Anti-human IL-29 mAb (MT6G4), biotin

Anti‑human IL‑29 mAb (MT6G4), biotin

3570-6-250

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Content

Monoclonal antibody MT6G4, biotinylated. Supplied at 0.5 mg/ml in PBS with 0.02% sodium azide.

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Product specifications

Intended use

This monoclonal antibody enables specific detection of human IL-29 in immunoassays such as ELISA, ELISpot, and FluoroSpot.

Serum/Plasma samples

Recommendation

MT6G4 is recommended as detection mAb in combination with capture mAb MT2H7 (product code 3570-3).

Product details

ProductAnti-human IL-29 mAb (MT6G4), biotin
ApplicationELISA, ELISpot, FluoroSpot
AnalyteIL-29 (IFN-λ1)
AntibodyMT6G4
ConjugateBiotin
ClonalityMonoclonal
ImmunogenRecombinant human IL-29
HostMouse
IsotypeIgG1
ReactivityHuman
Specificity

Native and recombinant human IL-29

Cross-reactivity

Cross-reacts with human IL-28A and IL-28B.

Purification

Purified from in vitro cultures by protein G affinity chromatography.

Biotinylation

Biotinylated through reaction with a N-hydroxysuccinimide ester of biotin.

Concentration0.5 mg/ml
Supplied in

PBS with 0.02% sodium azide. Sterile-filtered (0.2 µm).

Contents

Monoclonal antibody MT6G4, biotinylated. Supplied at 0.5 mg/ml in PBS with 0.02% sodium azide.

Shipping and Storage

Shipping

Shipped at ambient temperature.

Storage

Store product at 4-8°C or frozen at -20°C or below. Avoid repeated freezing/thawing.

Shelf lifeAt least 18 months from date of receipt.

Find out which analyte combinations we have evaluated in T cell FluoroSpot and which combinations are affected by capture effects or not. 

What is a capture effect?

When capture antibodies with different specificities are coated together, the capture of one cytokine may affect the secretion of other cytokines. This is usually more pronounced when studying T cell responses with polyclonal stimuli compared to antigen-specific responses. Capture effects are seldom a problem and can often be counteracted by the addition of an anti-CD28 antibody.

Depiction of capture effects observed in FluoroSpot

(1) IL-2 secreted by the activated T cell is captured by coated anti-IL-2 capture antibodies. (2) As a result, IL-2-stimulation of the T cell itself (autocrine stimulation) as well as nearby T cells (paracrine stimulation) is impaired, ultimately leading to (3) decreased IFN-γ secretion.

Co-stimulation with anti-CD28

Anti-CD28 mAb provides a co-stimulatory signal to antigen-specific responses by binding to CD28 on T cells. The addition of an anti-CD28 mAb to the cell culture enhances antigen-specific responses and can counteract capture effects. For example, the presence of IL-2 capture antibodies may result in reduced activation of T cells, as capturing of IL-2 decreases the amount of available IL-2 and thereby dampens the IL-2-mediated stimulation of T cells. The addition of anti-CD28 mAb restores IFN-γ responses (depicted in the below images). Further optimization may be necessary, depending on the cells and stimuli used. Too high concentrations of the anti-CD28 mAb may result in an elevation of non-specific cytokine secretion.

Overcoming capture effects using anti-CD28 anitbodies in FluoroSpot

(1) An anti-CD28 antibody can be added to provide a co-stimulatory signal that can restore (2) e.g. IFN-γ responses.

How to investigate capture effects

Our FluoroSpot Plus kits are evaluated for capture effects, and in studies of T cell responses we recommend co-stimulation with anti-CD28. With FluoroSpot Flex, it is possible to combine and build your own kit. For guidance look at our analyte combination table (above). Capture effects can be investigated by quantifying spot numbers in wells coated with single capture antibodies and compared to wells coated with a mixture of the capture antibodies. The compensatory effect of the anti-CD28 mAb may be assessed by comparing cells cultured with and without the anti-CD28 mAb.

Featured product, Published December 15, 2023

Analyze the secretion of human IL-29 (IFN-λ1)
Study antiviral immunity with ELISpot and FluoroSpot.
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IL-29 (IFN-λ1)

Analyte description

Interleukin 29 (IL-29, IFN-λ1) is at type III interferon. Presently, three type III interferons are described: IFN-λ1, IFN-λ2, and IFN-λ3. Similar to type I interferons, IL-29 is mainly produced by monocytes and dendritic cells in response to viral infections. Among other anti-viral effects, IL-29 induces upregulation of MHC class I on the surface of the virus-infected cell.

Alternative namesInterleukin 29, IL-29, IL29, IFN-λ1, Interferon-λ1, IFN-lamba1, IFNL1
Cell typeT cell, Th1, Th17, NK cell
Gene ID282618
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