| Description | Anti fluorescence quencher is a reagent that can slow down fluorescence quenching. It can be used in most fluorescent dyes with simple operation. This product is recommended to be used in fixed permeabilized cells or tissues. After observation, nail polish or sealant can be used to seal the edge of Anti fluorescence quencher is a reagent that can slow down fluorescence quenching. It can be used in most fluorescent dyes with simple operation. This product is recommended to be used in fixed permeabilized cells or tissues. After observation, nail polish or sealant can be used to seal the edge of the coverslip; DAPI containing antifluorescent quencher can directly stain nuclei. Presentation:Before using the product, return it to room temperature, slightly shake and mix to avoid bubbles.1.Cell samples : ( 1 ) After dyeing, absorb the liquid. ( 2 ) Add 10-20 µL anti-quenching agent to each glass slide, cover the cover glass with cells, and let the cells contact the anti-quenching agent. When the cover glass is covered, the excess can be squeezed out. The anti-quenching agent, try not to have bubbles. ( 3 ) Fluorescence microscope observation. ( 4 ) ( optional ) : After the observation, nail polish or sealant can be used to seal the edge of the cover glass. 2. Tissue sections : ( 1 ) After the staining is completed, the staining solution is sucked off. ( 2 ) Drop 10-20 µL of anti-quenching agent on the tissue section, cover the cover glass, let the section contact the anti-quenching agent, and squeeze out the excess anti-quenching agent when cover the cover glass to avoid bubbles as much as possible. ( 3 ) Observation of tissue sections by fluorescence microscope. ( 4 ) ( optional ) : After the observation, nail polish or sealant can be used to seal the edge of the cover glass. 3.Other samples : Other samples can be operated with reference to the above samples. Matters needing attention:1. the anti fluorescence quencher has poor anti quenching effect on staining live cell membrane dyes and mitochondrial dyes. It is recommended that the anti fluorescence quencher be used to fix permeabilized cells or tissues. 2. when the anti fluorescence quencher is matched with our YF 488 dye, there may be background interference. This situation may be caused by adding too much of this product. The amount of this product should be minimized. 3. the anti fluorescence quencher may not be suitable for some dyes. Pre experiment is recommended to test the matching before the experiment. 4. for your safety and health, please wear experimental clothes and disposable gloves.Scope of application:Fluorescent Mounting Media... Read More | 1、Product attributeReaction time:short (up to 20 minutes) at 20-37°CLot-to-lot variation:<5%Boiling point : 100℃pH-Value (at 20 °C): 3.5-4.0Density (20℃) : 1.0111 g/cm³Appearance: colourless to pale blue liquidOdour: odourlessRecommend Incubation 1、Product attributeReaction time:short (up to 20 minutes) at 20-37°CLot-to-lot variation:<5%Boiling point : 100℃pH-Value (at 20 °C): 3.5-4.0Density (20℃) : 1.0111 g/cm³Appearance: colourless to pale blue liquidOdour: odourlessRecommend Incubation temperature: 20-37 °C2、Requirements for storage rooms and vessels1.Keep container tightly closed.2.Keep cool. protected from light3.Keep/Store only in original container.4.Never return spills in original containers for reuse.5. Keep away from: Food and feeding stuffs3、It is a ready-to-use, labelling-free TMB-substrate solution.4、Biosafety informationThis mixture is not classified as hazardous in accordance with Regulation (EC) No 1272/2008;5、Advantage1. Very high absorbance yield2. Very low background signals3. Certified long-term stability4. Regeneration following light exposure... Read More | Product DescriptionEndo F2 cleaves N-linked (asparagine-linked) biantennary oligosaccharides from glycoproteins. It also will cleave high mannose glycans but at a 40x reduced rate. It cleaves between the two N-acetylglucosamine residues in the diacetylchitobiose core of the oligosaccharide, Product DescriptionEndo F2 cleaves N-linked (asparagine-linked) biantennary oligosaccharides from glycoproteins. It also will cleave high mannose glycans but at a 40x reduced rate. It cleaves between the two N-acetylglucosamine residues in the diacetylchitobiose core of the oligosaccharide, generating a truncated sugar molecule with one N-acetylglucosamine residue remaining on the asparagine. In contrast, PNGase F removes the oligosaccharide intact.Endoglycosidase F2 is less sensitive to protein conformation than PNGase F and is therefore more suitable for deglycosylation of native proteins. However, for optimal results, denaturation of the glycoprotein is recommended.Contents60 µl aliquot of enzyme (0.3 U) in 10 mM sodium acetate 25mM NaCl, pH 4.5Included with 20 µL and 60 µL pack sizes:5x Reaction Buffer – 250 mM sodium acetate, pH 4.5Molecular weight 32,000 daltonsSpecific Activity Defined as the amount of enzyme required to catalyze the release of N-linked oligosaccharides from 1 micromole of denatured porcine fibrinogen in 1 minute at 37°C, pH 5.5. Cleavage is monitored by SDS-PAGE (cleaved fibrinogen migrates faster).Formulation The enzyme is provided as a sterile-filtered solution in 10 mM sodium acetate, 25mM NaCl, pH 4.5Specificity Endo F2 cleaves Asparagine-linked biantennary and high mannose glycans (at a 40X reduced rate). It cleaves between the two N-acetylglucosamine residues in the diacetylchitobiose core of the oligosaccharide, generating a truncated sugar molecule with one N-acetylglucosamine residue remaining on the asparagine. In contrast, PNGase F removes the oligosaccharide intact. Endoglycosidase F2 is less sensitive to protein conformation than PNGase F and is therefore more suitable for deglycosylation of native proteins. However for optimal results, denaturation of the glycoprotein is recommended.Quality & Purity Endo F2 is tested for contaminating protease as follows: 10 µg of denatured BSA is incubated at 37°C for 24 hours with 2 µl of enzyme. SDS-PAGE analysis of the treated BSA shows no evidence of degradation. The production host strain has been extensively tested and does not produce any detectable glycosidases.Stability Several days exposure to ambient temperatures will not reduce activity. Stable at least 12 months when stored properly.Directions for use 1. Add up to 200 µg of glycoprotein to an Eppendorf tube. Adjust to 38 µl final volume with de-ionized water. 2. Add 10 µl 5x Reaction Buffer 4.5 3. Add 2.0 µl of Endo F2 to the reaction. Incubate 1 hour at 37°C. Monitor cleavage by SDS-PAGEThe production host strain has been extensively tested and does not produce any detectable glycosidases... Read More | Source: Microorganism Isoelectric point: 6.5 Michaelis constant: 9.2×10^-3 M (D-Glucose); 8.6×10^-3 M (NAD) Optimum pH: 9.0~9.5 Fig. 1Optimum temperature: 55℃ Fig. 3pH Stability: 6.0-10.0 (25℃, 24hr) Fig. 2Thermal stability: <50℃ (pH 8.0, Source: Microorganism Isoelectric point: 6.5 Michaelis constant: 9.2×10^-3 M (D-Glucose); 8.6×10^-3 M (NAD) Optimum pH: 9.0~9.5 Fig. 1Optimum temperature: 55℃ Fig. 3pH Stability: 6.0-10.0 (25℃, 24hr) Fig. 2Thermal stability: <50℃ (pH 8.0, 30min) Fig. 4Inhibitors: NEM,SDS Effect of various chemicals: Table 1Reaction:... Read More | Inquire |