TLR8 Antibody (4C6) - Azide and BSA Free
Novus Biologicals | Catalog # H00051311-M01
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Scientific Data Images for TLR8 Antibody (4C6) - Azide and BSA Free
Western Blot: TLR8 Antibody (4C6) [H00051311-M01]
Western Blot: TLR8 Antibody (4C6) [H00051311-M01] - TLR8 monoclonal antibody (M01), clone 4C6 Analysis of TLR8 expression in HL-60.Western Blot: TLR8 Antibody (4C6) [H00051311-M01]
Western Blot: TLR8 Antibody (4C6) [H00051311-M01] - Western Blot detection against Immunogen (37.33 KDa).Western Blot: TLR8 Antibody (4C6) [H00051311-M01]
Western Blot: TLR8 Antibody (4C6) [H00051311-M01] - Analysis of TLR8 expression in transfected 293T cell line by TLR8 monoclonal antibody (M01), clone 4C6.Lane 1: TLR8 transfected lysate(121.764 KDa).Lane 2: Non-transfected lysate.Applications for TLR8 Antibody (4C6) - Azide and BSA Free
Western Blot
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Background: TLR8
TLR8 is highly similar to TLR7 and both pathways are mediated by the adapter protein MyD88 to signal through IFN regulatory factor 7 (IRF7) and nuclear factor (NF)-kappaB (1-3,5). However, TLR7 recognizes guanosine and GU-rich ssRNA, while TLR8 recognizes uridine and AU-rich sequences (2,5). TLR7/TLR8 agonists, including derivatives of the immunostimulatory imiquimod, have been shown to be a promising cancer therapy capable of providing anticancer signals to antigen presenting cells (APCs), with many agonists being tested in both pre-clinical and clinical trials (6). Similarly, studies suggest that agonists for TLR8, in combination with other individual TLR agonists and antagonists, may also be useful for treating inflammatory allergic diseases, such as allergic rhinitis (7).
References
1. Sakaniwa, K., & Shimizu, T. (2020). Targeting the innate immune receptor TLR8 using small-molecule agents. Acta crystallographica. Section D, Structural biology, 76(Pt 7). https://doi.org/10.1107/S2059798320006518
2. Cervantes, J. L., Weinerman, B., Basole, C., & Salazar, J. C. (2012). TLR8: the forgotten relative revindicated. Cellular & molecular immunology. https://doi.org/10.1038/cmi.2012.38
3. Ohto, U., Tanji, H., & Shimizu, T. (2014). Structure and function of toll-like receptor 8. Microbes and infection. https://doi.org/10.1016/j.micinf.2014.01.007
4. Uniprot (Q9NR97)
5. Jannuzzi, G. P., de Almeida, J., Paulo, L., de Almeida, S. R., & Ferreira, K. S. (2020). Intracellular PRRs Activation in Targeting the Immune Response Against Fungal Infections. Frontiers in cellular and infection microbiology. https://doi.org/10.3389/fcimb.2020.591970
6. Frega, G., Wu, Q., Le Naour, J., Vacchelli, E., Galluzzi, L., Kroemer, G., & Kepp, O. (2020). Trial Watch: experimental TLR7/TLR8 agonists for oncological indications. Oncoimmunology. https://doi.org/10.1080/2162402X.2020.1796002
7. Golshiri-Isfahani, A., Amizadeh, M., & Arababadi, M. K. (2018). The roles of toll like receptor 3, 7 and 8 in allergic rhinitis pathogenesis. Allergologia et immunopathologia. https://doi.org/10.1016/j.aller.2017.09.026
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Product Specific Notices for TLR8 Antibody (4C6) - Azide and BSA Free
This product is produced by and distributed for Abnova, a company based in Taiwan.
This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.
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Protocols
Find general support by application which include: protocols, troubleshooting, illustrated assays, videos and webinars.
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