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Wählen Sie konfigurierbare Panels & Premixed-Kits - ODER - Kits für die zelluläre Signaltransduktion & MAPmates™
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Unser breites Angebot enthält Multiplex-Panels, für die Sie die Analyten auswählen können, die am besten für Ihre Anwendung geeignet sind. Unter einem separaten Register können Sie das Premixed-Cytokin-Format oder ein Singleplex-Kit wählen.
Kits für die zelluläre Signaltransduktion & MAPmates™
Wählen Sie gebrauchsfertige Kits zur Erforschung gesamter Signalwege oder Prozesse. Oder konfigurieren Sie Ihre eigenen Kits mit Singleplex MAPmates™.
Die folgenden MAPmates™ sollten nicht zusammen analysiert werden: -MAPmates™, die einen unterschiedlichen Assaypuffer erfordern. -Phosphospezifische und MAPmate™ Gesamtkombinationen wie Gesamt-GSK3β und Gesamt-GSK3β (Ser 9). -PanTyr und locusspezifische MAPmates™, z.B. Phospho-EGF-Rezeptor und Phospho-STAT1 (Tyr701). -Mehr als 1 Phospho-MAPmate™ für ein einziges Target (Akt, STAT3). -GAPDH und β-Tubulin können nicht mit Kits oder MAPmates™, die panTyr enthalten, analysiert werden.
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Gewähltes Kit
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96-Well Plate
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48-602MAG
Buffer Detection Kit for Magnetic Beads
1 Kit
Platzsparende Option Kunden, die mehrere Kits kaufen, können ihre Multiplex-Assaykomponenten in Kunststoffbeuteln anstelle von Packungen erhalten, um eine kompaktere Lagerung zu ermöglichen.
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APT110
Sigma-AldrichApo-Direct TUNEL Assay Kit
The APO-DIRECT Kit is a single-step staining method for labeling DNA breaks to detect apoptotic cells by flow cytometry.
More>>The APO-DIRECT Kit is a single-step staining method for labeling DNA breaks to detect apoptotic cells by flow cytometry. Less<<
Apo-Direct TUNEL Assay Kit: SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
The CHEMICON APO-DIRECT™ Kit is a single-step staining method for labeling DNA breaks to detect apoptotic cells by flow cytometry (Li et al. 1995). The kit contains all the reagents required for measuring apoptosis in cells including positive and negative control cells; washing, reaction, and rinsing buffers; and propidium iodide/RNase A solution for counter staining the total DNA.
Materials Required but Not Delivered
1. Flow Cytometer
2. Distilled Water
3. 1% (w/v) paraformaldehyde (methanol free) in PBS
4. 70% (v/v) ethanol
5. 37oC Water Bath
6. Ice Bucket
7. 12 x 75 mm flow cytometry test tubes
8. Micro-pipettor
References
Product Information
Components
The following components are included with the APO-DIRECT™ Kit. Reagent bottles have color coded caps to aid in their identification. Sufficient reagents are provided to process 50 cell suspensions including control cells of approximately 1 x 106 cells per suspension for flow cytometry analysis. The control cells have been fixed as described (under the heading cell fixation procedure) and are in 70% (v/v) ethanol.
The APO-DIRECT Kit is a single-step staining method for labeling DNA breaks to detect apoptotic cells by flow cytometry.
Key Applications
Flow Cytometry
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Vertebrates
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Usage Statement
Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage Conditions
Precautions and Warnings:
1. The components of this kit are for Research Use only and are not intended for diagnostic procedures.
2. Positive and negative control cells contain 70% (v/v) ethanol as a preservative; wash and reaction buffer contain sodium cacodylate (dimethylarsinic) as a buffer; rinsing and PI/RNase staining buffer contain 0.05% (w/v) sodium azide as a preservative. These materials are harmful if swallowed; avoid areas of contact immediately. See Material Safety Data Sheets.
3. TdT Enzyme will not freeze at -20oC, because it is in 50% (v/v) glycerol solution. Upon warming the TdT enzyme solution, centrifuge the tube for 30 seconds to force all the liquid to the bottom of the tube.
SR family RNA binding proteins regulate splicing of nascent RNAs in vitro but their physiological role in vivo is largely unexplored, as genetic deletion of many SR protein genes results in embryonic lethality. Here we show that SRSF3HKO mice carrying a hepatocyte-specific deletion of Srsf3 (homologous to human SRSF3/SRp20) have a disrupted hepatic architecture and show pre- and postnatal growth retardation. SRSF3HKO mice exhibit impaired hepatocyte maturation with alterations in glucose and lipid homeostasis characterized by reduced glycogen storage, fasting hypoglycemia, increased insulin sensitivity and reduced cholesterol synthesis. We identify various splicing alterations in the SRSF3HKO liver that explain the in vivo phenotype. In particular, loss of SRSF3 causes aberrant splicing of Hnf1α, Ern1, Hmgcs1, Dhcr7 and Scap genes, which are critical regulators of glucose and lipid metabolism. Our study provides the first evidence for a SRSF3-driven genetic programme required for morphological and functional differentiation of hepatocytes that may have relevance for human liver disease and metabolic dysregulation.
The protease-mediated nucleus shuttles of subnanometer gold quantum dots for real-time monitoring of apoptotic cell death. Shu-Yi Lin,Nai-Tzu Chen,Shu-Pin Sun,Jerry C Chang,Yu-Chao Wang,Chung-Shi Yang,Leu-Wei Lo Journal of the American Chemical Society
132
2009
Subnanometer photoluminescent gold quantum dots (GQDs) are functionalized with a peptide moiety that contains both nuclear export signal (NES) and nuclear localization signal (NLS) sequences. By taking advantage of its small size and great photostability, the functionalized GQDs are used to mimic the actions of nucleus shuttle proteins, especially of those activated during cell apoptotic death, to work as protease-mediated cytoplasm-nucleus shuttles for dynamic monitoring of apoptosis. The resulting construct demonstrates activation of the nuclear pore complex (NPC) of cells, for bidirectional transport between nucleus and cytoplasm. A caspase-3 recognition sequence (DEVD), placed within the NLS/NES peptide, serves as a proteolytic site for activated caspase-3. Upon the induction of apoptosis, the activated caspase-3 cleaves the functional peptide on GQDs resulting in changes of subcellular distribution of GQDs. Such changes can be quantified as a function of time, by the ratios of GQDs photoluminescence in nucleus to that in cytoplasm. As such, the NES-linker-DEVD-linker-NLS peptide enables the GQDs to function as molecular probes for the real-time monitoring of cellular apoptosis.
High glucose induces suppression of insulin signalling and apoptosis via upregulation of endogenous IL-1beta and suppressor of cytokine signalling-1 in mouse pancreatic beta cells. Venieratos, Panagiotis D, et al. Cellular signalling, (2010)
2009
Chronic hyperglycemia and inflammatory cytokines disrupt and/or attenuate signal transduction pathways that promote normal beta-cell survival, leading to the destruction of endocrine pancreas in type 2 diabetes. There is convincing evidence that autocrine insulin signalling exerts protective anti-apoptotic effects on beta cells. Suppressors of cytokine signalling (SOCS) were induced by several cytokines and inhibit insulin-initiated signal transduction. The aim of this study was to investigate whether high glucose can influence endogenous interleukin-1beta (IL-1beta) and SOCS expression thus affecting insulin signalling and survival in insulin-producing mouse pancreatic beta cells (betaTC-6). Results showed that prolonged exposure of betaTC-6 cells to increased glucose concentrations resulted in significant inhibition of insulin-induced tyrosine phosphorylation of the insulin receptor (IR), and insulin receptor substrate-2 (IRS-2) as well as PI3-kinase activation. These changes were accompanied by impaired activation of the anti-apoptotic signalling protein Akt and annulment of Akt-mediated suppression of the Forkhead family of transcription factors (FoxO) activation. Glucose-induced attenuation of IRS-2/Akt-mediated signalling was associated with increased IL-1beta expression. Enhanced endogenous IL-1beta specifically induced mRNA and protein expression of SOCS-1 in betaTC-6 cells. Inhibition of SOCS-1 expression by SOCS-1-specific small interfering RNA restored IRS-2/PI3K-mediated Akt phosphorylation suppressed by high glucose. The upregulation of endogenous cytokine signalling and FoxO activation were accompanied by enhanced caspase-3 activation and increased susceptibility of cells to apoptosis. These results indicated that glucose-induced endogenous IL-1beta expression increased betaTC-6 cells apoptosis by inhibiting, at least in part, IRS-2/Akt-mediated signalling through SOCS-1 upregulation.
Millipore offers a significant portfolio of well-published, quantitative and optimized live cell, whole-cell, and cell-based activity assays. Study Apoptosis, Angiogensis, Adhesion and more. Weitere Informationen >>
Apoptosis & Cell Death Assays
We offer a significant portfolio of well-published, quantitative and optimized whole-cell, and cell-based apoptosis assays for the study of Apoptosis and Cell Death. Weitere Informationen >>