Pierce™ Protein Coated Plates
Pierce™ Protein Coated Plates
Actual product may vary
Thermo Scientific™

Pierce™ Protein Coated Plates

Thermo Scientific™ Pierce Protein A, G, A/G and L Coated Plates provide an alternative to direct, passive adsorption methods for immobilizing antibodies for ELISA and other plate-based assay techniques.
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Catalog NumberSurface TreatmentDescription
15133Protein GClear, 8-well Strip
15132Protein AClear, 8-well Strip
15130Protein AClear, 96-well
15155Protein ABlack, 96-well
15154Protein AWhite, 96-well
15131Protein GClear, 96-well
15157Protein GBlack, 96-well
15156Protein GWhite, 96-well
15138Protein A/GClear, 8-well Strip
15190Protein LClear, 96-well
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Catalog number 15133
Price (KRW)/ Each
Price:413,000
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Surface Treatment:
Protein G
Description:
Clear, 8-well Strip
Price (KRW)/ Each
Price:413,000
Add to cart
Pierce™ Protein Coated Plates
Catalog number15133
Price (KRW)/ Each
Price:413,000
-
Add to cart
These plates are uniformly and stably coated with one of four popular immunoglobilin-binding proteins (Protein A, Protein G, Protein A/G, or Protein L). They enable antibodies, or pre-established antibody-antigen complexes, to be captured to wells of the polystyrene plate for subsequent detection in plate readers. The strategy is useful for a variety of assay situations, but it is generally not suitable for sandwich-type ELISA.

Thermo Scientific Pierce Protein Coated Plates provide an alternative to direct, passive adsorption methods for immobilizing antibodies for ELISA and other plate-based assay techniques.

Highlights
• Retain antibody activity, which can be lost when antibodies are immobilized by passive adsorption
• Orient antibodies for maximum antigen-binding capacity
• Immobilize antibodies for plate assays without prior purification
• Ensure minimal variation (<5% well-to-well) from consistent coating
• Reduce nonspecific binding because plates are pre-blocked with SuperBlock Blocking Buffer
• Bind 2 to 5 pmol of antibody per well (based on tests with rabbit IgG)

Protein A/G Coated Plates
• Fusion protein containing four antibody-binding sites from Protein A and two from Protein G
• Binds to most IgG species because it combines the specificities of Protein A and Protein G
• Binds to Fc region of antibodies, ensuring optimal orientation
• Binds well using a wide range of pH

Protein A Coated Plates
• Binds strongly to IgG from human, rabbit, guinea pig, pig, dog, and rhesus monkey
• Binds strongly to mouse IgG2a, IgG2b and IgG3
• Binds to Fc region of antibodies for optimal orientation

Protein G Coated Plates
• Binds strongly to IgG from many species including human, mouse, rabbit, sheep and goat
• Binds only to IgG—no cross-reactivity with other antibody classes
• Binds to Fc region of antibodies for optimal orientation

Protein L Coated Plates
• Binds to all classes of immunoglobulins (IgG, IgM, IgA, IgE and IgD)
• Binds to the VL region of kappa light chains (human I, III, IV and Mouse I) without interfering with antigen-binding sites
• Binds to Fab fragments and ScFv
• Does not bind bovine, goat or sheep immunoglobulin
• Binds weakly to rabbit immunoglobulin
• Pre-blocked to reduce nonspecific binding

For Research Use Only. Not for use in diagnostic procedures.
Specifications
Binding PropertyStandard Capacity, Affinity
DescriptionClear, 8-well Strip
Detection MethodColorimetric
Product LinePierce
ColorClear
Product TypeMicroplate
MaterialPolystyrene
No. of Wells96
Surface TreatmentProtein G
No. per Pack5 Plates
Plate BlockingSuperBlock™ Buffer
Unit SizeEach
Contents & Storage
Note: Plates are activated to 100 μL and supplied pre-blocked with Thermo Scientific SuperBlock Blocking Buffer. Use these plates for single-antibody assays only. In multiple antibody assays, such as sandwich ELISAs, the first antibody cannot block all binding sites and subsequent antibodies will bind to the plate, resulting in false positives.

Upon receipt store plates at 4°C in unopened pouches. Place opened, unused plates in a resealable bag and store desiccated at 4°C. Plates are shipped at ambient temperature.