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Recombinant Synaptophysin 抗体 (AA 274-313)

This 兔 单克隆 antibody specifically detects Synaptophysin in IHC. It exhibits reactivity toward 人.
产品编号 ABIN8093503
发货至: 中国
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Quick Overview for Recombinant Synaptophysin 抗体 (AA 274-313) (ABIN8093503)

抗原

See all Synaptophysin (SYP) 抗体
Synaptophysin (SYP)

抗体类型

Recombinant Antibody

适用

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人

宿主

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兔

克隆类型

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单克隆

标记

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This Synaptophysin antibody is un-conjugated

应用范围

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Immunohistochemistry (IHC)

克隆位点

MSVA-462R
  • 抗原表位

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    AA 274-313

    原理

    Synaptophysin Antibody

    免疫原

    A recombinant fragment (around amino acids 274-313) of human Synaptophysin (SYP) protein (exact sequence is proprietary) was used as the immunogen for the Synaptophysin Antibody for IHC.

    亚型

    IgG, kappa
  • 应用备注

    1. Optimal dilution of the Synaptophysin Antibody for IHC should be determined by the researcher.

    2. This SYP/Synaptophysin antibody is recombinantly produced by expression in human HEK293 cells.

    3. Manual Protocol: Freshly cut sections should be used (less than 10 days between cutting and staining). Heat-induced antigen retrieval for 5 minutes in an autoclave at 121oC in pH 7.8 Target Retrieval Solution buffer. Apply the antibody at a dilution of 1:150 at 37oC for 60 minutes. Visualization of bound antibody by the EnVision Kit (Dako, Agilent) according to the manufacturer's directions.

    限制

    仅限研究用
  • 状态

    Liquid

    缓冲液

    Antibody in 1X PBS with 0.05 % BSA, 0.05 % sodium azide

    储存液

    Sodium azide

    注意事项

    This product contains Sodium azide: a POISONOUS AND HAZARDOUS SUBSTANCE which should be handled by trained staff only.

    储存条件

    -20 °C,-80 °C

    储存方法

    SYP/Synaptophysin antibody with sodium azide - store at 2 to 8oC, antibody without sodium azide - store at -20 to -80oC.
  • 抗原

    Synaptophysin (SYP)

    别名

    Synaptophysin

    背景

    Synaptophysin (SYP) is a synaptic vesicle glycoprotein widely expressed in neurons and neuroendocrine cells where it functions as a major component of synaptic vesicle membranes involved in neurotransmitter storage and vesicle trafficking. Synaptophysin Antibody for IHC / SYP Immunohistochemistry Antibody (clone MSVA-462R) is a recombinant rabbit monoclonal antibody developed specifically for immunohistochemistry staining of Synaptophysin protein in formalin-fixed paraffin-embedded (FFPE) tissue sections. Synaptophysin is one of the most widely used neuroendocrine markers in immunohistochemistry and is routinely used in pathology to identify tumors with neuroendocrine differentiation. Because of its robust and characteristic staining pattern, Synaptophysin immunohistochemistry is commonly used to evaluate neuroendocrine tumors including small cell carcinoma, carcinoid tumors, pancreatic neuroendocrine tumors, neuroblastoma, and other malignancies demonstrating neuroendocrine lineage differentiation.

    In immunohistochemistry staining of FFPE tissues, Synaptophysin typically shows a distinctive granular cytoplasmic staining pattern corresponding to synaptic vesicle membranes within neuronal and neuroendocrine cells. Synaptophysin Antibody for IHC enables visualization of these vesicle-associated structures within tissue sections, allowing identification of neuroendocrine cell populations in both normal tissues and tumors. Immunohistochemistry detection of SYP therefore provides an important tool for studying neuroendocrine differentiation and for evaluating tumor samples where neuroendocrine lineage markers are being investigated. The characteristic punctate cytoplasmic staining observed by immunohistochemistry reflects the localization of Synaptophysin within synaptic vesicle membranes.

    Clone MSVA-462R is produced as a recombinant rabbit monoclonal antibody, combining the high affinity epitope recognition typical of rabbit-derived antibodies with the consistency of recombinant antibody technology. Recombinant rabbit monoclonal antibodies are generated from defined antibody sequences expressed in controlled recombinant systems, allowing highly reproducible antibody production and consistent immunohistochemistry staining results across manufacturing batches. The recombinant rabbit monoclonal format supports reliable detection of Synaptophysin protein in FFPE tissues and provides consistent staining performance for immunohistochemistry experiments examining neuroendocrine markers.

    Extensive validation using human tissue microarray (TMA) panels further supports the immunohistochemistry performance of this antibody. Tissue microarrays contain hundreds of individual tissue cores representing diverse normal organs and multiple tumor types, enabling systematic immunohistochemistry evaluation of protein expression patterns across large tissue cohorts. TMA-based immunohistochemistry analysis with Synaptophysin Antibody for IHC demonstrates cytoplasmic staining patterns consistent with known Synaptophysin expression in neuronal and neuroendocrine tissues while allowing comparison of expression across numerous tumor types. Human tissue microarray validation provides important evidence supporting antibody performance in immunohistochemistry by enabling evaluation of staining specificity, tissue distribution, and tumor-associated expression patterns across extensive normal and cancer tissue panels.

    Synaptophysin Antibody for IHC / SYP Immunohistochemistry Antibody (clone MSVA-462R) therefore provides a recombinant rabbit monoclonal antibody optimized for immunohistochemistry detection of the Synaptophysin synaptic vesicle protein. The combination of recombinant rabbit monoclonal antibody technology and large-scale human tissue microarray immunohistochemistry analysis supports reliable visualization of SYP expression in studies investigating neuroendocrine differentiation, neuronal biology, and neuroendocrine tumor pathology.

    This antibody is also part of a broader collection of < a href='/ihc-antibodies-tissue-microarray-validated.html'>IHC antibodies validated by tissue microarray analysis, supporting consistent staining across normal and cancer tissues.

    UniProt

    P08247

    途径

    Regulation of G-Protein Coupled Receptor Protein Signaling, Regulation of long-term Neuronal Synaptic Plasticity
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