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Target Symbol
- IL6 (128)
- IL1RL1 (105)
- CD4 (86)
- PECAM1 (82)
- PDCD1 (73)
- PTPRC (65)
- CD99 (59)
- LGALS3 (57)
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- CD19 (50)
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- ANAPC5 (8)
- CD7 (8)
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- WNT3A (8)
- AGTPBP1 (7)
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- HLA-A (7)
- IL18 (7)
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- TLR6 (7)
- WNT10A (7)
- WNT16 (7)
- ANAPC10 (6)
- FCGR3A (6)
- FZD10 (6)
- LRP5 (6)
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- WNT2 (6)
- WNT5A (6)
Reactivities
- Human (2576)
- Mouse (910)
- Rat (695)
- Monkey (84)
- Dog (70)
- Bovine (27)
- Rabbit (17)
- Chicken (13)
- Hamster (12)
- Canine (11)
- Gorilla (10)
- Bat (9)
- Horse (9)
- Gibbon (8)
- Pig (8)
- Canis (5)
- Chimpanzee (5)
- Porcine (5)
- Primate (5)
- Cow (3)
- Xenopus (3)
- Guinea Pig (2)
- C. elegans (1)
- Equine (1)
- Frog (1)
- Macaque (1)
- Opossum (1)
- Orang-Utan (1)
- Rhesus Monkey (1)
- Sheep (1)
- Squirrel (1)
- Tobacco hornworm (1)
Applications
Antibody Hosts
Isotypes
Clonalities
Carrier-free
Knockout (KO) Validation
Modifications
- Unmodified (86)
- Phospho-specific (30)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG1 format, for improved compatibility with existing reagents, assays and techniques. (14)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG2a format, for improved compatibility with existing reagents, assays and techniques. (11)
- This chimeric rabbit antibody was made using the variable domain sequences of the original murine IgG1 format, for improved compatibility with existing reagents, assays and techniques. (8)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (7)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. (6)
- This chimeric mouse antibody was made using the variable domain sequences of the original Human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (5)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This is a chimeric antibody created for improved compatibility with existing reagents, assays and techniques. (3)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Rat IgG2b format, for improved compatibility with existing reagents, assays and techniques. (3)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric mouse antibody was made using the variable domain sequences of the original Human IgG4 (primatized) format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric mouse antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 (primatized) format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This chimeric rabbit antibody was made using the variable domain sequences of the original human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. This reformatted human antibody was made using the variable domain sequences of the original Human IgG4 (primatized) format, for improved compatibility with existing reagents, assays and techniques. (1)
- Phospho S1490 (1)
- Phospho T183/Y185 (1)
- Phospho T183/Y185,Phospho T221/Y223 (1)
- Phospho T235 (1)
- Phospho Y719 (1)
- This chimeric human antibody was made using the variable domain sequences of the original IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric mouse antibody was made using the variable domain sequences of the original Hamster IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric mouse antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Hamster IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Human IgG4 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Mouse IgG2b format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original Rat IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original human IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original murine IgG2b format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original rat IgG1 format, for improved compatibility with existing reagents, assays and techniques. (1)
- This chimeric rabbit antibody was made using the variable domain sequences of the original rat IgG2b format, for improved compatibility with existing reagents, assays and techniques. (1)
- This is a chimeric antibody created for improved compatibility with existing reagents, assays and techniques. (1)
- This is a reformatted human IgG1 antibody based on the therapeutic Fab fragment. NOT FOR THERAPEUTIC USE - This is a research-grade biosimilar. (1)
Assay Types
Families
- Druggable Genome (1876)
- Transmembrane (1406)
- ES Cell Differentiation/IPS (598)
- Secreted Protein (566)
- Adult stem cells (221)
- Protein Kinase (207)
- Transcription Factors (124)
- Embryonic stem cells (99)
- Stem cell - Pluripotency (87)
- Induced pluripotent stem cells (79)
- Nuclear Hormone Receptor (67)
- Phosphatase (62)
- Protease (61)
- Cancer stem cells (55)
- GPCR (37)
- Stem cell relevant signaling - Wnt Signaling pathway (29)
- Stem cell relevant signaling - JAK/STAT signaling pathway (1)
Pathways
- Hematopoietic cell lineage (721)
- Cell adhesion molecules (CAMs) (525)
- Pathways in cancer (418)
- Cytokine-cytokine receptor interaction (324)
- Toll-like receptor signaling pathway (287)
- T cell receptor signaling pathway (279)
- Wnt signaling pathway (268)
- Melanogenesis (228)
- NOD-like receptor signaling pathway (213)
- Primary immunodeficiency (206)
- Jak-STAT signaling pathway (193)
- Basal cell carcinoma (178)
- Prion diseases (173)
- Graft-versus-host disease (167)
- Leukocyte transendothelial migration (155)
- Colorectal cancer (150)
- Hypertrophic cardiomyopathy (HCM) (148)
- Cytosolic DNA-sensing pathway (136)
- MAPK signaling pathway (127)
- B cell receptor signaling pathway (121)
- Progesterone-mediated oocyte maturation (115)
- Antigen processing and presentation (111)
- Focal adhesion (97)
- Hedgehog signaling pathway (91)
- RIG-I-like receptor signaling pathway (87)
- Fc epsilon RI signaling pathway (81)
- Fc gamma R-mediated phagocytosis (79)
- Adipocytokine signaling pathway (78)
- Type II diabetes mellitus (77)
- Endocytosis (72)
- Neurotrophin signaling pathway (69)
- ErbB signaling pathway (68)
- Regulation of actin cytoskeleton (68)
- Acute myeloid leukemia (67)
- Epithelial cell signaling in Helicobacter pylori infection (66)
- Insulin signaling pathway (64)
- GnRH signaling pathway (63)
- Pancreatic cancer (63)
- Type I diabetes mellitus (55)
- Oocyte meiosis (53)
- Alzheimer's disease (52)
- Apoptosis (52)
- Cell cycle (52)
- Ubiquitin mediated proteolysis (52)
- Pathogenic Escherichia coli infection (51)
- Lysosome (50)
- Allograft rejection (44)
- Renin-angiotensin system (43)
- Systemic lupus erythematosus (39)
- TGF-beta signaling pathway (34)
- Natural killer cell mediated cytotoxicity (32)
- Complement and coagulation cascades (30)
- Dilated cardiomyopathy (30)
- Notch signaling pathway (28)
- Amyotrophic lateral sclerosis (ALS) (27)
- Chemokine signaling pathway (27)
- Arrhythmogenic right ventricular cardiomyopathy (ARVC) (26)
- Asthma (26)
- Autoimmune thyroid disease (22)
- Axon guidance (22)
- Vascular smooth muscle contraction (22)
- Endometrial cancer (18)
- Adherens junction (16)
- Prostate cancer (16)
- Viral myocarditis (16)
- Metabolic pathways (15)
- Glutathione metabolism (14)
- Thyroid cancer (14)
- ECM-receptor interaction (13)
- Renal cell carcinoma (7)
- VEGF signaling pathway (7)
- Bladder cancer (6)
- Chronic myeloid leukemia (5)
- Glioma (5)
- Small cell lung cancer (5)
- Long-term depression (4)
- Long-term potentiation (4)
- Melanoma (4)
- Non-small cell lung cancer (4)
- mTOR signaling pathway (4)
- PPAR signaling pathway (3)
- Tight junction (3)
- Gap junction (2)
- Purine metabolism (2)
- Pyrimidine metabolism (2)
- Arginine and proline metabolism (1)
- Huntington's disease (1)
- Inositol phosphate metabolism (1)
- Parkinson's disease (1)
- Phosphatidylinositol signaling system (1)
- Vibrio cholerae infection (1)