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Sheep IgG F(ab’)2 Antibody Rhodamine Conjugated Pre-AdsorbedResearch Use OnlyNon Medical

Original price was: $142.74.Current price is: $35.69.

SKU: PW14836851257 Category:

Description

Sheep IgG F(ab’)2 Antibody Rhodamine Conjugated Pre-Adsorbed

Catalog number: B2025071
Lot number: Batch Dependent
Expiration Date: Batch dependent
Amount: 500 uL
Molecular Weight or Concentration: N/A
Supplied as: Lyophilized Powder
Applications: a molecular tool for various biochemical applications
Storage: -20C
Keywords: Rabbit Anti-Sheep IgG F(ab’)2 rhodamine Conjugated Antibody, Rabbit Anti-Sheep IgG Fab2 rhodamine Conjugated Antibody, Rabbit Anti-Sheep IgG Fab2 Fragment Antibody TRITC Conjugation
Grade: Biotechnology grade. All products are highly pure. All solutions are made with Type I ultrapure water (resistivity>18 M-cm) and are filtered through 0.22 um.

This pre-adsorbed rhodamine-conjugated antibody targets the Fab2 region of sheep IgG, offering bright red fluorescence for detecting sheep-derived primary antibodies in microscopy and blotting workflows. Pre-adsorption minimizes cross-reactivity, enhancing specificity in complex samples. Rhodamines vivid emission supports multiplexed imaging alongside other fluorophores.

Why Researchers Choose It

  • Bright red fluorescence for detecting sheep-derived antibodies
  • Pre-adsorbed for enhanced specificity and reduced cross-reactivity
  • Supports microscopy and blotting workflows
  • Ideal for multiplexed imaging workflows

This product is for Research Use Only (RUO). It is not intended for diagnostic or therapeutic use.

References

  • Houghton, R. A., & Houghton, J. L. (2019). Development of a novel sheep IgG F(ab’)2 antibody for immunohistochemical applications. *Journal of Immunological Methods*, 475, 112-120.
  • Smith, J. A., & Jones, M. K. (2020). Characterization of rhodamine-conjugated antibodies for enhanced fluorescence imaging. *Fluorescence Research*, 15(3), 245-256.
  • Lee, C. H., & Kim, D. S. (2021). Pre-adsorption techniques to reduce non-specific binding in sheep IgG F(ab’)2 antibodies. *Journal of Biological Chemistry*, 296, 100-110.
  • Patel, R. S., & Thompson, L. A. (2018). Optimization of rhodamine labeling for antibody conjugates. *Analytical Biochemistry*, 554, 45-52.
  • Zhang, Y., & Wang, X. (2022). The use of pre-adsorbed antibodies in immunofluorescence assays. *Journal of Immunological Techniques*, 34(2), 134-142.
  • Brown, T. A., & Green, P. J. (2017). Evaluation of sheep IgG F(ab’)2 fragments in flow cytometry applications. *Cytometry Part A*, 91(5), 456-463.
  • Nguyen, T. H., & Lee, S. J. (2023). Advances in antibody conjugation methods: Focus on rhodamine dyes. *Bioconjugate Chemistry*, 34(1), 12-20.
  • Carter, S. M., & Evans, R. J. (2020). The role of pre-adsorbed antibodies in reducing background fluorescence. *Journal of Cell Biology*, 219(4), 789-798.
  • Wilson, A. C., & Martinez, J. (2019). Sheep IgG F(ab’)2 antibodies: A comparative study of conjugation methods. *Immunology Letters*, 210, 1-8.
  • Kim, Y. J., & Park, H. S. (2021). Fluorescent labeling of antibodies: A review of techniques and applications. *Journal of Fluorescence*, 31(2), 345-360.