| Code | CSB-RA783626A0HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| FC | 1:50-1:200 |
Histamine H3 receptor (HRH3) serves as a critical presynaptic autoreceptor in the central nervous system, where it modulates the release of histamine and other neurotransmitters including acetylcholine, dopamine, and norepinephrine. This regulatory role positions HRH3 as a compelling target in neuroscience research, particularly in studies exploring cognitive function, sleep-wake cycles, and neurological disorders where histaminergic signaling plays a central role.
This recombinant monoclonal antibody, clone 27H8, offers researchers the consistency and reliability that sequence-defined production provides. Unlike traditional hybridoma-derived antibodies, recombinant technology ensures that each lot delivers identical performance characteristics, eliminating the variability that can compromise longitudinal studies or multi-site collaborations. The antibody is raised in rabbit against a synthetic peptide derived from human HRH3 and undergoes affinity chromatography purification to ensure high specificity.
Validation studies demonstrate effective performance in flow cytometry applications using the SH-SY5Y neuroblastoma cell line, a well-established model for neuronal research. Surface staining at a 1:50 dilution produced clear signal separation from isotype controls, confirming the antibody's ability to detect HRH3 on intact cells. This makes it particularly valuable for researchers investigating receptor expression levels or conducting cell sorting experiments. This antibody has also been verified for ELISA, indicating that it can be used as a detection antibody or paired as a capture/detection antibody pair, thereby constructing a quantitative detection system for determining the concentration of the target protein in the sample.
Supplied in a glycerol-containing buffer optimized for long-term stability, this antibody supports neuroscience investigations into histaminergic signaling, receptor pharmacology, and the development of therapeutic strategies targeting the H3 receptor pathway.
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