FlowTACS Flow Cytometry Apoptosis Detection Kit
FlowTACS Flow Cytometry Apoptosis Detection Kit SummaryProvides an in situ labeling technology to identify and quantitate cultured apoptotic cells by TUNEL-based and flow cytometry.
• Identification and quantitation of fixed apoptotic cells in suspension by flow cytometry.
• Allows bi-color and tri-color analysis.
• Designed for use with fixed cells.
• Includes exclusive non-enzymatic Cytonin permeabilization reagent.
• Includes TACS-Nuclease solution for preparing sample-dependent positive controls.
Why Use the FlowTACS Flow Cytometry Apoptosis Detection Kit?
FlowTACS also provides flexibility in selection of fluorophores that are compatible with your research design. The kit allows multi-color labeling in conjunction with experiment-specific antibodies.
• TACS-Nuclease Buffer
• /TACS 2 TdT dNTP
• TdT Enzyme
• 50x Manganese Cation
• 10X TdT Labeling Buffer
• 10X TdT Stop Buffer
For research use only. Not for diagnostic use.
Analysis of DNA Fragmentation in Cycloheximide- or Dexamethasone-treated Murine Thymocytes. Murine thymocytes were treated with 10 µg/mL cycloheximide (A) or 1 µM dexamethasone (B) for 16 hours after which the cells were harvested, labeled according to the FlowTACS protocol (Catalog # 4817-60-K), and analyzed by flow cytometry. The R1 populations are apoptotic. Data were provided courtesy of N. Hardegen, NIH, NIDR, Bethesda, MD.
Citations for FlowTACS Flow Cytometry Apoptosis Detection Kit
R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.
Citations: Showing 1 - 10
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CircTM7SF3 contributes to oxidized low-density lipoprotein-induced apoptosis, inflammation and oxidative stress through targeting miR-206/ASPH axis in atherosclerosis cell model in vitro
Authors: X Wang, M Bai
BMC cardiovascular disorders, 2021;21(1):51. 2021
Assessment of Placental Extracellular Vesicles-Associated Fas Ligand and TNF-Related Apoptosis-Inducing Ligand in Pregnancies Complicated by Early and Late Onset Preeclampsia
Authors: P Ayala-Ramí, C Machuca-Ac, T Gámez, S Quijano, A Barreto, JL Silva, M Olaya-C, R García-Rob
Frontiers in Physiology, 2021;12(0):708824. 2021
Targeting IL-17A/glucocorticoid synergy to CSF3 expression in neutrophilic airway diseases
Authors: S Ouyang, C Liu, J Xiao, X Chen, AC Lui, X Li
JCI Insight, 2020;5(3):. 2020
Platelet-derived growth factor-C (PDGF-C) induces anti-apoptotic effects on macrophages through Akt and Bad phosphorylation.
Authors: Son D, Na Y, Hwang E, Seok S
J Biol Chem, 2014;289(9):6225-35. 2014
The TACI receptor regulates T-cell-independent marginal zone B cell responses through innate activation-induced cell death.
Authors: Figgett W, Fairfax K, Vincent F, Le Page M, Katik I, Deliyanti D, Quah P, Verma P, Grumont R, Gerondakis S, Hertzog P, O'Reilly L, Strasser A, Mackay F
Immunity, 2013;39(3):573-83. 2013
Theiler's virus-induced intrinsic apoptosis in M1-D macrophages is Bax mediated and restricts virus infectivity: a mechanism for persistence of a cytolytic virus.
Authors: Son KN, Becker RP, Kallio P, Lipton HL
J. Virol., 2008;82(9):4502-10. 2008
Self-renewal of human embryonic stem cells requires insulin-like growth factor-1 receptor and ERBB2 receptor signaling.
Authors: Wang L, Schulz TC, Sherrer ES, Dauphin DS, Shin S, Nelson AM, Ware CB, Zhan M, Song CZ, Chen X, Brimble SN, McLean A, Galeano MJ, Uhl EW, D'Amour KA, Chesnut JD, Rao MS, Blau CA, Robins AJ
Blood, 2007;110(12):4111-9. 2007
Butyrate-induced apoptosis and cell cycle arrest in bovine kidney epithelial cells: involvement of caspase and proteasome pathways.
Authors: Li CJ, Elsasser TH
J. Anim. Sci., 2005;83(1):89-97. 2005
Division-linked generation of death-intermediates regulates the numerical stability of memory CD8 T cells.
Authors: Nolz J, Rai D, Badovinac V, Harty J
Proc Natl Acad Sci U S A, 0;109(16):6199-204. 0
Insight into the mechanism of action of temporin-SHa, a new broad-spectrum antiparasitic and antibacterial agent.
Authors: Raja Z, Andre S, Abbassi F, Humblot V, Lequin O, Bouceba T, Correia I, Casale S, Foulon T, Sereno D, Oury B, Ladram A
PLoS ONE, 0;12(3):e0174024. 0
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