody/custom%40v3374%4042669809
    Average 99 stars, based on 1 article reviews
    hla-dp/dq/dr antibody - by Bioz Stars, 2026-09
    99/100 stars
      Buy from Supplier

    94
    Miltenyi Biotec hla-dr antibody, anti-human
    Hla Dr Antibody, Anti Human, supplied by Miltenyi Biotec, 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/hla+dr/HLA-DR+Antibody%2C+anti-human/custom%40130-108-056%4042447860
    Average 94 stars, based on 1 article reviews
    hla-dr antibody, anti-human - by Bioz Stars, 2026-09
    94/100 stars
      Buy from Supplier

    95
    Miltenyi Biotec hla dr pe vio 770
    NK cell phenotype ex vivo: ( a ) the proportion of KIR + cells in total NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + ex vivo and the titer of antibodies to HCMV (right); ( b ) the proportion of NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( c ) the proportion of KIR + NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( d ) the proportions of NKG2A + , <t>HLA-DR</t> + , and HLA-DR + CD56 bright cells in the NK cell population of HCMV − and HCMV + individuals; ( e ) hierarchical tree clustering of HCMV + donors based on HLA-DR + , HLA-DR + CD56 bright , NKG2C + , NKG2A + , KIR2DL2/3 + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + proportions in NK cell population, Ward’s method, standardized data; ( f ) the proportions of HLA-DR + CD56 bright , KIR2DL2/3 + , HLA-DR + , CD56 bright , NKG2A + , NKG2C + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + cells in the NK cell population of different clusters’ donors. Number of donors: N = 91 (HCMV + -67, HCMV − -24). Statistical analysis was performed using nonparametric Mann–Whitney U test ( a – d ) or nonparametric Kruskal–Wallis test followed by Dunn’s multiple comparison post hoc test ( f ) (* p < 0.05, ** p < 0.01, *** p < 0.005, **** p < 0.001, ns—not significant); means ± SD are shown. Correlation analysis was done using Pearson’s correlation; p < 0.05 was considered statistically significant.
    Hla Dr Pe Vio 770, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 95/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/hla+dr/CD159c+(NKG2C)+Antibody%2C+anti-human%2C+REAfinity/pmc13362507-252-49-53
    Average 95 stars, based on 1 article reviews
    hla dr pe vio 770 - by Bioz Stars, 2026-09
    95/100 stars
      Buy from Supplier

    Image Search Results


    NK cell phenotype ex vivo: ( a ) the proportion of KIR + cells in total NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + ex vivo and the titer of antibodies to HCMV (right); ( b ) the proportion of NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( c ) the proportion of KIR + NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( d ) the proportions of NKG2A + , HLA-DR + , and HLA-DR + CD56 bright cells in the NK cell population of HCMV − and HCMV + individuals; ( e ) hierarchical tree clustering of HCMV + donors based on HLA-DR + , HLA-DR + CD56 bright , NKG2C + , NKG2A + , KIR2DL2/3 + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + proportions in NK cell population, Ward’s method, standardized data; ( f ) the proportions of HLA-DR + CD56 bright , KIR2DL2/3 + , HLA-DR + , CD56 bright , NKG2A + , NKG2C + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + cells in the NK cell population of different clusters’ donors. Number of donors: N = 91 (HCMV + -67, HCMV − -24). Statistical analysis was performed using nonparametric Mann–Whitney U test ( a – d ) or nonparametric Kruskal–Wallis test followed by Dunn’s multiple comparison post hoc test ( f ) (* p < 0.05, ** p < 0.01, *** p < 0.005, **** p < 0.001, ns—not significant); means ± SD are shown. Correlation analysis was done using Pearson’s correlation; p < 0.05 was considered statistically significant.

    Journal: International Journal of Molecular Sciences

    Article Title: HLA-E-Directed Accumulation of KIR + NKG2C + NK Cells upon HCMV Peptide Presentation In Vitro: Association with the Ex Vivo Phenotype

    doi: 10.3390/ijms27136087

    Figure Lengend Snippet: NK cell phenotype ex vivo: ( a ) the proportion of KIR + cells in total NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + ex vivo and the titer of antibodies to HCMV (right); ( b ) the proportion of NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( c ) the proportion of KIR + NKG2C + cells in the NK cell population of HCMV − and HCMV + individuals (left), correlation between the proportion of KIR + NKG2C + ex vivo and the titer of antibodies to HCMV (right); ( d ) the proportions of NKG2A + , HLA-DR + , and HLA-DR + CD56 bright cells in the NK cell population of HCMV − and HCMV + individuals; ( e ) hierarchical tree clustering of HCMV + donors based on HLA-DR + , HLA-DR + CD56 bright , NKG2C + , NKG2A + , KIR2DL2/3 + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + proportions in NK cell population, Ward’s method, standardized data; ( f ) the proportions of HLA-DR + CD56 bright , KIR2DL2/3 + , HLA-DR + , CD56 bright , NKG2A + , NKG2C + , CD57 + NKG2C + , and KIR2DL2/3 + NKG2C + cells in the NK cell population of different clusters’ donors. Number of donors: N = 91 (HCMV + -67, HCMV − -24). Statistical analysis was performed using nonparametric Mann–Whitney U test ( a – d ) or nonparametric Kruskal–Wallis test followed by Dunn’s multiple comparison post hoc test ( f ) (* p < 0.05, ** p < 0.01, *** p < 0.005, **** p < 0.001, ns—not significant); means ± SD are shown. Correlation analysis was done using Pearson’s correlation; p < 0.05 was considered statistically significant.

    Article Snippet: Mouse anti-human fluorescent-labeled antibodies that were used for PBMC/NK cell surface staining were as follows: CD3-APC-Vio 770 (Clone REA613), CD56-FITC, CD56-PE-Vio 615, CD56-PE-Vio 770 (Clone REA196), CD57-VioBlue, CD57-APC-Vio 770 (Clone TB03), KIR2DL2/3-FITC, KIR2DL2/3-PE-Vio 615 (Clone REA 1006), KIR2DL2/3-APC (Clone DX27), NKG2A-PE, NKG2A-PE-Vio 770 (Clone REA110), NKG2C-FITC, NKG2C-PE (Clone REA205), HLA-DR-PE-Vio 770 (Clone REA805) (Miltenyi Biotech); CD3-PerCP (Clone HIT3a), CD56-Brilliant Violet 421 (Clone 5.1H11) (Sony, San Jose, CA, USA) (also shown in ).

    Techniques: Ex Vivo, MANN-WHITNEY, Comparison

    Proliferative activity and phenotype of bulk NK cell cultures obtained with and without LFL presentation: ( a ) expansion coefficient of bulk NK cell cultures after cultivation with and without HCMV peptide presentation, number of donors: N = 18 (HCMV + -13, HCMV − -5); ( b ) proportions of KIR + and KIR + NKG2C + cells in bulk NK cell cultures obtained with and without peptide presentation, with representative cytometric data, N = 18 (HCMV + -13, HCMV − -5); ( c ) correlation between the relative expansion coefficient K = K(LFL)/K (no peptide) and the proportion of KIR + NK cells ex vivo, N = 14 (HCMV + -9, HCMV − -5); ( d ) correlation between the expansion coefficient of NK cell cultures obtained without (left) and with (right) LFL presentation and the proportion of HLA-DR + NK cells ex vivo, N = 13 (HCMV + -8, HCMV − -5); ( e ) correlation between the relative proportion of NKG2C + (NKG2C ratio = NKG2C + ,% (LFL)/NKG2C + ,% (no peptide)) cells in cultures obtained with LFL presentation and the proportion of HLA-DR + ex vivo, N = 11 (HCMV + -6, HCMV − -5); ( f ) correlation between the relative proportion of KIR + cells (KIR ratio = KIR + ,% (LFL)/KIR + ,% (no peptide)) in cultures presented with the LFL peptide and the proportion of CD57 + NKG2C + ex vivo, N = 11 (HCMV + -6, HCMV − -5); ( g ) proportion of non-viable cells in spheroids of HLA-E-expressing tumor lines MCF7 and SKOV3 after co-incubation with bulk cultures of NK cells activated with and without peptide presentation, with representative cytometric data; 6 to 8 replicates are presented. Cultivation time T = 14 days, total number of donors: N = 18 (HCMV + -13, HCMV − -5). Statistical analysis was performed using a nonparametric Wilcoxon’s test ( b ) or nonparametric Mann–Whitney test ( a , g ) (* p < 0.05, ** p <0.01, ns—not significant); means ± SD are shown. Correlation analysis was done using Spearman’s correlation for non-normally distributed data; p < 0.05 was considered statistically significant.

    Journal: International Journal of Molecular Sciences

    Article Title: HLA-E-Directed Accumulation of KIR + NKG2C + NK Cells upon HCMV Peptide Presentation In Vitro: Association with the Ex Vivo Phenotype

    doi: 10.3390/ijms27136087

    Figure Lengend Snippet: Proliferative activity and phenotype of bulk NK cell cultures obtained with and without LFL presentation: ( a ) expansion coefficient of bulk NK cell cultures after cultivation with and without HCMV peptide presentation, number of donors: N = 18 (HCMV + -13, HCMV − -5); ( b ) proportions of KIR + and KIR + NKG2C + cells in bulk NK cell cultures obtained with and without peptide presentation, with representative cytometric data, N = 18 (HCMV + -13, HCMV − -5); ( c ) correlation between the relative expansion coefficient K = K(LFL)/K (no peptide) and the proportion of KIR + NK cells ex vivo, N = 14 (HCMV + -9, HCMV − -5); ( d ) correlation between the expansion coefficient of NK cell cultures obtained without (left) and with (right) LFL presentation and the proportion of HLA-DR + NK cells ex vivo, N = 13 (HCMV + -8, HCMV − -5); ( e ) correlation between the relative proportion of NKG2C + (NKG2C ratio = NKG2C + ,% (LFL)/NKG2C + ,% (no peptide)) cells in cultures obtained with LFL presentation and the proportion of HLA-DR + ex vivo, N = 11 (HCMV + -6, HCMV − -5); ( f ) correlation between the relative proportion of KIR + cells (KIR ratio = KIR + ,% (LFL)/KIR + ,% (no peptide)) in cultures presented with the LFL peptide and the proportion of CD57 + NKG2C + ex vivo, N = 11 (HCMV + -6, HCMV − -5); ( g ) proportion of non-viable cells in spheroids of HLA-E-expressing tumor lines MCF7 and SKOV3 after co-incubation with bulk cultures of NK cells activated with and without peptide presentation, with representative cytometric data; 6 to 8 replicates are presented. Cultivation time T = 14 days, total number of donors: N = 18 (HCMV + -13, HCMV − -5). Statistical analysis was performed using a nonparametric Wilcoxon’s test ( b ) or nonparametric Mann–Whitney test ( a , g ) (* p < 0.05, ** p <0.01, ns—not significant); means ± SD are shown. Correlation analysis was done using Spearman’s correlation for non-normally distributed data; p < 0.05 was considered statistically significant.

    Article Snippet: Mouse anti-human fluorescent-labeled antibodies that were used for PBMC/NK cell surface staining were as follows: CD3-APC-Vio 770 (Clone REA613), CD56-FITC, CD56-PE-Vio 615, CD56-PE-Vio 770 (Clone REA196), CD57-VioBlue, CD57-APC-Vio 770 (Clone TB03), KIR2DL2/3-FITC, KIR2DL2/3-PE-Vio 615 (Clone REA 1006), KIR2DL2/3-APC (Clone DX27), NKG2A-PE, NKG2A-PE-Vio 770 (Clone REA110), NKG2C-FITC, NKG2C-PE (Clone REA205), HLA-DR-PE-Vio 770 (Clone REA805) (Miltenyi Biotech); CD3-PerCP (Clone HIT3a), CD56-Brilliant Violet 421 (Clone 5.1H11) (Sony, San Jose, CA, USA) (also shown in ).

    Techniques: Activity Assay, Ex Vivo, Expressing, Incubation, MANN-WHITNEY

    Phenotype of NK cell subset cultures with different KIR, NKG2C, and CD57 expression profiles, activated in the presence or absence of LFL peptide: ( a ) De novo NKG2C expression in cultures of NKG2C-negative subsets with different expression of KIR and CD57, activated in the presence or absence of LFL peptide; ( b ) stability of NKG2C expression in cultures of NKG2C-positive subsets with different expression of KIR and CD57, activated in the presence or absence of LFL peptide; ( c ) de novo KIR expression in cultures of CD57 − KIR − NKG2C + subset, activated in the presence or absence of LFL; ( d ) stability of NKG2C expression in cultures of CD57 − KIR − NKG2C + , activated in the presence or absence of LFL; ( e , f ) correlation between the proportion of HLA-DR + NK cells ex vivo and the stability of KIR expression ( e ) and NKG2C de novo expression ( f ) in CD57 − KIR + NKG2C − subset cultures that were and were not presented with LFL; ( g ) correlation between the proportion of KIR + NKG2C + NK cells ex vivo and KIR de novo expression in CD57 − KIR − NKG2C + subset cultures that were and were not presented with LFL. Duration of cultivation: T = 12 days, number of donors: N = 17 (HCMV + -11, HCMV − -6). Statistical analysis was performed using a nonparametric Friedman’s test followed by Dunn’s multiple comparison post hoc test ( a , b ) or Wilcoxon’s test ( c , d ) (* p < 0.05, ** p < 0.01, ns—not significant). Correlation analysis was done using Spearman’s correlation; p < 0.05 was considered statistically significant.

    Journal: International Journal of Molecular Sciences

    Article Title: HLA-E-Directed Accumulation of KIR + NKG2C + NK Cells upon HCMV Peptide Presentation In Vitro: Association with the Ex Vivo Phenotype

    doi: 10.3390/ijms27136087

    Figure Lengend Snippet: Phenotype of NK cell subset cultures with different KIR, NKG2C, and CD57 expression profiles, activated in the presence or absence of LFL peptide: ( a ) De novo NKG2C expression in cultures of NKG2C-negative subsets with different expression of KIR and CD57, activated in the presence or absence of LFL peptide; ( b ) stability of NKG2C expression in cultures of NKG2C-positive subsets with different expression of KIR and CD57, activated in the presence or absence of LFL peptide; ( c ) de novo KIR expression in cultures of CD57 − KIR − NKG2C + subset, activated in the presence or absence of LFL; ( d ) stability of NKG2C expression in cultures of CD57 − KIR − NKG2C + , activated in the presence or absence of LFL; ( e , f ) correlation between the proportion of HLA-DR + NK cells ex vivo and the stability of KIR expression ( e ) and NKG2C de novo expression ( f ) in CD57 − KIR + NKG2C − subset cultures that were and were not presented with LFL; ( g ) correlation between the proportion of KIR + NKG2C + NK cells ex vivo and KIR de novo expression in CD57 − KIR − NKG2C + subset cultures that were and were not presented with LFL. Duration of cultivation: T = 12 days, number of donors: N = 17 (HCMV + -11, HCMV − -6). Statistical analysis was performed using a nonparametric Friedman’s test followed by Dunn’s multiple comparison post hoc test ( a , b ) or Wilcoxon’s test ( c , d ) (* p < 0.05, ** p < 0.01, ns—not significant). Correlation analysis was done using Spearman’s correlation; p < 0.05 was considered statistically significant.

    Article Snippet: Mouse anti-human fluorescent-labeled antibodies that were used for PBMC/NK cell surface staining were as follows: CD3-APC-Vio 770 (Clone REA613), CD56-FITC, CD56-PE-Vio 615, CD56-PE-Vio 770 (Clone REA196), CD57-VioBlue, CD57-APC-Vio 770 (Clone TB03), KIR2DL2/3-FITC, KIR2DL2/3-PE-Vio 615 (Clone REA 1006), KIR2DL2/3-APC (Clone DX27), NKG2A-PE, NKG2A-PE-Vio 770 (Clone REA110), NKG2C-FITC, NKG2C-PE (Clone REA205), HLA-DR-PE-Vio 770 (Clone REA805) (Miltenyi Biotech); CD3-PerCP (Clone HIT3a), CD56-Brilliant Violet 421 (Clone 5.1H11) (Sony, San Jose, CA, USA) (also shown in ).

    Techniques: Expressing, Ex Vivo, Comparison

    Functional activity of NK cell subset cultures with different expression of KIR, NKG2C, and CD57, activated in the presence or absence of LFL peptide: ( a ) proportion of IFNγ-producing NK cells in cultures of NKG2C-positive subsets with different expression of KIR and CD57; ( b ) proportion of IFNγ-producing NK cells in cultures of the CD57 − KIR + NKG2C − subset, to which LFL peptide was and was not presented; ( c ) proportion of degranulating CD107a + NK cells in cultures of NKG2C-positive subsets with different expression of KIR and CD57 upon co-incubation with K562 targets; ( d ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C − subset cultures presented with LFL peptide and the proportion of NK cells NKG2C + ex vivo; ( e ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR − NKG2C + subset cultures presented with LFL peptide and the proportion of NK cells KIR + NKG2C + ex vivo; ( f ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of NK cells KIR + NKG2C + ex vivo; ( g ) correlation between the proportion of CD107a + cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of HLA-DR + NK cells in the CD56 bright fraction ex vivo; ( h ) correlation between the relative proportion of CD107a + cells in CD57 + KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of HLA-DR + CD56 bright NK cells ex vivo; ( i ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of NKG2A + NK cells ex vivo; ( j ) correlation between the proportion of CD107a + cells in CD57 + KIR + NKG2C + subset cultures presented with the LFL peptide and the proportion of NKG2A + NK cells ex vivo. Duration of cultivation: T = 17 days, number of donors: N = 17 (HCMV + -11, HCMV − -6). Statistical analysis was performed using a nonparametric Wilcoxon’s test ( a – c ) (* p < 0.05, ** p < 0.01, ns—not significant). Correlation analysis was done using Spearman’s correlation; p < 0.05 was considered statistically significant.

    Journal: International Journal of Molecular Sciences

    Article Title: HLA-E-Directed Accumulation of KIR + NKG2C + NK Cells upon HCMV Peptide Presentation In Vitro: Association with the Ex Vivo Phenotype

    doi: 10.3390/ijms27136087

    Figure Lengend Snippet: Functional activity of NK cell subset cultures with different expression of KIR, NKG2C, and CD57, activated in the presence or absence of LFL peptide: ( a ) proportion of IFNγ-producing NK cells in cultures of NKG2C-positive subsets with different expression of KIR and CD57; ( b ) proportion of IFNγ-producing NK cells in cultures of the CD57 − KIR + NKG2C − subset, to which LFL peptide was and was not presented; ( c ) proportion of degranulating CD107a + NK cells in cultures of NKG2C-positive subsets with different expression of KIR and CD57 upon co-incubation with K562 targets; ( d ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C − subset cultures presented with LFL peptide and the proportion of NK cells NKG2C + ex vivo; ( e ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR − NKG2C + subset cultures presented with LFL peptide and the proportion of NK cells KIR + NKG2C + ex vivo; ( f ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of NK cells KIR + NKG2C + ex vivo; ( g ) correlation between the proportion of CD107a + cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of HLA-DR + NK cells in the CD56 bright fraction ex vivo; ( h ) correlation between the relative proportion of CD107a + cells in CD57 + KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of HLA-DR + CD56 bright NK cells ex vivo; ( i ) correlation between the proportion of IFNγ-producing cells in CD57 − KIR + NKG2C + subset cultures presented with LFL peptide and the proportion of NKG2A + NK cells ex vivo; ( j ) correlation between the proportion of CD107a + cells in CD57 + KIR + NKG2C + subset cultures presented with the LFL peptide and the proportion of NKG2A + NK cells ex vivo. Duration of cultivation: T = 17 days, number of donors: N = 17 (HCMV + -11, HCMV − -6). Statistical analysis was performed using a nonparametric Wilcoxon’s test ( a – c ) (* p < 0.05, ** p < 0.01, ns—not significant). Correlation analysis was done using Spearman’s correlation; p < 0.05 was considered statistically significant.

    Article Snippet: Mouse anti-human fluorescent-labeled antibodies that were used for PBMC/NK cell surface staining were as follows: CD3-APC-Vio 770 (Clone REA613), CD56-FITC, CD56-PE-Vio 615, CD56-PE-Vio 770 (Clone REA196), CD57-VioBlue, CD57-APC-Vio 770 (Clone TB03), KIR2DL2/3-FITC, KIR2DL2/3-PE-Vio 615 (Clone REA 1006), KIR2DL2/3-APC (Clone DX27), NKG2A-PE, NKG2A-PE-Vio 770 (Clone REA110), NKG2C-FITC, NKG2C-PE (Clone REA205), HLA-DR-PE-Vio 770 (Clone REA805) (Miltenyi Biotech); CD3-PerCP (Clone HIT3a), CD56-Brilliant Violet 421 (Clone 5.1H11) (Sony, San Jose, CA, USA) (also shown in ).

    Techniques: Functional Assay, Activity Assay, Expressing, Incubation, Ex Vivo