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  • https://bio.libretexts.org/Courses/Folsom_Lake_College/BIOL_440%3A_General_Microbiology_(Panoutsopoulos)/06%3A_The_Immune_System_Nonspecific_and_Specific_Defenses/6.01%3A_The_Lymphatic_and_Immune_System/6.1.03%3A_Barrier_Defenses_and_the_Innate_Immune_Response
    The immune system can be divided into two overlapping mechanisms to destroy pathogens: the innate immune response, which is relatively rapid but nonspecific and thus not always effective, and the adap...The immune system can be divided into two overlapping mechanisms to destroy pathogens: the innate immune response, which is relatively rapid but nonspecific and thus not always effective, and the adaptive immune response, which is slower in its development during an initial infection with a pathogen, but is highly specific and effective at attacking a wide variety of pathogens.
  • https://bio.libretexts.org/Bookshelves/Microbiology/Microbiology_(Boundless)/11%3A_Immunology/11.04%3A_Innate_Defenders/11.4B%3A_Interferons
    Interferons (IFNs) are proteins made and released by host cells in response to the presence of pathogens.
  • https://bio.libretexts.org/Courses/Prince_Georges_Community_College/PGCC_Microbiology/06%3A_Immunology/6.02%3A_Non-Adaptive_Immunity/6.2.03%3A_Interferons
    Interferons (IFNs) are proteins made and released by host cells in response to the presence of pathogens.
  • https://bio.libretexts.org/Courses/Clinton_College/BIO_403%3A_Microbiology_(Neely)/06%3A_The_Immune_System_Nonspecific_and_Specific_Defenses/6.01%3A_The_Lymphatic_and_Immune_System/6.1.03%3A_Barrier_Defenses_and_the_Innate_Immune_Response
    The immune system can be divided into two overlapping mechanisms to destroy pathogens: the innate immune response, which is relatively rapid but nonspecific and thus not always effective, and the adap...The immune system can be divided into two overlapping mechanisms to destroy pathogens: the innate immune response, which is relatively rapid but nonspecific and thus not always effective, and the adaptive immune response, which is slower in its development during an initial infection with a pathogen, but is highly specific and effective at attacking a wide variety of pathogens.

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