Spaceflight Influences both Mucosal and Peripheral Cytokine Production in PTN-Tg and Wild Type Mice

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Abstract

Spaceflight is associated with several health issues including diminished immune efficiency. Effects of long-term spaceflight on selected immune parameters of wild type (Wt) and transgenic mice over-expressing pleiotrophin under the human bone-specific osteocalcin promoter (PTN-Tg) were examined using the novel Mouse Drawer System (MDS) aboard the International Space Station (ISS) over a 91 day period. Effects of this long duration flight on PTN-Tg and Wt mice were determined in comparison to ground controls and vivarium-housed PTN-Tg and Wt mice. Levels of interleukin-2 (IL-2) and transforming growth factor-beta1 (TGF-β1) were measured in mucosal and systemic tissues of Wt and PTN-Tg mice. Colonic contents were also analyzed to assess potential effects on the gut microbiota, although no firm conclusions could be made due to constraints imposed by the MDS payload and the time of sampling. Spaceflight-associated differences were observed in colonic tissue and systemic lymph node levels of IL-2 and TGF-β1 relative to ground controls. Total colonic TGF-β1 levels were lower in Wt and PTN-Tg flight mice in comparison to ground controls. The Wt flight mouse had lower levels of IL-2 and TGF-β1 compared to the Wt ground control in both the inguinal and brachial lymph nodes, however this pattern was not consistently observed in PTN-Tg mice. Vivarium-housed Wt controls had higher levels of active TGF-β1 and IL-2 in inguinal lymph nodes relative to PTN-Tg mice. The results of this study suggest compartmentalized effects of spaceflight and on immune parameters in mice. © 2013 McCarville et al.

Figures

  • Table 1. Cytokine levels within the colonic tissue of PTN-Tg and Wt mice under flight, ground control and vivarium conditions.
  • Table 2. Cytokine levels in the inguinal lymph nodes of PTN-Tg and Wt mice under flight, ground control and vivarium conditions.
  • Table 3. Percent active TGF-b1 in inguinal and brachial lymph nodes of PTN-Tg and Wt mice under flight, ground control and vivarium conditions.
  • Figure 1. Active TGF-b1 (ng/g) levels in inguinal lymph node from Wt and PTN-Tg vivarium housed mice. TGF-b1 was quantified from homogenized inguinal tissue of Wt and PTN-Tg vivarium housed mice by ELISA. The PTN-Tg mice had lower amounts of active TGF-b1 compared to the Wt. * Indicates statistical significance (p = 0.05) by unpaired Welch corrected t test. doi:10.1371/journal.pone.0068961.g001
  • Figure 2. Comparison of IL-2 (ng/g) in inguinal lymph nodes from Wt and PTN-Tg vivarium- housed mice. IL-2 was quantified from homogenized inguinal tissue of Wt and PTN-Tg vivarium housed mice by ELISA. The PTN-Tg mice had lower amounts of IL-2 compared to the Wt. * Indicates statistical significance (p = 0.05) by unpaired Welch corrected t test. doi:10.1371/journal.pone.0068961.g002
  • Table 4. Cytokine levels in the brachial lymph nodes of PTN-Tg and Wt mice under flight, ground control and vivarium conditions.
  • Figure 3. Dendrogram comparing colonic communities among mice (Wt: wild type or Tg: transgenic) subjected to space exposure (F) the corresponding MDS ground controls (G) or mice from the vivarium (V).

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CITATION STYLE

APA

McCarville, J. L., Clarke, S. T., Shastri, P., Liu, Y., Kalmokoff, M., Brooks, S. P. J., & Green-Johnson, J. M. (2013). Spaceflight Influences both Mucosal and Peripheral Cytokine Production in PTN-Tg and Wild Type Mice. PLoS ONE, 8(7). https://doi.org/10.1371/journal.pone.0068961

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