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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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48-602MAG
Buffer Detection Kit for Magnetic Beads
1 Kit
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Caspase-9 Colorimetric Activity Assay Kits provide a simple & convenient means for assaying the activity of caspases that recognize the LEHD.
More>>Caspase-9 Colorimetric Activity Assay Kits provide a simple & convenient means for assaying the activity of caspases that recognize the LEHD. Less<<
SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
Activation of ICE-family proteases/caspases initiates apoptosis in mammalian cells. Chemicon's Caspase-9 Colorimetric Activity Assay Kits provide a simple and convenient means for assaying the activity of caspases that recognize the LEHD. The assay is based on spectophotometric detection of the chromophore p-nitroaniline (pNA) after cleavage from the labeled substrate LEHD-pNA. The free pNA can be quantified using a spectrophotometer or a microtiter plate reader at 405 nm. Comparison of the absorbance of pNA from an apoptotic sample with an uninduced control allows determination of the fold increase in caspase-9 activity.
Alternate Names
Mch-6
ICE-LAP6
Apaf-3
Materials Required but Not Delivered
· Microcentrifuge and 1.5 mL Microcentrifuge tubes
· 37°C Waterbath or Incubator
· Spectrophotometer or Microplate Reader
· 96 well Microtiter Plate
References
Product Information
Components
5X Cell Lysis Buffer (Part No. 90065): 5 mL
5X Assay Buffer (Part No. 90066): 10 mL
Caspase-9 Substrate (Ac-LEHD-pNA) (Part No. 90084): 1 mL of 3 mg/mL solution
Caspase-9 Inhibitor (Ac-LEHD-CHO) (Part No. 90087): 50 μL of 100 μM (0.054 mg/mL) in DMSO
pNA Standard (Part No. 90085): 250 μL of 10 mM in DMSO
This gene encodes a member of the cysteine-aspartic acid protease (caspase) family. Sequential activation of caspases plays a central role in the execution-phase of cell apoptosis. Caspases exist as inactive proenzymes which undergo proteolytic processing at conserved aspartic residues to produce two subunits, large and small, that dimerize to form the active enzyme. This protein is processed by caspase APAF1; this step is thought to be one of the earliest in the caspase activation cascade. Alternative splicing results in two transcript variants which encode different isoforms.
FUNCTION: SwissProt: P55211 # Isoform 2 lacks activity is an dominant-negative inhibitor of caspase-9. SIZE: 416 amino acids; 46281 Da SUBUNIT: Heterotetramer that consists of two anti-parallel arranged heterodimers, each one formed by a 35 kDa (p35) and a 10 kDa (p10) subunit. Caspase-9 and APAF1 bind to each other via their respective NH2-terminal CED-3 homologous domains in the presence of cytochrome C and ATP. Interacts with the inhibitors BIRC2, BIRC4, BIRC5 and BIRC7. TISSUE SPECIFICITY: Ubiquitous, with highest expression in the heart, moderate expression in liver, skeletal muscle, and pancreas. Low levels in all other tissues. PTM: Cleavages at Asp-315 by granzyme B and at Asp-330 by caspase- 3 generate the two active subunits. Caspase-8 and -10 can also be involved in these processing events. SIMILARITY: SwissProt: P55211 ## Belongs to the peptidase C14 family. & Contains 1 CARD domain.
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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
Store kit materials at -20°C up to their expiration date.
Special Precautions:
· After thawing reagents, use immediately or aliquot and freeze at -20°C for longer storage. Avoid repeated freeze/thaw cycles.
· The Caspase-9 substrate and pNA standard are especially light sensitive. Maintain these reagents in amber or covered containers.
Edaravone, a ROS scavenger, ameliorates photoreceptor cell death after experimental retinal detachment. Roh M, Murakami Y, Thanos A, Vavvas D, Miller JW Invest Ophthalmol Vis Sci
2010
Purpose. To investigate whether edaravone (3-methyl-1-phenyl-2-pyrazolin-5-one), a free radical scavenger is neuroprotective against photoreceptor cell death in a rat model of retinal detachment (RD). Methods. RD was induced in adult Brown Norway rats by subretinal injection of sodium hyaluronate. Edaravone (3 mg/kg, 5 mg/kg, 10 mg/kg) or physiologic saline were administered intraperitoneally once a day until sacrifice on day 3 or 5. Oxidative stress in the retina was assessed by 4-hydroxynonenal staining or ELISA for protein carbonyl content. Photoreceptor death was assessed by TUNEL and measurement of the outer nuclear layer thickness . Western blot analysis and caspase activity assays were performed. Inflammatory cytokine secretion and inflammatory cell infiltration were evaluated by ELISA and immunostaining, respectively. Results. RD resulted in increased generation of ROS. Treatment with 5 mg/kg edaravone significantly reduced ROS level along with decrease in TUNEL positive cells in the photoreceptor layer. Caspase assay also confirmed decreased activation of caspases -3,-,8, and -9 in RD treated with edaravone. The level of the anti-apoptotic Bcl-2 was increased in detached retinas after edaravone treatment, whereas the levels of the stress-activated p-ERK1/2 were decreased. Additionally, edaravone treatment resulted in a significant decrease in the levels of TNF-α, MCP-1 and macrophage infiltration. Conclusions. Oxidative stress plays an important role in the photoreceptor cell death after RD. Edaravone treatment may aid in preventing photoreceptor cell death following RD by suppressing ROS-induced photoreceptor damage.
Neuroprotective effect of Ro5-4864 following brain injury. Jean F Soustiel,Menashe Zaaroor,Eugene Vlodavsky,Leo Veenman,Abraham Weizman,Moshe Gavish Experimental neurology
214
2008
The 18 kDa translocator protein (TSPO) is a protein complex located at the outer mitochondrial membrane and interacting with the mitochondrial permeability transition pore (mPTP), indicating its involvement in the control of mPTP opening. We intended to explore the effect of TSPO ligands, PK 11195 and Ro5-4864 on apoptosis in a rat model of cortical injury. Sprague-Dawley rats received a daily intraperitoneal injection of dimethylsulfoxide (vehicle), PK 11195, or Ro5-4864, starting 2 days prior the injury and a third injection after the injury. At 6 weeks, immunohistochemistry analysis showed that Ro5-4864 resulted in a significant increase in the number of surviving neurons and in the density of the neurofilament network in the perilesional cortex in comparison with animals of the vehicle and PK 11195 groups. In tissue samples dissected from the injured area, Ro5-4864 caused a significant reduction in activation of caspases 3 and 9 but not of caspase 8 in comparison with the vehicle and PK 11195 groups. In addition, measurements of transmembrane mitochondrial potential of mitochondria (Deltapsi(M)) isolated from normal rat brain showed that loss of Deltapsi(M) induced by recombinant Bax could be significantly reduced by Ro5-4864 in a concentration-dependent manner. Our findings indicate that the neuroprotective effect shown by Ro5-4864 in the present model of brain injury involves the mitochondrial pathway of apoptosis modulation of mPTP.
The effect of oxygenation level on cerebral post-traumatic apoptotsis is modulated by the 18-kDa translocator protein (also known as peripheral-type benzodiazepine receptor) in a rat model of cortical contusion. J F Soustiel,E Palzur,E Vlodavsky,L Veenman,M Gavish Neuropathology and applied neurobiology
34
2008
Hyperbaric hyperoxia has been shown to reduce apoptosis in brain injury. As the 18-kDa translocator protein (TSPO), also known as peripheral-type benzodiazepine receptor, is closely associated with the mitochondrial transition pore and because of its role in mitochondrial respiration and apoptosis, we hypothesized that reduction of apoptosis by hyperoxia may involve the TSPO.
Millipore’s Caspase Antibodies, proteins, and assays have been well validated and published. See below for a comprehensive list of our Caspase products, based on the expertise of Upstate & Chemicon. Weitere Informationen >>