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- 详细信息
- 文献和实验
- 技术资料
- 靶点:
来电咨询
- 浓度:
1mg/1ml
- 应用范围:
科研使用
- 宿主:
Goat,Rabbit,Mouse
- 适应物种:
人,大鼠,小鼠,兔
- 标记物:
见说明书
- 克隆性:
多克隆
- 保存条件:
-20℃保存
- 形态:
液态/粉状
抗体的相关标记:HRP,Biotin,Gold,RBITC,AP,FITC,Cy3,Cy5,Cy5.5,Cy7,PE,PE-Cy3,PE-Cy5,PE-Cy5.5,PE-Cy7,APC,Alexa Fluor 350,Alexa Fluor 488,Alexa Fluor 555,Alexa Fluor 647
ChromPure Bovine IgG, whole molecule, Cy2的交叉反应:人,小鼠,大鼠,鸡 ,狗,猪,羊,牛,兔等......
二抗
产品目录号。
批号和参考数据。
稀释度。
稀释液。
孵育的时长。
孵育的温度。
ChromPure Bovine IgG, whole molecule, Cy2已经确定的最佳条件,节省您宝贵的时间,样品和试剂。包括:
最优的稀释和缓冲液
已指定的阳性和阴性对照细胞提取物
已经优化的详细的操作步骤
ChromPure Bovine IgG, whole molecule, Cy2在一些如胸腺、脾脏、血液的组织以及造血细胞、淋巴细胞、B细胞等细胞内,通常含有较多的Fc受体,这时候选择二抗时最好选择Anti-IgG, F(ab’)2 fragment这样的特异性二抗,这样就消除了由于Fc部分与IgG的非特异性结合。常规的Anti-IgG (H+L)二抗与IgG的重链和轻链都有结合反应,即与IgG的Fc的F(ab’)2片段都能结合;由于IgG、IgM、IgA都有保守的轻链结构域,因此Anti-IgG (H+L)与它们都有交叉反应。而Anti-IgG, F(ab’)2 fragment经过了IgG Fc片段的吸附,因此只与IgG的F(ab’)2片段结合,然而IgG、IgM、IgA都有保守的轻链结构域,因此与它们也有交叉反应。
ChromPure Bovine IgG, whole molecule, Cy2:xy-1132xy Somatostatin/GRIH生长抑素抗原
xy-0523xy Sox2胚胎干细胞关键蛋白
xy-0975xy TSFP1/SP1(transcription factor Sp1)SP1转录生长因子抗原
xy-1133xy SPARC (secreted protein acidic and rich in cysteine)富含半胱氨酸的酸性分泌蛋白抗原
xy-1401xy SRF(Serum response factor)血清应答因子抗原
xy-1402xy SREBP-1(Sterol Regulatory Element Binding Protein-1)固醇调节元件结合蛋白1抗原
xy-1381xy AKAP12A/SSeCKS peptide丝氨酸抑制蛋白激酶C底物抗原
xy-1702xy Fut4/CD15/SSEA-1(Stage-specific embryonic surface antigen 1)阶段特异性胚胎表面抗原-1抗原
xy-1137xy SSTR1 (somatostatin receptor 1)生长抑素受体1(SSTR1)抗原
xy-1138xy SSTR2 (somatostatin receptor 2)生长抑素受体2抗原
xy-1368xy SSTR3 peptide生长抑素受体3抗原
xy-1139xy SSTR5 (somatostatin receptor 5)生长抑素受体5抗原
xy-1317xy STAT1(signal transducers and activators of transcription 1)信号转导与转录激活因子1抗原
xy-1657xy phospho-STAT1(p-Tyr701) peptide磷酸化信号转导与转录激活因子1抗原
xy-1141xy STAT3(signal transducers and activators of transduction3)信号转导和转录激活因子3抗原
xy-1142xy STAT5(signal transducers and activators of transduction5)信号转导和转录激活因子5(STAT5)抗原
xy-1143xy STAT6(signal transducers and activators of transduction 6)信号转导和转录激活因子6抗原
xy-0629xy SULT1E1(Estrogen Sulfotranferase)雌激素硫酸转移酶抗原
xy-1499xy SUMO类泛素蛋白
xy-0885xy phospho-Tau protein (pThr489) peptide磷酸化微管相关蛋白多肽
xy-1369xy MAP-2(microtubule associated protein 2)微管相关蛋白2抗原
xy-1847xy MAP1A/Mtap1a(microtubule associated protein 1A)微管相关蛋白1A抗原
xy-1104xy TBX2/T-box2(T-box Protein 2)新型抑癌基因(多肽)
xy-1280xy TCF7L2(transcription factor 7-like 2)转录因子7类似物2抗原
xy-0822xy TDP-43/TARDBP (tar DNA binding protein)Tar DNA 结合蛋白43抗原
xy-1039xy Tenascin固生蛋白抗原
xy-2101xy TEM 1/CD248(Tumor endothelial marker 1 precursor)内涎蛋白/内皮唾液酸蛋白抗原
xy-0535xy TFF3 (trefoil factor3)三叶肽因子3(多肽)
xy-1144xy TFPI-2 (tissue factor pathway inhibitor-2)组织因子途径抑制剂-2抗原
xy-1838xy TIEG1/KLF10(TGF-beta inducible early response gene 1)TGF-β诱导早期应答基因1抗原
xy-0638xy TGF- BetaR1/ALK (TGF-beta receptor type I)转移生长因子–β受体1抗原
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文献和实验must be incorporates into the test to identify these potential problems in ELISA. The enzyme catalyzes a change in a substrate molecule, but the enzyme itself is not consumed in the process. The enzyme molecule continues to act on more substrate molecules and produce
: first is the enhanced local field, which is responsible for a higher excitation rate; and a second enhancement effect is due to an interaction of an excited molecule dipole with the nanoparticles, known as radiative decay engineering (RDE), which is responsible
. A surface blocker that performs well in one may not be suitable for another assay due to differences in the assay format, capture molecule, surface properties or the composition and physical properties of the specimens, as discussed
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