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Establishment of Adequate Functional Cellular Immune Response in Chicks Is Age Dependent
Julia K Schmiedeke1, Donata Hoffmann2, Bernd Hoffmann2
1Institute of Immunology, Friedrich-Loeffler-Institut, Federal Research Institute for Animal Health, 17493 Greifswald-Insel Riems, Germany.
Insights
Chicks younger than 3 weeks cannot mount effective antiviral responses due to immature immune systems. Transferring adult lymphocytes protects young chickens against avian influenza, highlighting the need for immune maturation for effective vaccination.
Area of Science:
- Immunology
- Veterinary Virology
- Poultry Science
Background:
- Understanding immunocompetence development in young chickens (Gallus gallus domesticus) is crucial for improving immunization strategies against viral diseases.
- Cellular immunity, particularly T-cell-dependent responses, is vital for controlling viral infections in poultry.
Purpose of the Study:
- To investigate the development of T-cell subsets in chickens from 1 to 21 days old.
- To assess the functional capacity of lymphocytes from chickens of different ages in conferring protection against avian influenza.
Main Methods:
- Analysis of T-cell composition and localization in blood and lymphoid tissues of chickens aged 1–21 days.
- Measurement of cytokine mRNA levels (IL2, IFNγ).
- Lymphocyte transfer experiments from adult and neonatal chickens to day-old chicks (DOCs), followed by challenge with a pathogenic avian influenza virus (H5Ndel).
Main Results:
- Increased T-cell frequencies and a shift in CD8 dimer expression (CD8α to CD8αβ) were observed with age.
- Increased IL2 and IFNγ mRNA levels suggest enhanced T-cell-dependent antiviral responses in older chickens.
- Transfer of adult lymphocytes, but not neonatal lymphocytes, conferred protection against avian influenza challenge in DOCs.
Conclusions:
- Chicks are unable to mount an effective cellular antiviral response during the first 3 weeks of life.
- Maturation of both innate and adaptive immune systems is essential for controlling influenza infection and for effective vaccination in chickens.
Abstract:
The development of immunocompetence in chicks after hatching is not fully understood. However, detailed knowledge of immunocompetence and maturation processes in day-old chicks (DOCs) and juvenile chickens (Gallus gallus domesticus) is necessary to implement enhanced immunization strategies. For viral diseases, this especially includes the development of cellular immunity focusing on T-cell-dependent responses. In the current study, we investigated T-cell subsets in blood and lymphoid tissues of 1-to-21-day-old chickens concerning their cellular composition and localization. We detected an increase of T-cell frequencies in blood and spleen and a shift of the CD8α dimer expression toward a CD8αβ expression on the surface of T cells with increasing age. A relocalization of lymphocytes into antigen presentation structures within the spleen was affirmed. In addition, changes in basal messenger RNA (mRNA) level, with increasing IL2 and IFNγ mRNA levels at different ages were measured. These detected changes suggest an improved T-cell-dependent antiviral response with increasing age in chickens. To confirm this finding on a functional level, we conducted a transfer experiment: adult and, as a negative control, neonatal naïve lymphocytes were transferred into DOCs. Afterward, the protection induced by these transferred cells was verified by a sublethal infection by using a highly pathogenic avian influenza virus with neuraminidase deletion, H5Ndel. Previous experiments have shown that adult animals survive infection with this virus strain, while naïve DOCs show severe symptoms or even die. As a result, the transfer of adult, but not neonatal lymphocytes, confers protection to DOCs against the infection, demonstrating functional differences in lymphocytes from chicks of different ages. Collectively, these data reveal the inability of chicks to mount an effective, cellular antiviral response in the first 3 wk of life. Therefore, we propose that the observed maturation of both the innate and the adaptive arms of the immune system early in development is mandatory for controlling influenza infection in chickens, as well as for an effective vaccination with replication-competent viral vaccine strains.
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