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Interferons

The interferon (IFN) family is a subclass of cytokines that are involved in the immune system communication. As signaling proteins, they activate different immunology pathways such as macrophage or natural killer cells up-regulation. More importantly, interferons have the ability to protect cells from viral infection, via different pathways. These proteins get their name from their “interference” activity against viruses.
ProteoGenix offers interferon proteins as well as proteins belonging to their pathways.

About 20 animal interferons have been identified, including a dozen in humans. They have been separated in 3 subclasses.
Type I Interferons contains proteins able to bind to IFN-α/β receptor (IFNAR). The human type I IFNs are IFN-α, IFN-β, IFN-ε, IFN-κ and IFN-ω. These subtypes are produced mostly in specialized cells such as leukocytes for IFN-α or fibroblast for IFN-β.
Type II Interferons are only represented by IFN-γ in humans. They are released by cytotoxic T cells and helper cells. IFN-γ is involved in the regulation of immune response. It can recruit leucocytes to infection location and stimulate macrophages.
Type III Interferons include the human lambda interferons: IFN-λ1, IFN-λ2 and IFN-λ3.

Interferon cascade induces a reduction of protein production in the cell. This way, infected cells produce less material available for the virus than without interferons. They also increase RNAse L levels. This enzyme cleaves RNA strain thus diminishing once more protein production. Interferons enhance major histocompatibility complex (MHC) activity. These molecules are responsible for presentation of pathogens to T-cells and further immune response. This way, immune response is stimulated furthermore by interferons.
IFN, coupled with Janus Kinase (JAK) are also known to be the activator of Signal Transducer and Activator of Transcription (STAT) transcription factors that have a role in immune system.

Interferons have already been formulated as drugs in several treatments. Interferon treatment has been suggested in case leukemia and lymphomas. More specifically, IFN-α has been studied in the treatment of melanomas, hepatitis B and Hepatitis C. IFN-β1a and IFN-β1b are used in the treatment and control of multiple sclerosis.

25 products
  • Recombinant Human IFNA10 Protein, N-His

    Recombinant Human IFNA10 Protein, N-His

    • ARO-P14546
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human IFNA5 Protein, N-His

    Recombinant Human IFNA5 Protein, N-His

    • ARO-P14548
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human IFNA7 Protein, N-His

    Recombinant Human IFNA7 Protein, N-His

    • ARO-P14547
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human OASL Protein, N-His

    Recombinant Human OASL Protein, N-His

    • ARO-P15176
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Recombinant Human RNASEL Protein, N-His

    Recombinant Human RNASEL Protein, N-His

    • ARO-P15092
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    Human
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Interferon alpha

    Interferon alpha

    • PX-P4357
    Host species:
    Escherichia coli (E.coli)
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • Nucleoprotein(N)

    Nucleoprotein(N)

    • PX-P4553
    Host species:
    Insect
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug
  • S. pombe Smc3 (Nter) Recombinant Protein

    S. pombe Smc3 (Nter) Recombinant Protein

    • PX-P1153
    Host species:
    Escherichia coli (E.coli)
    Origin species:
    S. pombe
    Brand:
    ProteoGenix
    Size:
    100ug, 1MG, 50ug

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