破骨细胞关联受体(OSCAR)卵白蛋白偶联物
OVA Conjugated Osteoclast Associated Receptor (OSCAR)
PIGR3; Osteoclast Associated,Immunoglobulin-Like Receptor; Polymeric immunoglobulin receptor 3; Poly-Ig receptor 3
- 编号CPC695Hu21
- 物种Homo sapiens (Human,人) 相同的名称,不同的物种。
- 来源蛋白偶联
- 原分子量-
- 缓冲液成份PBS, pH7.4.
- 性状冻干粉
- 纯度> 90%
- 等电点-
-
应用
Immunogen; SDS-PAGE; WB.
如果需要有生物活性的蛋白,请参见活性蛋白。 - 下载 英文说明书 中文说明书
- 规格 10µg50µg 200µg 1mg 5mg
- 价格 ¥ 840 ¥ 2100 ¥ 4200 ¥ 12600 ¥ 31500
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化学式
用法
PBS或其它。
储存
避免反复冻融。2-8°C不超过一个月,-80°C不超过12个月。
稳定性
热稳定性以损失率显示。损失率是由加速降解试验决定,具体方法如下:在37°C孵育48小时,没有显著的降解或者沉淀产生。保质期内,在适当的条件下存储,损失率低于5%。
相关产品
编号 | 适用物种:Homo sapiens (Human,人) | 应用(仅供研究使用,不用于临床诊断!) |
RPC695Hu01 | 破骨细胞关联受体(OSCAR)重组蛋白 | Positive Control; Immunogen; SDS-PAGE; WB. |
CPC695Hu21 | 破骨细胞关联受体(OSCAR)卵白蛋白偶联物 | Immunogen; SDS-PAGE; WB. |
PAC695Hu01 | 破骨细胞关联受体(OSCAR)多克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu21 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu28 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu23 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu24 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu25 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu26 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB; IHC; ICC; IP. |
MAC695Hu22 | 破骨细胞关联受体(OSCAR)单克隆抗体 | WB |
SEC695Hu | 破骨细胞关联受体(OSCAR)检测试剂盒(酶联免疫吸附试验法) | Enzyme-linked immunosorbent assay for Antigen Detection. |
LMC695Hu | 破骨细胞关联受体(OSCAR)等多因子检测试剂盒(流式荧光发光法) | FLIA Kit for Antigen Detection. |
参考文献
杂志 | 参考文献 |
Journal of Molecular and Cellular Cardiology | Quantitative proteomics reveals novel functions of osteoclast-associated receptor in STAT signaling and cell adhesion in human endothelial cells [PubMed: 22985931] |
Arthritis Research & Therapy | The immunoreceptor tyrosine-based activation motif (ITAM) -related factors are increased in synovial tissue and vasculature of rheumatoid arthritic joints [PubMed: 23146195] |
Inflammation | Osteoclast-Associated Receptor (OSCAR) Distribution in the Synovial Tissues of Patients with Active RA and TNF-α and RANKL Regulation of Expression by Osteoclasts In Vitro [article:10.1007] |
INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES | Development of a novel polysaccharide-based iron oxide nanoparticle to prevent iron accumulation-related osteoporosis by scavenging reactive oxygen … [Pubmed: 33049237] |
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