The clear path to small molecule visualization & quantification

L-Kynurenine antibodies

for IHC & IF imaging


Anti-Kynurenine antibodies

Two different hosts for easy multiplexing

L-Kynurenine Antibody – Mouse Monoclonal

Used for IF & IHC in brain, heart, and tumor tissues I Cited in 10+…

 449

Kynurenine Antibody (L) – Rabbit Polyclonal

Used for IHC in FFPE lung & tumor tissues. Cited in literature

 449

13+ citations

They published with our L-Kynurenine antibodies

Harvard Medical SchoolUniversity of PerugiaKarolinska Instituteboston university school of medicinefujita health university

Other products to explore the kynurenine pathway

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Kynurenine to Tryptophan ratio ELISA pack

High Sensitive, ≥ 20µL Biological fluids, Cited in 50+ papers
 1.049  1.198

L-Tryptophan Antibody – Mouse Monoclonal

Used for IF in rodent brain & renal tissues, and human cell cultures. Cited in…

 449

Kynurenic acid Antibody – Rabbit Polyclonal

Validated for IHC in FFPE human brain tissues

 449

Quinolinic acid Antibody – Mouse Monoclonal

Validated for IF & IHC in FFPE brain tissues I Cited in literature

 449

Kynurenic Acid/Quinolinic Acid ELISA pack

High Sensitivity. Plasma, Serum. Min. Vol. 25-50µL. Cited in literature

 1.049 1.198

Serotonin Antibody for FFPE samples – Rabbit Polyclonal

Used for IF & IHC in FFPE samples of mouse brain & human colon tissues…

 449

ImmuSmol provides a range of L-Kynurenine antibodies specifically designed for immunohistochemistry and immunofluorescence applications. These antibodies allow researchers to visualize and quantify the kynurenine pathway in tissue samples with high specificity and reproducibility. The portfolio includes both a mouse monoclonal antibody, clone 3D4-F2, and a rabbit polyclonal antibody. The monoclonal antibody has been validated across brain, heart, lung, and tumor tissues, with strong performance in both IHC and IF. The rabbit polyclonal antibody offers flexibility for multiplex staining, making it particularly suitable when combined with mouse antibodies in complex experimental designs. Both antibodies have been cited in more than ten peer-reviewed publications, underlining their adoption and reliability in research. They have been successfully used to reveal L-Kynurenine in human and animal samples, including FFPE and frozen tissues. Their specificity has been demonstrated through lack of cross-reactivity with structurally related metabolites such as tryptophan, kynurenic acid, and anthranilic acid. By offering high affinity and broad tissue applicability, these L-Kynurenine antibodies provide robust tools for investigating the role of tryptophan metabolism in cancer, neuroscience, and immunology. Researchers can select between the monoclonal and polyclonal formats to match their staining strategies and experimental needs, ensuring both precision and versatility in imaging studies.
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