Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization

2018
Authors
Nacka-Aleksić, Mirjana
Stojanović, Marija

Pilipović, Ivan
Stojić-Vukanić, Zorica

Kosec, Duško
Leposavić, Gordana

Article (Published version)
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An accumulating body of evidence suggests that development of autoimmune pathologies leads to thymic dysfunction and changes in peripheral T-cell compartment, which, in turn, perpetuate their pathogenesis. To test this hypothesis, thymocyte differentiation/maturation in rats susceptible (Dark Agouti, DA) and relatively resistant (Albino Oxford, AO) to experimental autoimmune encephalomyelitis (EAE) induction was examined. Irrespective of strain, immunization for EAE (i) increased the circulating levels of IL-6, a cytokine causally linked with thymic atrophy, and (ii) led to thymic atrophy reflecting partly enhanced thymocyte apoptosis associated with downregulated thymic IL-7 expression. Additionally, immunization diminished the expression of Thy-1, a negative regulator of TCR alpha beta-mediated signaling and activation thresholds, on CD4+CD8+ TCR alpha beta(lo/hi) thymocytes undergoing selection and thereby impaired thymocyte selection/survival. This diminished the generation of matu...re CD4+ and CD8+ single positive TCR alpha beta(hi) thymocytes and, consequently, CD4+ and CD8+ recent thymic emigrants. In immunized rats, thymic differentiation of natural regulatory CD4+Foxp3+CD25+ T cells (nTregs) was particularly affected reflecting a diminished expression of IL-7, IL-2 and IL-15. The decline in the overall thymic T-cell output and nTreg generation was more pronounced in DA than AO rats. Additionally, differently from immunized AO rats, in DA ones the frequency of CD28- cells secreting cytolytic enzymes within peripheral blood CD4+ T lymphocytes increased, as a consequence of thymic atrophy-related replicative stress (mirrored in CD4+ cell memory pool expansion and p16(INK4a) accumulation). The higher circulating level of TNF-alpha in DA compared with AO rats could also contribute to this difference. Consistently, higher frequency of cytolytic CD4+ granzyme B+ cells (associated with greater tissue damage) was found in spinal cord of immunized DA rats compared with their AO counterparts. In conclusion, the study indicated that strain differences in immunization-induced changes in thymopoiesis and peripheral CD4+CD28- T-cell generation could contribute to rat strain-specific clinical outcomes of immunization for EAE.
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PLoS One, 2018, 13, 8Publisher:
- Public Library Science, San Francisco
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DOI: 10.1371/journal.pone.0201848
ISSN: 1932-6203
PubMed: 30086167
WoS: 000441129300035
Scopus: 2-s2.0-85051436397
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PharmacyTY - JOUR AU - Nacka-Aleksić, Mirjana AU - Stojanović, Marija AU - Pilipović, Ivan AU - Stojić-Vukanić, Zorica AU - Kosec, Duško AU - Leposavić, Gordana PY - 2018 UR - https://farfar.pharmacy.bg.ac.rs/handle/123456789/3221 AB - An accumulating body of evidence suggests that development of autoimmune pathologies leads to thymic dysfunction and changes in peripheral T-cell compartment, which, in turn, perpetuate their pathogenesis. To test this hypothesis, thymocyte differentiation/maturation in rats susceptible (Dark Agouti, DA) and relatively resistant (Albino Oxford, AO) to experimental autoimmune encephalomyelitis (EAE) induction was examined. Irrespective of strain, immunization for EAE (i) increased the circulating levels of IL-6, a cytokine causally linked with thymic atrophy, and (ii) led to thymic atrophy reflecting partly enhanced thymocyte apoptosis associated with downregulated thymic IL-7 expression. Additionally, immunization diminished the expression of Thy-1, a negative regulator of TCR alpha beta-mediated signaling and activation thresholds, on CD4+CD8+ TCR alpha beta(lo/hi) thymocytes undergoing selection and thereby impaired thymocyte selection/survival. This diminished the generation of mature CD4+ and CD8+ single positive TCR alpha beta(hi) thymocytes and, consequently, CD4+ and CD8+ recent thymic emigrants. In immunized rats, thymic differentiation of natural regulatory CD4+Foxp3+CD25+ T cells (nTregs) was particularly affected reflecting a diminished expression of IL-7, IL-2 and IL-15. The decline in the overall thymic T-cell output and nTreg generation was more pronounced in DA than AO rats. Additionally, differently from immunized AO rats, in DA ones the frequency of CD28- cells secreting cytolytic enzymes within peripheral blood CD4+ T lymphocytes increased, as a consequence of thymic atrophy-related replicative stress (mirrored in CD4+ cell memory pool expansion and p16(INK4a) accumulation). The higher circulating level of TNF-alpha in DA compared with AO rats could also contribute to this difference. Consistently, higher frequency of cytolytic CD4+ granzyme B+ cells (associated with greater tissue damage) was found in spinal cord of immunized DA rats compared with their AO counterparts. In conclusion, the study indicated that strain differences in immunization-induced changes in thymopoiesis and peripheral CD4+CD28- T-cell generation could contribute to rat strain-specific clinical outcomes of immunization for EAE. PB - Public Library Science, San Francisco T2 - PLoS One T1 - Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization VL - 13 IS - 8 DO - 10.1371/journal.pone.0201848 ER -
@article{ author = "Nacka-Aleksić, Mirjana and Stojanović, Marija and Pilipović, Ivan and Stojić-Vukanić, Zorica and Kosec, Duško and Leposavić, Gordana", year = "2018", abstract = "An accumulating body of evidence suggests that development of autoimmune pathologies leads to thymic dysfunction and changes in peripheral T-cell compartment, which, in turn, perpetuate their pathogenesis. To test this hypothesis, thymocyte differentiation/maturation in rats susceptible (Dark Agouti, DA) and relatively resistant (Albino Oxford, AO) to experimental autoimmune encephalomyelitis (EAE) induction was examined. Irrespective of strain, immunization for EAE (i) increased the circulating levels of IL-6, a cytokine causally linked with thymic atrophy, and (ii) led to thymic atrophy reflecting partly enhanced thymocyte apoptosis associated with downregulated thymic IL-7 expression. Additionally, immunization diminished the expression of Thy-1, a negative regulator of TCR alpha beta-mediated signaling and activation thresholds, on CD4+CD8+ TCR alpha beta(lo/hi) thymocytes undergoing selection and thereby impaired thymocyte selection/survival. This diminished the generation of mature CD4+ and CD8+ single positive TCR alpha beta(hi) thymocytes and, consequently, CD4+ and CD8+ recent thymic emigrants. In immunized rats, thymic differentiation of natural regulatory CD4+Foxp3+CD25+ T cells (nTregs) was particularly affected reflecting a diminished expression of IL-7, IL-2 and IL-15. The decline in the overall thymic T-cell output and nTreg generation was more pronounced in DA than AO rats. Additionally, differently from immunized AO rats, in DA ones the frequency of CD28- cells secreting cytolytic enzymes within peripheral blood CD4+ T lymphocytes increased, as a consequence of thymic atrophy-related replicative stress (mirrored in CD4+ cell memory pool expansion and p16(INK4a) accumulation). The higher circulating level of TNF-alpha in DA compared with AO rats could also contribute to this difference. Consistently, higher frequency of cytolytic CD4+ granzyme B+ cells (associated with greater tissue damage) was found in spinal cord of immunized DA rats compared with their AO counterparts. In conclusion, the study indicated that strain differences in immunization-induced changes in thymopoiesis and peripheral CD4+CD28- T-cell generation could contribute to rat strain-specific clinical outcomes of immunization for EAE.", publisher = "Public Library Science, San Francisco", journal = "PLoS One", title = "Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization", volume = "13", number = "8", doi = "10.1371/journal.pone.0201848" }
Nacka-Aleksić, M., Stojanović, M., Pilipović, I., Stojić-Vukanić, Z., Kosec, D.,& Leposavić, G.. (2018). Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization. in PLoS One Public Library Science, San Francisco., 13(8). https://doi.org/10.1371/journal.pone.0201848
Nacka-Aleksić M, Stojanović M, Pilipović I, Stojić-Vukanić Z, Kosec D, Leposavić G. Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization. in PLoS One. 2018;13(8). doi:10.1371/journal.pone.0201848 .
Nacka-Aleksić, Mirjana, Stojanović, Marija, Pilipović, Ivan, Stojić-Vukanić, Zorica, Kosec, Duško, Leposavić, Gordana, "Strain differences in thymic atrophy in rats immunized for EAE correlate with the clinical outcome of immunization" in PLoS One, 13, no. 8 (2018), https://doi.org/10.1371/journal.pone.0201848 . .