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anti pmn  (Cedarlane)


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    Structured Review

    Cedarlane anti pmn
    Anti Pmn, supplied by Cedarlane, used in various techniques. Bioz Stars score: 93/100, based on 6 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/pmn/Anti-Rat+PMN%2C+Adsorbed+Antiserum%2C+(Polyclonal)+(rabbit+serum)/pmc04449972-4-0-2
    Average 93 stars, based on 6 article reviews
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    Related Articles

    other:

    Article Title: The Micromorphological Course of Irradiation-Induced Oral Mucositis in Rat
    Article Snippet: Objectives: To establish an experimental radiation-induced mucositis model in the Sprague-Dawley rat, and to use this model to study the temporal changes in morphology, including invasion by immune cells (polymorphonuclear (PMN) cells and macrophages – both activated M1 macrophages and wound healing M2 macrophages) following irradiation.. Materials and methods: Irradiation was given as a single fraction treatment to the entire head using a conventional high-energy linear accelerator (Varian Clinac 2300 C/D).. Treatment was in as single fractions of 20 Gy, using 6 MV photons.

    Article Title: Involvement of neuronal IL-1β in acquired brain lesions in a rat model of neonatal encephalopathy
    Article Snippet: Anti-PMN , Cedarlane - CLAD51140 , 1:200.

    Negative Control:

    Article Title: Neutrophils delay repair process in Wallerian degeneration by releasing NETs outside the parenchyma
    Article Snippet: .. Rats received intraperitoneal injections of 1 ml/kg rabbit anti-rat PMN antibody (#CLAD51140; Cedarlane) or 1 ml/kg rabbit normal serum (# CLSD403R; Cedarlane) as a negative control at 3 h before the injury. .. Subjects received daily intraperitoneal injections of antibiotics (5 mg/kg of enrofloxacin; Kyowa Medex Cox) to prevent infection.

    Incubation:

    Article Title: Developmental regulation of the neuroinflammatory responses to LPS and/or hypoxia-ischemia between preterm and term neonates: An experimental study
    Article Snippet: .. Sections were incubated overnight at 4°C with the following primary antibodies directed against the following proteins: IL-1β (1:50; #AAR15G, Serotec, NC, US), TNF-α (1:50; #AB1837P Chemicon, ON, Canada), IL-10 (1:10; #MAB519, R&D System, MN, US), IL-1ra (1:25; #sc-25444, Santa Cruz Biotechnology, CA, US), IL-6 (1:100; #MAB5061, R&D System, MN, US), TGF-β1 (1:100; #sc-146, Santa Cruz Biotechnology, CA, US), MCP-1 (1:50; #AB1834P, Chemicon, ON, Canada), CINC-1 (1:50; #CLLS-B2513, LifeSpan Biosciences, WA, US), CD68 (1:250; #MAB1435, Chemicon, ON, Canada), and with adsorbed antiserum directed against rat neutrophils (1:100; #CLAD51140, Cedarlane, ON, Canada). .. For albumin detection, sections were incubated 2 h at room temperature with IgG albumin fraction (1:100; #55727, MP Biomedicals, OH, US) after blocking overnight with 10% milk.



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    (A) Ad cytotoxicity assessed via Sytox Green assay. <t>PMNs</t> were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced <t>NET</t> <t>(neutrophil</t> extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.
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    (A) Ad cytotoxicity assessed via Sytox Green assay. <t>PMNs</t> were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced <t>NET</t> <t>(neutrophil</t> extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.
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    (A) Ad cytotoxicity assessed via Sytox Green assay. <t>PMNs</t> were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced <t>NET</t> <t>(neutrophil</t> extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.
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    (A) Ad cytotoxicity assessed via Sytox Green assay. <t>PMNs</t> were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced <t>NET</t> <t>(neutrophil</t> extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.
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    (A) Ad cytotoxicity assessed via Sytox Green assay. <t>PMNs</t> were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced <t>NET</t> <t>(neutrophil</t> extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.
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    Differential leukocyte sensitivity to planktonic S. aureus . <t>Primary</t> <t>Mφs,</t> G-MDSCs, and <t>PMNs</t> were challenged with planktonic S. aureus at a multiplicity of infection (MOI) of 10:1 (bacteria:leukocyte) for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine exposure), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 6 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; One-way ANOVA with Dunnett’s multiple correction between cell types).
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    Differential leukocyte sensitivity to planktonic S. aureus . <t>Primary</t> <t>Mφs,</t> G-MDSCs, and <t>PMNs</t> were challenged with planktonic S. aureus at a multiplicity of infection (MOI) of 10:1 (bacteria:leukocyte) for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine exposure), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 6 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; One-way ANOVA with Dunnett’s multiple correction between cell types).
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    Image Search Results


    (A) Ad cytotoxicity assessed via Sytox Green assay. PMNs were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced NET (neutrophil extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.

    Journal: PLOS Pathogens

    Article Title: Adenovirus phagocytosis by neutrophils triggers a pro-inflammatory response

    doi: 10.1371/journal.ppat.1013504

    Figure Lengend Snippet: (A) Ad cytotoxicity assessed via Sytox Green assay. PMNs were incubated with HBSS, Triton-X-100, human serum (HS) or HS-opsonized Ads (MOI 10 4 vp/cell) in the presence of the cell-impermeant fluorescent probe Sytox Green probe, a cell-impermeant DNA fluorescent probe. Cell fluorescence was measured with a plate reader. The curves represent the percentage (± SEM, 5 independent experiments) of PMN death ( i.e., PMN fluorescence relative to Triton-X-100-lysed PMN fluorescence multiplied by 100) at different incubation times. Kruskal-Wallis test was performed followed by Dunn’s multiple comparison tests: *, p < 0.05 (comparison with HS). (B) Ad-induced NET (neutrophil extracellular trap) formation. PMNs were incubated with buffer (control), PMA 100 nM (positive control) or HS-opsonized A488-Ad5 or Ad3 (MOI 10 4 vp/cell) for 4h. Then, after cell fixation, cells were permeabilized, immunolabeled for myeloperoxidase (MPO) and stained with DAPI. The images are Z-projections generated from Z-stacks. Three independent experiments were performed. Scale bar = 10 µm.

    Article Snippet: For the second method, PMNs were isolated using the MACSxpress Whole Blood Neutrophil Isolation Kit (Miltenyi Biotec, 130-104-434) and then the MACSxpress Erythrocyte Depletion Kit (Miltenyi Biotec, 130-098-196) making it possible to discard the remaining red blood cells.

    Techniques: Incubation, Fluorescence, Comparison, Control, Positive Control, Immunolabeling, Staining, Generated

    Differential leukocyte sensitivity to planktonic S. aureus . Primary Mφs, G-MDSCs, and PMNs were challenged with planktonic S. aureus at a multiplicity of infection (MOI) of 10:1 (bacteria:leukocyte) for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine exposure), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 6 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; One-way ANOVA with Dunnett’s multiple correction between cell types).

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: Differential leukocyte sensitivity to planktonic S. aureus . Primary Mφs, G-MDSCs, and PMNs were challenged with planktonic S. aureus at a multiplicity of infection (MOI) of 10:1 (bacteria:leukocyte) for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine exposure), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 6 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; One-way ANOVA with Dunnett’s multiple correction between cell types).

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: Infection, Bacteria, Staining, Incubation

    S. aureus biofilm elicits distinct leukocyte responses. Primary Mφs, G-MDSCs, and PMNs were exposed to S. aureus biofilm for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: S. aureus biofilm elicits distinct leukocyte responses. Primary Mφs, G-MDSCs, and PMNs were exposed to S. aureus biofilm for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h ( n = 12 from three independent experiments; *, P < 0.05; **, P < 0.01; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: Staining, Incubation

    Leukocyte mtROS production has minimal impact on cell death. Primary Mφs, G-MDSCs, and PMNs were pre-treated with MitoTEMPO for 1 h and co-cultured with the indicated strains of S. aureus biofilm or planktonic bacteria for 2 h. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A and F ) leukocyte viability, ( B and G ) early apoptosis, ( C and H ) late apoptosis/necrosis, and mtROS levels in ( D and I ) live and ( E and J ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h ( n = 9 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: Leukocyte mtROS production has minimal impact on cell death. Primary Mφs, G-MDSCs, and PMNs were pre-treated with MitoTEMPO for 1 h and co-cultured with the indicated strains of S. aureus biofilm or planktonic bacteria for 2 h. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A and F ) leukocyte viability, ( B and G ) early apoptosis, ( C and H ) late apoptosis/necrosis, and mtROS levels in ( D and I ) live and ( E and J ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h ( n = 9 from three independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: Cell Culture, Bacteria, Staining, Incubation

    S. aureus toxins elicit minimal effects on leukocytes during biofilm co-culture. Primary Mφs, G-MDSCs, and PMNs were co-cultured with WT and various S. aureus mutant biofilms for 2 h. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h (WT and Unstim. n = 20; Δ hla /Δ lukAB and Δ psmα1-4 /Δ hld n = 12 from three independent experiments; Δ agr n = 8 from two independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: S. aureus toxins elicit minimal effects on leukocytes during biofilm co-culture. Primary Mφs, G-MDSCs, and PMNs were co-cultured with WT and various S. aureus mutant biofilms for 2 h. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 2 h (WT and Unstim. n = 20; Δ hla /Δ lukAB and Δ psmα1-4 /Δ hld n = 12 from three independent experiments; Δ agr n = 8 from two independent experiments; *, P < 0.05; **, P < 0.01; ***, P < 0.001; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: Co-Culture Assay, Cell Culture, Mutagenesis, Staining, Incubation

    Direct contact with S. aureus biofilm is critical to induce leukocyte cytotoxicity. Primary Mφs, G-MDSCs, and PMNs were co-cultured with S. aureus biofilm either directly or separated by Transwell inserts for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 30 min or 2 h, as indicated ( n = 9 from three independent experiments; *, P < 0.05; **, P < 0.01; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: Direct contact with S. aureus biofilm is critical to induce leukocyte cytotoxicity. Primary Mφs, G-MDSCs, and PMNs were co-cultured with S. aureus biofilm either directly or separated by Transwell inserts for the indicated intervals. Leukocytes were stained with anti-CD45, Zombie NIR (viability), Apotracker Green (phosphatidylserine), and MitoSOX Red (mtROS) to quantify ( A ) leukocyte viability, ( B ) early apoptosis, ( C ) late apoptosis/necrosis, and mtROS levels in ( D ) live and ( E ) early apoptotic cells. Unstimulated leukocytes were incubated in medium for 30 min or 2 h, as indicated ( n = 9 from three independent experiments; *, P < 0.05; **, P < 0.01; ****, P < 0.0001; one-way ANOVA with Dunnett’s multiple correction between cell types).

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: Cell Culture, Staining, Incubation

    S. aureus -mediated leukocyte death is growth state- and contact-dependent. Mφs, G-MDSCs, and PMNs are the predominant immune cell infiltrates in S. aureus PJI. Planktonically grown S. aureus induced greater cell death in G-MDSCs, whereas Mφs were extremely sensitive to direct biofilm contact. This differential response may account for the large number of granulocytes, most notably anti-inflammatory G-MDSCs, and the minor Mφ infiltrate associated with PJI. Physical separation of all leukocyte populations from the biofilm negated cytotoxicity. Figure created in BioRender. Brandquist, N. (2025) https://BioRender.com/we51cxn.

    Journal: Infection and Immunity

    Article Title: Differential sensitivity of leukocyte populations to Staphylococcus aureus biofilm

    doi: 10.1128/iai.00654-25

    Figure Lengend Snippet: S. aureus -mediated leukocyte death is growth state- and contact-dependent. Mφs, G-MDSCs, and PMNs are the predominant immune cell infiltrates in S. aureus PJI. Planktonically grown S. aureus induced greater cell death in G-MDSCs, whereas Mφs were extremely sensitive to direct biofilm contact. This differential response may account for the large number of granulocytes, most notably anti-inflammatory G-MDSCs, and the minor Mφ infiltrate associated with PJI. Physical separation of all leukocyte populations from the biofilm negated cytotoxicity. Figure created in BioRender. Brandquist, N. (2025) https://BioRender.com/we51cxn.

    Article Snippet: For generating primary Mφs, G-MDSCs, and PMNs, C57BL/6J mice (RRID: IMSR_JAX:000664) were euthanized by an overdose of inhaled isoflurane followed by cervical dislocation to collect bone marrow as previously described ( , ).

    Techniques: