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Miltenyi Biotec Inc.
2303 Lindbergh Street
Auburn, CA 95602
Phone:
+1 530 888 8871
Fax: +1 530 888 8925
E-Mail: macs@miltenyibiotec.com
Web: www.miltenyibiotec.com
For immediate technical support, use our live chat.
Connect with usOrders:
Phone: +1 866 811 4466
Fax: +1 877 591 1060
E-Mail: orderdesk@miltenyibiotec.com
Technical support - Research products:
Phone: +1 800 FOR MACS
Fax: + 1 530 745 2806
E-Mail: technicalsupportUS@miltenyi.com
Technical support - Clinical products:
Phone: +1 800 FOR MACS
Fax: + 1 530 745 2806
E-Mail: technicalsupportUS@miltenyi.com
Miltenyi Biotec distribution:
As a global market leader with numerous subsidiaries and distributors, Miltenyi Biotec is committed to providing our customers around the world with the highest quality products. In addition to direct selling in more than 20 countries in North America, Europe and Asia/Pacific, Miltenyi Biotec also provides support for our customers through an extensive distributor network covering dozens of additional countries.
Our local employees are always happy to answer your questions. Highly trained and experienced teams in your country can provide quick, helpful, and comprehensive support.
Miltenyi Biotec Inc.
2303 Lindbergh Street
Auburn, CA 95602
USA
Phone:
+1 530 888 8871
Fax: +1 530 888 8925
E-Mail: macs@miltenyibiotec.com
Web: www.miltenyibiotec.com
For immediate technical support, use our live chat. Connect with us
Orders
Phone: +1 866 811 4466
Fax: +1 877 591 1060
E-Mail: orderdesk@miltenyibiotec.com
Technical support - Research products
Phone: +1 800 FOR MACS
Fax: + 1 530 745 2806
E-Mail: technicalsupportUS@miltenyi.com
Technical support - Clinical products
Phone: +1 800 FOR MACS
Fax: + 1 530 745 2806
E-Mail: technicalsupportUS@miltenyi.com
As a global market leader with numerous subsidiaries and distributors, Miltenyi Biotec is committed to providing our customers around the world with the highest quality products. In addition to direct selling in more than 20 countries in North America, Europe and Asia/Pacific, Miltenyi Biotec also provides support for our customers through an extensive distributor network covering dozens of additional countries.
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Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. |
Before separation | After separation | LSK staining |
Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. | Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. | Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. |
Our lab has generated a mouse model that expresses three transgenic human host factors and can support HIV infection. We are interested in understanding protective immune responses that could protect against HIV infection in these mice. To understand the role that CD8 T cell responses might have against HIV infection, we reprogram their precursor cells at stem cell level by introducing TCRs that are known to have potent anti-HIV activity. We use this kit to deplete all lineage committed cells from bone marrow.
Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. |
Before separation | After separation | LSK staining |
Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. | Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. | Lineage Cell Depletion Kit, mouseFigure 1Isolation of lineage marker-negative cells from mouse bone marrow using the Direct Lineage Cell Depletion Kit, a MidiMACS™ Separator and an LS Column. Cells were fluorescently labeled with the Lineage Cell Detection Cocktail-Biotin and Anti-Biotin-APC and analyzed by flow cytometry using the MACSQuant ® Analyzer. In order to evaluate the LSK fraction, cells were additionally labeled with CD117-PE and Anti-SCA-1-FITC. Cell debris and dead cells were excluded from the analysis based on scatter signals and propidium iodide fluorescence. |
Our lab has generated a mouse model that expresses three transgenic human host factors and can support HIV infection. We are interested in understanding protective immune responses that could protect against HIV infection in these mice. To understand the role that CD8 T cell responses might have against HIV infection, we reprogram their precursor cells at stem cell level by introducing TCRs that are known to have potent anti-HIV activity. We use this kit to deplete all lineage committed cells from bone marrow.
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