| Literature DB >> 31375732 |
D Moser1, S J Sun2,3, N Li2,3, K Biere1, M Hoerl1, S Matzel1, M Feuerecker1, J-I Buchheim1, C Strewe1, C S Thiel4,5, Y X Gao2,3, C Z Wang2,3, O Ullrich4,5, M Long6,7, A Choukèr8.
Abstract
Gravitational stress in general and microgravity (µg) in particular are regarded as major stress factors responsible for immune system dysfunction in space. To assess the effects of alternating µg and hypergravity (hyper-g) on immune cells, the attachment of peripheral blood mononuclear cells (PBMCs) to adhesion molecules under flow conditions and the antigen-induced immune activation in whole blood were investigated in parabolic flight (PF). In contrast to hyper-g (1.8 g) and control conditions (1 g), flow and rolling speed of PBMCs were moderately accelerated during µg-periods which were accompanied by a clear reduction in rolling rate. Whole blood analyses revealed a "primed" state of monocytes after PF with potentiated antigen-induced pro-inflammatory cytokine responses. At the same time, concentrations of anti-inflammatory cytokines were increased and monocytes displayed a surface molecule pattern that indicated immunosuppression. The results suggest an immunologic counterbalance to avoid disproportionate immune responses. Understanding the interrelation of immune system impairing and enhancing effects under different gravitational conditions may support the design of countermeasures to mitigate immune deficiencies in space.Entities:
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Year: 2019 PMID: 31375732 PMCID: PMC6677797 DOI: 10.1038/s41598-019-47655-x
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Experimental hardware and flow-chamber assembly. (A) Main experimental hardware in each incubator box was a syringe pump (##) in which a syringe prefilled with cell suspension (X) was installed. Cell suspension was pumped into a flow-chamber (*) and cells were then detected by a 40× objective and recorded by camera (#). (B) Flow-chamber assembly.
Figure 2Rolling rate and rolling speed on adhesion molecule substrate. PBMCs were injected in a flow-chamber coated with ICAM1/PSGL-1 and floating/rolling behaviour was recorded. Analysis included video sequences from multiple parabolas. Time periods of videos and counted cell number were in a comparable range. hyper-g1: pull-up; hyper-g2: pull-out (A) Rolling rate of PBMCs at different gravitational conditions. (B) Rolling speed [µm/sec.] of rolling PBMCs at different gravitational conditions. Bar charts represent mean values of 10–20 parabolas or 273–752 (for A) or 6–119 (for B) cells with ± SD (*p < 0.05, ***p < 0.001).
Figure 4Expression of activation markers CD69, TLR2 and HLA-DR on monocytes after 6 hours of antigen incubation (A) protocol “antigens during PF” (B) protocol “antigens after PF”. After a total incubation time of 6 hours, samples were fixated for flow cytometric analysis of surface molecule expression. upper row: Double-staining of CD14 and CD69, middle row: Double-staining of CD14 and TLR2, bottom row: Double-staining of CD14 and HLA-DR. Bar charts represent mean values of double-positive cells as a percentage in samples from three different blood donors with ± SD (*p < 0.05, **p < 0.01, ***p < 0.001). Flow cytometry comprised of 10,000 events per sample.
Figure 3Schemes of different treatment protocols of PF and DTH assay. (A) Whole blood was mixed with antigens and exposed to a simultaneous PF in the early phase of antigen incubation: “antigens during PF”. (B) Whole blood was exposed to PF and subsequently incubated with antigens: “antigens after PF”. Total incubation time for DTH assays from both protocols was 6, 24 and 48 hours.
Expression of activation markers CD69, TLR2 and HLA-DR on monocytes 24 hours after protocol “antigens during PF”.
| antigens during PF | Basal | LPS | HKLM | PWM | |||||
|---|---|---|---|---|---|---|---|---|---|
| CD14+ | mean | SD | mean | SD | mean | SD | mean | SD | |
| CD69+ | 21,23 | ±17,52 | 29,50 | ±5,32 | 16,09 | ±8,58 | 33,41 | ±11,34 | |
| 27,61 | ±8,98 | 47,7 | ±5,78 | 23,17 | ±6,63 | 44,29 | ±9,45 | ||
| TLR2+ | 60,28 | ±14,74 | 51,47 | ±7,98 | 35,44 | ±6,96 | 55,34 | ±10,53 | |
| 52,85 | ±19,83 | 38,43 | ±5,07 | 25,69 | ±13,06 | 48,2 | ±8,46 | ||
| HLA-DR+ | 48,52 | ±9,30 | 49,47 | ±12,70 | 25,39 | ±5,56 | 52,75 | ±8,78 | |
| 45,47 | ±12,70 | 37,54 | ±2,03 | 23,31 | ±11,85 | 47,74 | ±9,56 | ||
After a total incubation time of 24 hours, samples were fixated for flow cytometric analysis of surface marker expression. Displayed are mean values of double-positive staining as a percentage (CD14/CD69, CD14/TLR2, CD14/HLA-DR) in samples from three different blood donors with ± SD (*p < 0.05).
Expression of activation markers CD69, TLR2 and HLA-DR on monocytes 24 hours after protocol “antigens after PF”. After a total incubation time of 24 hours, samples were fixated for flow cytometric analysis of surface marker expression. Displayed are mean values of double-positive staining as a percentage (CD14/CD69, CD14/TLR2, CD14/HLA-DR) in samples from three differe nt blood donors with ± SD.
| antigens after PF | Basal | LPS | HKLM | PWM | |||||
|---|---|---|---|---|---|---|---|---|---|
| CD14+ | mean | SD | mean | SD | mean | SD | mean | SD | |
| CD69+ | 18,56 | ±9,91 | 30,91 | ±17,64 | 13,28 | ±7,47 | 27,20 | ±18,09 | |
| 19,49 | ±8,10 | 31,05 | ±6,82 | 12,01 | ±6,79 | 28,88 | ±13,56 | ||
| TLR2+ | 62,93 | ±12,76 | 50,29 | ±12,47 | 35,68 | ±10,66 | 60,73 | ±13,18 | |
| 56,65 | ±18,12 | 48,09 | ±14,82 | 38,56 | ±8,91 | 62,72 | ±7,53 | ||
| HLA-DR+ | 50,73 | ±15,77 | 51,12 | ±13,60 | 28,06 | ±1,63 | 53,99 | ±7,49 | |
| 43,30 | ±22,95 | 45,63 | ±19,16 | 28,88 | ±10,18 | 50,39 | ±11,50 | ||
Figure 5Cytokine expression after 6 hours of incubation at “antigens during PF”. After a total incubation time of 6 hours, plasma supernatants were collected for cytokine analysis of (A) IL-2 (B) IL-6 (C) TNF and (D) IL-10. Bar charts represent mean values of cytokine concentration [pg/ml] calculated from the flow cytometrically determined MFI of samples from three different blood donors with ± SD (*p < 0.05).
Figure 6Cytokine expression after 6 hours of incubation at “antigens after PF”. After a total incubation time of 6 hours, plasma supernatants were collected for cytokine analysis of (A) IL-2 (B) IL-6 (C) TNF and (D) IL-10. Bar charts represent mean values of cytokine concentration [pg/ml] calculated from the flow cytometrically determined MFI of samples from three different blood donors with ± SD.