apc rat anti mouse cd11b Search Results


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Miltenyi Biotec anti cd11b coated microbeads
Anti Cd11b Coated Microbeads, supplied by Miltenyi Biotec, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Abcam anti cd11b antibody
Anti Cd11b Antibody, supplied by Abcam, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Becton Dickinson anti-rat igg2aκ fitc
Anti Rat Igg2aκ Fitc, supplied by Becton Dickinson, 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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ATCC rat igg2b anti mouse cr3 m chain cd11b ab m1 70 15 11 5
Rat Igg2b Anti Mouse Cr3 M Chain Cd11b Ab M1 70 15 11 5, supplied by ATCC, used in various techniques. Bioz Stars score: 92/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bio-Rad microglial
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Microglial, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 96 stars, based on 1 article reviews
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Bio-Rad nimp r14 cd11b rat
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Nimp R14 Cd11b Rat, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 96/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bio X Cell anti cd11b
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Anti Cd11b, 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
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Bio-Rad cd11b
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Cd11b, supplied by Bio-Rad, 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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Bio-Rad mouse anti cd11b
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Mouse Anti Cd11b, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Bio-Rad anti cd11b
Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in <t>CD11b-</t> immunopositive <t>microglial</t> processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.
Anti Cd11b, supplied by Bio-Rad, 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/apc+rat+anti+mouse+cd11b/pmc08784048-171-1-3?v=Bio-Rad
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Bio-Rad fitc cd11b
Figure 6. Flow cytometry analyses of APCs isolated from human and swine saphenous veins. A and B, Representative flow cytometry gating procedure of hAPC line #1 and sAPC line #1 at P5. Total cell populations and the single cells (singlets) were gated according to FSC-A vs SSC-A and FSC-A vs FSC-H parameters (i and ii). Viable cells were distinguished from dead cells using Fixable Viability Dye eFluor780 (iii) and further gated for selected antigens (iv through xi and iv through xiii). Pericyte, mesenchymal, endothelial, and hematopoietic markers were studied. The FMO control was used in the assessment and gating of CD146+ and PDGFRb+ cells, because of the use of multiple fluorochromes (vii through ix and viii through x). The same approach was used when studying the expression of CD45 and <t>CD11b</t> on sAPCs to exclude hematopoietic cell contamination in the cell culture system (xi through xiii). Data were acquired using FACSCantoII (BD Biosciences) or Novocyte 3000 flow cytometer (ACEA Biosciences, San Diego, CA, USA) and analyzed using the FlowJo v10.3 software. C and D, Flow cytometry histograms for each surface marker in representative hAPC (C) and sAPC lines (D). Negative control staining profiles are shown by the red histograms, whereas specific antibody staining profiles are shown by light blue histograms. Bar graphs show the meanSEM values of 3 hAPC and sAPC lines. E and F, Gating and histograms of fresh isolated swine PB-MNCs and swine PAEC line #1 at P5 used as positive control for the staining of hematopoietic and endothelial markers, respectively. In both cell lines, the negative control staining profile is shown by full red histogram, while the positive staining profile is shown by full light-blue histogram. FSC-A indicates Forward Scatter Area; FSC-H, Forward Scatter Height; FMO, fluorescence minus 1; hAPCs, human adventitial pericytes; PB-MNCs, Peripheral blood mononuclear cells; PDGFRb, platelet-derived growth factor receptor-b; sAPCs, swine adventitial pericytes.
Fitc Cd11b, supplied by Bio-Rad, 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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Average 93 stars, based on 1 article reviews
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94
Bio-Rad anti cd1 1 b
Figure 6. Flow cytometry analyses of APCs isolated from human and swine saphenous veins. A and B, Representative flow cytometry gating procedure of hAPC line #1 and sAPC line #1 at P5. Total cell populations and the single cells (singlets) were gated according to FSC-A vs SSC-A and FSC-A vs FSC-H parameters (i and ii). Viable cells were distinguished from dead cells using Fixable Viability Dye eFluor780 (iii) and further gated for selected antigens (iv through xi and iv through xiii). Pericyte, mesenchymal, endothelial, and hematopoietic markers were studied. The FMO control was used in the assessment and gating of CD146+ and PDGFRb+ cells, because of the use of multiple fluorochromes (vii through ix and viii through x). The same approach was used when studying the expression of CD45 and <t>CD11b</t> on sAPCs to exclude hematopoietic cell contamination in the cell culture system (xi through xiii). Data were acquired using FACSCantoII (BD Biosciences) or Novocyte 3000 flow cytometer (ACEA Biosciences, San Diego, CA, USA) and analyzed using the FlowJo v10.3 software. C and D, Flow cytometry histograms for each surface marker in representative hAPC (C) and sAPC lines (D). Negative control staining profiles are shown by the red histograms, whereas specific antibody staining profiles are shown by light blue histograms. Bar graphs show the meanSEM values of 3 hAPC and sAPC lines. E and F, Gating and histograms of fresh isolated swine PB-MNCs and swine PAEC line #1 at P5 used as positive control for the staining of hematopoietic and endothelial markers, respectively. In both cell lines, the negative control staining profile is shown by full red histogram, while the positive staining profile is shown by full light-blue histogram. FSC-A indicates Forward Scatter Area; FSC-H, Forward Scatter Height; FMO, fluorescence minus 1; hAPCs, human adventitial pericytes; PB-MNCs, Peripheral blood mononuclear cells; PDGFRb, platelet-derived growth factor receptor-b; sAPCs, swine adventitial pericytes.
Anti Cd1 1 B, supplied by Bio-Rad, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in CD11b- immunopositive microglial processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.

Journal: Journal of Neuroscience

Article Title: Vascular Remodeling versus Amyloid -Induced Oxidative Stress in the Cerebrovascular Dysfunctions Associated with Alzheimer's Disease

doi: 10.1523/jneurosci.4031-05.2005

Figure Lengend Snippet: Figure6. NitrosativestressinthecerebralcortexofAPP andTGF mice.Nitrotyrosineimmunoreactivityisupregulatedin the vessel walls of young APP mice, whereas it is distributed in the neuropil and around intraparenchymal blood vessels in 12-month-old APP mice. As shown in the adjacent panels, nitrotyrosine immunoreactivity (red) is mainly located in CD11b- immunopositive microglial processes (green; the merge with nitrotyrosine is yellow) and cells (open arrows), but some neurons are also nitrotyrosine immunopositive (small arrows). In TGF mice, nitrotyrosine immunoreactivity is primarily distributed to glial elements in both wild-type (WT) and transgenic mice. Scale bar, 75 m. mo, Month.

Article Snippet: Changes in pial and/or intracortical microvessels in transgenic mice (perfusion-fixed brains) and AD patients (50- m-thick sections) were assessed by immunostaining for the following markers: SOD2 (rabbit anti-MnSOD; 1:400; Stressgen), nitrosative stress (mouse anti-nitrotyrosine; 1:1000; Upstate Biotechnology, Lake Placid, NY), basement membrane proteins collagen-I (goat anti- collagen type I; 1:400; Southern Biotechnology, Birmingham, AL) and collagen-IV (goat anti-collagen type IV; 1: 400; Chemicon), and astroglial (GFAP, rabbit anti-GFAP; 1:300; Dako, Glostrup, Denmark) or microglial (rat anti-CD11b; 1:100; Serotec, Raleigh, NC) activation.

Techniques: Transgenic Assay

Figure 6. Flow cytometry analyses of APCs isolated from human and swine saphenous veins. A and B, Representative flow cytometry gating procedure of hAPC line #1 and sAPC line #1 at P5. Total cell populations and the single cells (singlets) were gated according to FSC-A vs SSC-A and FSC-A vs FSC-H parameters (i and ii). Viable cells were distinguished from dead cells using Fixable Viability Dye eFluor780 (iii) and further gated for selected antigens (iv through xi and iv through xiii). Pericyte, mesenchymal, endothelial, and hematopoietic markers were studied. The FMO control was used in the assessment and gating of CD146+ and PDGFRb+ cells, because of the use of multiple fluorochromes (vii through ix and viii through x). The same approach was used when studying the expression of CD45 and CD11b on sAPCs to exclude hematopoietic cell contamination in the cell culture system (xi through xiii). Data were acquired using FACSCantoII (BD Biosciences) or Novocyte 3000 flow cytometer (ACEA Biosciences, San Diego, CA, USA) and analyzed using the FlowJo v10.3 software. C and D, Flow cytometry histograms for each surface marker in representative hAPC (C) and sAPC lines (D). Negative control staining profiles are shown by the red histograms, whereas specific antibody staining profiles are shown by light blue histograms. Bar graphs show the meanSEM values of 3 hAPC and sAPC lines. E and F, Gating and histograms of fresh isolated swine PB-MNCs and swine PAEC line #1 at P5 used as positive control for the staining of hematopoietic and endothelial markers, respectively. In both cell lines, the negative control staining profile is shown by full red histogram, while the positive staining profile is shown by full light-blue histogram. FSC-A indicates Forward Scatter Area; FSC-H, Forward Scatter Height; FMO, fluorescence minus 1; hAPCs, human adventitial pericytes; PB-MNCs, Peripheral blood mononuclear cells; PDGFRb, platelet-derived growth factor receptor-b; sAPCs, swine adventitial pericytes.

Journal: Journal of the American Heart Association

Article Title: Transplantation of Allogeneic Pericytes Improves Myocardial Vascularization and Reduces Interstitial Fibrosis in a Swine Model of Reperfused Acute Myocardial Infarction

doi: 10.1161/jaha.117.006727

Figure Lengend Snippet: Figure 6. Flow cytometry analyses of APCs isolated from human and swine saphenous veins. A and B, Representative flow cytometry gating procedure of hAPC line #1 and sAPC line #1 at P5. Total cell populations and the single cells (singlets) were gated according to FSC-A vs SSC-A and FSC-A vs FSC-H parameters (i and ii). Viable cells were distinguished from dead cells using Fixable Viability Dye eFluor780 (iii) and further gated for selected antigens (iv through xi and iv through xiii). Pericyte, mesenchymal, endothelial, and hematopoietic markers were studied. The FMO control was used in the assessment and gating of CD146+ and PDGFRb+ cells, because of the use of multiple fluorochromes (vii through ix and viii through x). The same approach was used when studying the expression of CD45 and CD11b on sAPCs to exclude hematopoietic cell contamination in the cell culture system (xi through xiii). Data were acquired using FACSCantoII (BD Biosciences) or Novocyte 3000 flow cytometer (ACEA Biosciences, San Diego, CA, USA) and analyzed using the FlowJo v10.3 software. C and D, Flow cytometry histograms for each surface marker in representative hAPC (C) and sAPC lines (D). Negative control staining profiles are shown by the red histograms, whereas specific antibody staining profiles are shown by light blue histograms. Bar graphs show the meanSEM values of 3 hAPC and sAPC lines. E and F, Gating and histograms of fresh isolated swine PB-MNCs and swine PAEC line #1 at P5 used as positive control for the staining of hematopoietic and endothelial markers, respectively. In both cell lines, the negative control staining profile is shown by full red histogram, while the positive staining profile is shown by full light-blue histogram. FSC-A indicates Forward Scatter Area; FSC-H, Forward Scatter Height; FMO, fluorescence minus 1; hAPCs, human adventitial pericytes; PB-MNCs, Peripheral blood mononuclear cells; PDGFRb, platelet-derived growth factor receptor-b; sAPCs, swine adventitial pericytes.

Article Snippet: Antibodies used in flow cytometry studies on sAPCs Marker Permeabilization Reactivity Primary antibody source dilution Fluorophores CD90 No Swine eBioscience, 1:20 Pe-Cy7 CD44 No Swine eBioscience, 1:20 APC CD105 No Swine LifeSpan, 1:5 PE CD45 No Swine Serotec, 1:25 FITC CD11b No Human/Swine eBioscience, 1:20 Pe-Cy7 CD31 No Swine Serotec, 1:80 PE CD146 No Swine Serotec, 1:60 FITC PDGFR No Human Biolegend, 1:25 PE Dye eFluor 780 No eBioscience, 1:1000 APC-Cy7 Cells (1x106, N=3 biological replicates) were washed in 1X DPBS (Life Technologies) and treated with 10X trypsin/EDTA (Life Technologies).

Techniques: Flow Cytometry, Isolation, Cytometry, Control, Expressing, Cell Culture, Software, Marker, Negative Control, Staining, Positive Control, Derivative Assay