Anti-SLC7A3 Recombinant Antibody Products
Loading...Anti-SLC7A3 Products
Loading...- Recombinant Mouse Anti-SLC7A3 Antibody (clone 1B4E2) (VS3-FY1352)
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- Type: Mouse IgG1
- Application: ELISA, WB, FC
- Recombinant Mouse Anti-SLC7A3 Antibody (clone 6H3B7) (VS3-FY1353)
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- Type: Mouse IgG1
- Application: ELISA, WB, IHC, FC
- Mouse Anti-SLC7A3 Recombinant Antibody (SL851) (VS-0326-YC851)
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- Species Reactivity: Human, Mouse, Rat
- Type: Mouse IgG1
- Application: ELISA, IHC, FC, WB
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For Research Use Only. Not For Clinical Use.
Creative Biolabs is a world-class supplier of neuroscience and amino acid transport research tools, with top-tier anti-SLC7A3 recombinant antibodies. SLC7A3, also known as CAT-3, is a highly selective cationic amino acid transporter expressed in the brain, playing a crucial role in neuronal function and metabolism. Our high-quality, specific anti-SLC7A3 recombinant antibodies are essential research tools for studying its role in neurotransmitter synthesis, neuronal signaling, and potential links to neurological disorders.
SLC7A3: A Cationic Amino Acid Transporter in the Brain
Solute carrier family 7 member 3 (SLC7A3), also known as cationic amino acid transporter 3 (CAT-3), is a plasma membrane transporter that mediates the cellular uptake of cationic amino acids such as arginine, lysine, and ornithine. It is highly selectively expressed with the highest levels found in a subset of neurons in the brain. One of the key substrates of SLC7A3, arginine, is the precursor for the synthesis of the important signaling molecule nitric oxide (NO) in the nervous system. SLC7A3 is thought to be a key regulator of NO-mediated neurotransmission by regulating arginine supply to neurons.
Alternative Names
Solute Carrier Family 7 Member 3; Solute Carrier Family 7 (Cationic Amino Acid Transporter, Y+ System), Member 3; ATRC3; CAT-3; CAT3; Cationic Amino Acid Transporter Y+; Cationic Amino Acid Transporter 3
Background
This gene encodes a member of the solute carrier family 7. The encoded protein is a sodium-independent cationic amino acid transporter. Alternate splicing results in multiple transcripts that encoded the same protein.
Anti-SLC7A3 rAb Products
Our anti-SLC7A3 recombinant antibodies are carefully engineered for specificity and optimal performance. Stringently validated, they are capable of reliably detecting the CAT-3 transporter protein. Optimized for IHC and immunofluorescence to map precise neuronal localization, as well as Western Blot of brain lysates, our rAbs represent the gold standard for research into this important transporter.
Table 1. Featured anti-SLC7A3 recombinant antibody products at Creative Biolabs.
| Cat. No. | Product Name | Target Species | Host Species | Applications |
| VS3-FY1352 | Recombinant Mouse Anti-SLC7A3 Antibody (clone 1B4E2) | Human | Mouse IgG1 | WB, FC, ELISA |
| VS3-FY1353 | Recombinant Mouse Anti-SLC7A3 Antibody (clone 6H3B7) | Human | Mouse IgG1 | WB, FC, ELISA, IHC |
Customer Reviews
Recombinant Mouse Anti-SLC7A3 Antibody (clone 1B4E2)
rAb Production
Creative Biolabs is proud to use state-of-the-art production technologies to speed the advancement of neuroscience research. Our anti-SLC7A3 recombinant antibodies are carefully developed against this multi-pass transmembrane protein for the highest levels of specificity and sensitivity.
Featured Anti-SLC7A3 Recombinant Antibody Production Platforms
Fig.1 Milligram-scale anti-SLC7A3 recombinant antibody production.
Fig.2 Gram-scale anti-SLC7A3 recombinant antibody production.
rAb Modalities
Creative Biolabs is a provider of flexible, cutting-edge research tools for the scientific community. Our anti-SLC7A3 antibodies are available in numerous formats to support a wide range of experimental approaches to the study of this important transporter.
Fig.3 Full-length anti-SLC7A3 recombinant antibody production and modalities.
Take the next step in your neuroscience research with Creative Biolabs' high-quality anti-SLC7A3 recombinant antibodies. Marked by our industry-leading specificity and stringent validation, our portfolio provides the optimal tools for basic research into neuronal signaling mechanisms. Let us help you do your important work, contact one of our specialists today.

