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FcRn 产品

(IgG receptor FcRn (FcRn))

FcRn enhances IgG immune response: The neonatal Fc receptor (FcRn) enhances the distinct roles that IgGs play in the adaptive immune response, e.g. when protecting the body from infection. Specifically interaction between IgGs and FcRn lead to high IgG circulating levels, long IgG half-life, and the ability of IgGs to transfer from mother to offspring.

FcRn protects IgG from degradation and facilitates transport: FcRn binds to the Fc portion of IgGs in a pH-dependent manner, protecting IgGs from intracellular degradation. It facilitates the transport of IgGs across polarized cells, like endothelium and epithelium, and potentiates cellular immune responses when IgGs form immune complexes with antigens.

FcRn blockade to reduce IgG autoantibodies: IgG autoantibodies are associated with numerous pathological conditions. Consequently, FcRn blockade has emerged as a novel strategy to reduce circulating levels of pathogenic IgG autoantibodies and manage IgG-mediated diseases.

FcRn plays a significant role in the metabolism of albumin: Albumin is the most abundant protein in the blood plasma and serves multiple functions, including maintaining osmotic pressure, binding and transporting various molecules, and serving as a reservoir of amino acids. FcRn binding is crucial for protecting albumin from lysosomal degradation. Furthermore FcRn regulates the serum half-life of albumin. By recycling albumin back into the bloodstream and preventing its catabolism, FcRn helps maintain stable serum albumin levels.

FcRn is expressed across various cell types: FcRn is expressed in various haematopoietic cell types, particularly in myeloid cells like monocytes, macrophages, dendritic cells, and neutrophils. Its expression is also noted in B cells, but not in T cells or NK cells. FcRn is mostly found intracellularly in acidic endosomes, facilitating interactions with IgG and albumin, and is also present on the cell surface in some cells.

FcRn expression is influenced by factors like cytokines and infectious stimuli: For instance, TNF stimulation increases FcRn expression in certain cell lines, dependent on NF-κB binding. Toll-like receptor agonists and transforming growth factor β1 also upregulate FcRn expression through various pathways. Conversely, interferon-γ can downregulate FcRn expression through JAK-STAT1 signalling.

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Featured FcRn Categories

FcRn 抗体

High quality antibodies with extensive validation data.

FcRn ELISA试剂盒

Reliable ELISA kits for a wide range of species.

FcRn 蛋白

Proteins for various applications incl. WB, ELISA, IF etc.

Recommended FcRn 抗体

Product
Reactivity
Application
Validations
Cat. No.
Quantity
Datasheet
Reactivity Human
Application ELISA, IF, FACS, cELISA, Func
Validations
  • (15)
  • (8)
Cat. No. ABIN1774762
Quantity 100 μg
Datasheet Datasheet
Reactivity Human
Application ELISA, IF, FACS, cELISA
Validations
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Cat. No. ABIN7539618
Quantity 100 μg
Datasheet Datasheet
Reactivity Human
Application ELISA, IF, FACS, cELISA
Validations
  • (6)
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Cat. No. ABIN1774763
Quantity 100 μg
Datasheet Datasheet

Recommended FcRn ELISA试剂盒

Product
Reactivity
Analytical Method
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Cat. No.
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Datasheet
Reactivity Human
Analytical Method Quantitative Sandwich ELISA
Validations
  • (1)
Cat. No. ABIN6966700
Quantity 96 tests
Datasheet Datasheet
Reactivity Human
Analytical Method Quantitative Sandwich ELISA
Validations
  • (1)
Cat. No. ABIN6955742
Quantity 96 tests
Datasheet Datasheet
Reactivity Mouse
Analytical Method Quantitative Sandwich ELISA
Validations
  • (1)
Cat. No. ABIN5510641
Quantity 96 tests
Datasheet Datasheet

Recommended FcRn 蛋白

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Reactivity
Source
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Reactivity Cynomolgus, Rhesus Monkey
Source HEK-293 Cells
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Cat. No. ABIN7274675
Quantity 100 μg
Datasheet Datasheet
Reactivity Human
Source HEK-293 Cells
Validations
  • (6)
Cat. No. ABIN7274676
Quantity 100 μg
Datasheet Datasheet
Reactivity Mouse
Source HEK-293 Cells
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Cat. No. ABIN7274677
Quantity 100 μg
Datasheet Datasheet

Latest Publications for our FcRn Products

Spencer, Goldberg, Pandey, Ordonez, Dufloo, Barnette, Sutton, Henderson, Agnor, Gao, Bruel, Schwartz, Haigwood, Ackerman, Hessell: "Phagocytosis by an HIV antibody is associated with reduced viremia irrespective of enhanced complement lysis." in: Nature communications, Vol. 13, Issue 1, pp. 662, (2022) (PubMed).

Xu, He, Momben-Abolfath, Vertrees, Li, Norton, Struble: "Zika Virus Infection and Antibody Neutralization in FcRn Expressing Placenta and Engineered Cell Lines." in: Vaccines, Vol. 10, Issue 12, (2022) (PubMed).

Gjølberg, Frick, Mester, Foss, Grevys, Høydahl, Jørstad, Schlothauer, Sandlie, Moe, Andersen: "Biophysical differences in IgG1 Fc-based therapeutics relate to their cellular handling, interaction with FcRn and plasma half-life." in: Communications biology, Vol. 5, Issue 1, pp. 832, (2022) (PubMed).

Kisalu, Pereira, Ernste, Flores-Garcia, Idris, Asokan, Dillon, MacDonald, Shi, Chen, Pegu, Schön, Zavala, Balazs, Francica, Seder: "Enhancing durability of CIS43 monoclonal antibody by Fc mutation or AAV delivery for malaria prevention." in: JCI insight, Vol. 6, Issue 3, (2021) (PubMed).

Cines, Zaitsev, Rauova, Rux, Stepanova, Krishnaswamy, Sarkar, Kowalska, Zhao, Mast, Blumberg, McCrae, Poncz, Hubbard, Pyzik, Blumberg: "FcRn augments induction of tissue factor activity by IgG-containing immune complexes." in: Blood, Vol. 135, Issue 23, pp. 2085-2093, (2021) (PubMed).

Hubbard, Pyzik, Rath, Kozicky, Sand, Gandhi, Grevys, Foss, Menzies, Glickman, Fiebiger, Roopenian, Sandlie, Andersen, Sly, Baker, Blumberg: "FcRn is a CD32a coreceptor that determines susceptibility to IgG immune complex-driven autoimmunity." in: The Journal of experimental medicine, Vol. 217, Issue 10, (2021) (PubMed).

Bern, Nilsen, Ferrarese, Sand, Gjølberg, Lode, Davidson, Camire, Bækkevold, Foss, Grevys, Dalhus, Wilson, Høydahl, Christianson, Roopenian, Schlothauer, Michaelsen, Moe, Lombardi, Pinotti, Sandlie et al.: "An engineered human albumin enhances half-life and transmucosal delivery when fused to protein-based biologics. ..." in: Science translational medicine, Vol. 12, Issue 565, (2021) (PubMed).

Casulleras, Flores-Costa, Duran-Güell, Alcaraz-Quiles, Sanz, Titos, López-Vicario, Fernández, Horrillo, Costa, de la Grange, Moreau, Arroyo, Clària: "Albumin internalizes and inhibits endosomal TLR signaling in leukocytes from patients with decompensated cirrhosis." in: Science translational medicine, Vol. 12, Issue 566, (2021) (PubMed).

Catlin, Mitchell, Potchoiba, OHara, Wang, Zhang, Weinbauer, Bowman: "Placental transfer of 125 iodinated humanized immunoglobulin G2Δa in the cynomolgus monkey." in: Birth defects research, Vol. 112, Issue 1, pp. 105-117, (2020) (PubMed).

Asokan, Dias, Liu, Maximova, Ernste, Pegu, McKee, Shi, Chen, Almasri, Promsote, Ambrozak, Gama, Hu, Douek, Todd, Lifson, Fourati, Sekaly, Crowley, Ackerman, Ko, Kilam, Boritz, Liao, Best, Perelson et al.: "Fc-mediated effector function contributes to the in vivo antiviral effect of an HIV neutralizing antibody. ..." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 117, Issue 31, pp. 18754-18763, (2020) (PubMed).

Synonyms and alternative names related to FcRn

Fc fragment of IgG receptor and transporter (FCGRT), Fc fragment of IgG receptor and transporter (Fcgrt), Fc receptor, IgG, alpha chain transporter (Fcgrt), alpha-chain, FCRN, FcRn

Protein level used designations for FcRn

  • FcRn alpha chain
  • IgG Fc fragment receptor transporter alpha chain
  • IgG receptor FcRn large subunit p51
  • immunoglobulin receptor, intestinal, heavy chain
  • major histocompatibility complex class I-like Fc receptor
  • neonatal Fc receptor
  • neonatal Fc-receptor for Ig
  • IgG transcytosis and recycling receptor
  • MHC class I-related Fc gamma receptor
  • igG receptor FcRn large subunit p51
  • neonatal Fc receptor FcRn
  • Fc receptor
  • Fc fragment immunoglobulin G receptor
  • Fc receptor, IgG, alpha chain transporter
  • igG Fc fragment receptor transporter alpha chain
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