重组抗人CD47单抗(B6H12)流式 | Syd Labs PA007470.m1

重组抗人CD47单抗流式(B6H12) Syd Labs PA007470.m1 - 武汉多找找科技

重组抗人CD47单抗(B6H12)流式 | Syd Labs PA007470.m1

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重组抗人CD47单克隆抗体(克隆号B6H12) ,小鼠IgG1 Kappa(Syd Labs货号:PA007470.m1)是用哺乳动物细胞生产的重组抗体,可用于流式细胞术和免疫组织化学-冷冻等研究,纯度>95%。其不变区为小鼠Mouse IgG1 Kappa (mIgG1或m1),可与重组小鼠IgG1同型对照抗体配套使用。样品制备条件和最佳样品稀释度应由研究人员通过实验确定。

SKU: PA007470.m1 分类: ,

产品参数

货号 PA007470.m1
产品名称重组抗人CD47单抗(B6H12)流式 | Syd Labs PA007470.m1
英文名 Recombinant Anti-human CD47 Monoclonal Antibody (Clone: B6H12), Mouse IgG1 Kappa
供货商名称 Syd Labs, Inc.
品牌名 Syd Labs
别称 CD47,CD47 抗原,CD47 分子,CD47 糖蛋白,整合素相关蛋白,整合素相关蛋白,白细胞表面抗原 CD47,MER6,蛋白 MER6,Rh 相关抗原,OA3,IAP
概述 Syd Labs提供重组小鼠IgG1同型对照抗体。样品制备条件和最佳样品稀释度应由研究人员通过实验确定。
克隆号 B6H12
同种型 小鼠 IgG1 kappa
特异性 该重组 B6H12 抗体与人 CD47 蛋白特异性结合
免疫源 重组抗人CD47单克隆抗体 (克隆:B6H12)在哺乳动物细胞中产生
抗体形式 0.2微米过滤溶液,pH 7.4,含0.09%叠氮化钠
偶联 非偶联
纯度 >95%(在还原条件下通过SDS-PAGE测定)
运输 重组抗人CD47单克隆抗体(克隆号B6H12) ,小鼠IgG1 Kappa用冰袋运输。收到后,请立即将其存放在下面建议的温度下。
稳定性与存储 使用手动除霜冰箱并避免重复冻融循环。 自收到之日起 12个月,保存在2 至 8°C。 请勿冻结。
注意事项 PA007470.m1 Syd Labs提供重组小鼠IgG1同型对照抗体。样品制备条件和最佳样品稀释度应由研究人员通过实验确定。
产品咨询 Syd Labs在国内只通过代理商销售其产品,不做直销。终端用户咨询价格请联系Syd Labs中国代理商。
关于Syd Labs产品如果有任何技术或其它问题,欢迎随时联系Syd Labs国内市场推广合作伙伴:武汉多找找科技有限公司,企业微信:duozhaozhao2024 联系电话:18162581039(龙经理)
应用详情 流式细胞术(FC)和免疫组织化学-冷冻(IHC-F)。

文献

重组抗人CD47单克隆抗体(克隆号B6H12) ,小鼠IgG1 Kappa(Recombinant Anti-human CD47 Monoclonal Antibody (Clone: B6H12), Mouse IgG1 Kappa,货号:PA007470.m1 Syd Labs)

CD47是一种广泛表达于免疫细胞、造血细胞及多种肿瘤细胞表面的五次跨膜糖蛋白,通过与巨噬细胞表面的信号调节蛋白α(SIRPα)特异性结合,传递“别吃我”(Don’t eat me)抑制性信号,帮助细胞逃避巨噬细胞的吞噬作用。经典克隆号B6H12单克隆抗体能够特异性识别CD47胞外域的构象表位,有效阻断CD47与SIRPα之间的相互作用,解除巨噬细胞的吞噬抑制。抗人CD47单抗(B6H12抗体)被广泛应用于多色流式细胞术表达检测、体外巨噬细胞吞噬实验(ADCP)、细胞粘附与迁移阻断,以及肿瘤免疫逃逸机制和靶向免疫治疗的前沿研究。

Syd Labs推出的重组抗人CD47单抗(B6H12抗体)采用先进的哺乳动物表达系统重组合成,克服了传统杂交瘤表达中的批间不稳定与抗体漂移,确保了极高一致性的结合活性与高纯度。该产品按体内实验级(In Vivo Grade)标准严格精制,具备极低内毒素(Low Endotoxin)水平且无防腐剂成分,有效避免了在敏感细胞培养及体内动物实验中的细胞毒性干扰。采用标准的Mouse IgG1 Kappa结构,Syd Labs B6H12抗体与配套同型对照结合使用,能够为免疫学、肿瘤学及生物医药研发提供科学严谨、高重复性的实验数据保障。

抗人CD3e单抗(OKT3)部分参考文献:

1. Mass spectrometric profiling of HLA-B44 peptidomes provides evidence for tapasin-mediated tryptophan editing
Kaur, A., et al. J Immunol. 2023. doi: 10.4049/jimmunol.2300405
“This study uses mass spectrometry to explore tapasin-mediated tryptophan editing in HLA-B44 peptidomes. The W6/32 antibody (anti-human HLA-ABC) was purified from mouse ascites and crosslinked to PureProteome Protein A magnetic beads for immunoaffinity purification. Cells were stained with W6/32-FITC antibody for surface HLA class I analysis via quantitative flow cytometry, revealing a significant reduction in HLA-B44:05 molecules on tapasin knockout cells compared to wild-type cells. A slight, non-significant decrease in HLA-B44:05 surface stability was observed in tapasin knockout cells in the presence of brefeldin A.”

2. Inhibition of major histocompatibility complex-I antigen presentation by sarbecovirus ORF7a proteins
Zhang, F., et al. Proc Natl Acad Sci U S A. 2022. doi: 10.1073/pnas.2208191119
“This study investigates how sarbecovirus ORF7a proteins inhibit MHC-I antigen presentation. Human 293T, HuH7.5, U2OS, and A549/ACE2 cells were transduced with lentiviral vectors expressing SARS-CoV-2 ORF7a or Nef and stained with the pan-HLA-ABC antibody W6/32 for flow cytometry. MHC-I surface levels, measured by median fluorescence intensity, were reduced in ORF7a-expressing cells. The study compared wild-type and ORF7-deleted SARS-CoV-2 strains, confirming ORF7a’s role in suppressing MHC-I expression.”

3. Assessments of HLA-I Specificities of Anti-HLA-I Monoclonal Antibodies Using Solid Phase Bead Arrays
Zaitouna, A. J., et al. Bio Protoc. 2020. doi: 10.21769/BioProtoc.3862
“This study evaluates anti-HLA-I monoclonal antibody specificities using solid phase bead arrays. The W6/32 antibody, a pan anti-HLA class I antibody, was used to normalize HLA-I protein levels on Labscreen and FlowPRA Single Antigen Beads. Biotinylated W6/32 was tested at various dilutions (undiluted to 1:100) alongside anti-Bw4 and anti-Bw6 antibodies. Representative data showed W6/32 binding to HLA-I beads, with isotype control IgG2a used for comparison.”

4. Strategies for the measurements of expression levels and half-lives of HLA class I allotypes
Raghavan, M., et al. Hum Immunol. 2019. doi: 10.1016/j.humimm.2019.01.011
“This study describes methods for measuring HLA class I expression and half-lives using the W6/32 antibody (anti-human HLA-ABC). Flow cytometry histograms showed W6/32 signals for monocytes, NK cells, B cells, CD8+ T cells, and CD4+ T cells, with geometric mean values quantifying HLA class I expression. The W6/32 antibody was chosen for its broad recognition of most HLA class I allotypes, facilitating consistent assessment across healthy donors.”

5. Higher human lymphocyte antigen class I expression in early-stage cancer cells leads to high sensitivity for cytotoxic T lymphocytes
Akazawa, Y., et al. Cancer Sci. 2019. doi: 10.1111/cas.14022
“This study examines HLA class I expression in early-stage hepatocellular carcinoma (HCC) using the W6/32 antibody (anti-human HLA-ABC). Flow cytometry analysis of tissue from five HCC patients compared HLA class I expression between cancer cells and non-tumorous hepatocytes. The mean fluorescence intensity ratio of W6/32 staining indicated higher HLA class I expression in cancer cells, enhancing sensitivity to cytotoxic T lymphocytes. Heterogeneous expression was observed in non-tumorous hepatocytes in one case.”