Flow cytometry isotype controls
Isotype controls are crucial in flow cytometry to ensure the accuracy and reliability of antibody-based assays. These controls consist of antibodies that match the isotype, subclass, and species of the primary antibodies used in an experiment, but lack specificity for the antigen being studied. By using isotype controls, researchers can assess the level of nonspecific binding or background fluorescence in flow cytometry experiments. This is especially important in complex multicolor flow cytometry, where multiple antibodies are used simultaneously to identify distinct cell populations or markers.
The isotype controls allow the:
- Validation of antibody binding specificity: Isotype controls help confirm the specificity of antibody binding in flow cytometry.
- Differentiation of specific and nonspecific signals: They assist in distinguishing between fluorescence signals due to the target antigen and nonspecific background signals.
- Improvement of data interpretation: By eliminating nonspecific signals, isotype controls enhance the overall quality and reliability of data analysis.
- Optimization of experimental conditions: They provide a benchmark for background fluorescence, allowing for adjustments in antibody concentrations, incubation times, and washing protocols.
- Minimization of errors: Isotype controls help reduce experimental errors by ensuring observed fluorescence truly reflects antigen expression levels.
- Accurate representation of antigen presence: They ensure that fluorescence data is a true reflection of the antigen's presence and expression on cells.
Isotype controls are vital in many research fields such as immunology, cancer research, and immunophenotyping. Their use contributes to more accurate conclusions and reproducible results in flow cytometry experiments.
Search result : 5123 product found
Refine your search :
- Unconjugated 2656
- PE 427
- FITC 255
- APC 186
- PerCp 145
- Biotin 100
- PE/Cy5 61
- PE/Cy7 57
- Alexa Fluor 488 56
- azide free 56
- low endotoxin 56
- APC/Cy5.5 55
- Alexa Fluor 647 54
- PerCP/Cy5.5 47
- APC/Cy7 46
- PE/Cy5.5 41
- Low Endotoxin/Azide Free 28
- Cy5 16
- DyLight® 488 16
- DyLight® 650 16
- PE-Cy7 14
- DyLight® 594 13
- DyLight 755 12
- DyLight® 550 12
- PE-Cy5 12
- APC-CY5.5 11
- APC-Cy7 11
- HRP 8
- RPE 7
- DyLight® 680 6
- Cy3 5
- Cy5.5 5
- Cy7 5
- PE-Cy5.5 4
- PerCP-Cy5.5 4
- RBITC 4
- Red 4
- Rhodamine 4
- Texas Red® 4
- R-PE 2
- Alexa Fluor 350 1
- Alexa Fluor 555 1
- Alexa Fluor 750 1
- Pacific Blue 1
- mouse 224
- human 127
- rat 83
- rabbit 6
- monkey 4
- plant 4
- hamster 3
- chicken 2
- cow 1
- goat 1
- mouse 2327
- rat 1762
- hamster 524
- human 104
- rabbit 80
- goat 32
- monkey 4
- llama 3
- sheep 1
- Control isotype 5123
- FC
- IF 327
- WB 237
- IHC 215
- IP 157
- FLISA 128
- ICC 57
- FA 35
- in-vivo 35
- Microscopy 29
- ChIP 26
- Staining 11
- Assay 4
- Dot blot 3
- Radioimmunoassay 1
- Monoclonal 392
- MPC-11 298
- MOPC-21 293
- C1.18.4 254
- LTF-2 248
- 2A3 247
- PIP 247
- HRPN 242
- MM-30 217
- RTK2118 185
- B39-4 168
- A112-3 162
- Polyclonal 155
- SHG-1 85
- MOPC-173 44
- HyHEL-10 39
- HKSP 19
- RTK2758 18
- MOPC-21 (recomb) 17
- IB7.11 15
- MOPC-31C 14
- G013C12 13
- PFR-03 13
- PPV-07 13
- RTG2A1-1 13
- 11E10 12
- 299Arm 12
- 13R4 11
- 231 11
- B-Z2 11
- RPC5.4 11
- 2B5.3 10
- RTK4530 10
- RTG2B1-2 9
- MOPC 11 8
- MOPC31C 8
- SPE-7 8
- B-Z1 7
- GL113 7
- MG1 7
- PPV-04 7
- 1-2 6
- 2E12 6
- 3D12 6
- 6H3 6
- C44 6
- M2B 6
- MG3 6
- 1-1 5
- 1H5 5
- 2H3 5
- 3G8 5
- F8-11-13 5
- M2A 5
- MOPC21.1 5
- MOPC21.2 5
- MOPC21.3 5
- MOPC21.4 5
- 2024-01-01 4
- 2024-01-02 4
- 7C2C6C2 4
- PLRV219 4
- PPV-06 4
- 27-35# 3
- 3H2379 (YTH71.3) 3
- 6A3 3
- ES26-13D3.4 3
- ES26-14D1.11 3
- ES26-5E12.4 3
- F10-89-4 3
- GC198 3
- ICG1/1331 3
- KLH-G9 3
- MG3-35 3
- Mouse 3
- OX-34 3
- S107 3
- SAA0186 3
- 10987# 2
- 2Q1803 (GC270) 2
- 6E12 2
- B-Z40 2
- B1-8 2
- B10 2
- B11/7 2
- Ci4 2
- DD13 2
- DD7 2
- ES26-15B7.3 2
- GC270 2
- GC323 2
- HOPC-1 2
- IS5-20C4 2
- IS5-21F5 2
- IS6-11E5.11 2
- J606 2
- KLH 2
- KLH/G2b-1-2 2
- M12637 2
- M3A 2