| Code | CSB-RA023024MA1HU |
| Size | US$210 |
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| Application | Recommended Dilution |
|---|---|
| WB | 1:500-1:2000 |
| IHC | 1:50-1:200 |
| IF | 1:50-1:200 |
Synaptophysin serves as one of the most widely used markers for synaptic vesicles and neuroendocrine differentiation, making it indispensable for neuroscience research and diagnostic pathology. This integral membrane glycoprotein localizes to presynaptic vesicles throughout the nervous system and plays essential roles in synaptic vesicle biogenesis and neurotransmitter release. Its consistent expression pattern has established synaptophysin as a gold-standard marker for identifying neuronal and neuroendocrine tissues.
This recombinant monoclonal antibody, clone 2B2, offers the reproducibility that demanding research applications require. Because the antibody sequence is defined and produced through recombinant technology, you can expect consistent performance across experiments and between lots, eliminating the variability that can complicate long-term studies or multi-site collaborations. The mouse host and mFc2a isotype provide compatibility with standard secondary detection systems.
Validation across multiple techniques demonstrates this antibody's experimental flexibility. Western blot analysis of A549 whole cell lysate detects a band at the predicted 34 kDa molecular weight, confirming target specificity at dilutions between 1:500 and 1:2000. Immunohistochemistry testing in paraffin-embedded human colorectal cancer tissue shows reliable staining at 1:200 dilution following citrate buffer antigen retrieval, while immunofluorescence analysis in HeLa cells demonstrates clear signal suitable for subcellular localization studies.
Whether you are investigating synaptic plasticity, characterizing neuroendocrine tumors, or examining neuronal differentiation in cell culture models, this antibody provides a dependable tool validated in human samples across complementary detection platforms. The affinity-purified preparation arrives ready for immediate use in your neuroscience research workflows.
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