首页> 外文OA文献 >Altered Cytokine Production By Specific Human Peripheral Blood Cell Subsets Immediately Following Spaceflight
【2h】

Altered Cytokine Production By Specific Human Peripheral Blood Cell Subsets Immediately Following Spaceflight

机译:特定的人类外周血细胞亚群在航天飞行后立即改变了细胞因子的产生

摘要

In this study, we have attempted to combine standard immunological assays with the cellular resolving power of the flow cytometer to positively identify the specific cell types involved in spaceflight-induced immune alterations. We have obtained whole blood samples from 27 astronauts collected at three timepoints (L-10, R+0 and R+3) surrounding four recent space shuttle missions. The duration of these missions ranged from 10 to 18 days. Assays performed included serum/urine cortisol, comprehensive subset phenotyping, assessment of cellular activation markers and intracellular cytokine production following mitogenic stimulation. Absolute levels of peripheral granulocytes were significantly elevated following spaceflight, but the levels of circulating lymphocytes and monocytes were unchanged. Lymphocyte subset analysis demonstrated trends towards a decreased percentage of T cells and an increased percentage of B cells. Nearly all of the astronauts exhibited an increased CD4:CD8 ratio, which was dramatic in some individuals. Assessment of memory (CD45RA+) vs. naive (CD45RO+) CD4+ T cell subsets was more ambiguous, with subjects tending to group more as a flight crew. All subjects from one mission demonstrated an increased CD45RA:CD45RO ratio, while all subjects from another Mission demonstrated a decreased ratio. While no significant trend was seen in the monocyte population as defined by scatter, a decreased percentage of the CD14+ CD16+ monocyte subset was seen following spaceflight in all subjects tested. In general, most of the cellular changes described above which were assessed at R+O and compared to L-10 trended to pre-flight levels by R+3. Although no significant differences were seen in the expression of the cellular activation markers CD69 and CD25 following exposure to microgravity, significant alterations were seen in cytokine production in response to mitogenic activation for specific subsets. T cell (CD3+) production of IL-2 was significantly decreased after at R+O as was IL-2 production by both CD4+ and CD8+ T cell subsets for most subjects. Production of IFN(sub gamma) did not appear to be affected by microgravity exposure in either T cells in general or in the CD8+ T cell subset. There was a spaceflight-induced decrease in IFN(sub gamma) production in the CD4+ T cell subset, however it did not reach statistical significance. Serum and urine stress-hormone analysis indicated significant physiologic stresses in astronauts following spaceflight. In summary, these results demonstrate alterations in the peripheral immune system of astronauts immediately after spaceflight of 10 to 18 days duration and support continued research regarding microgravity and immunology (including in-flight sampling) prior to routine long-term spaceflight for astronauts.
机译:在这项研究中,我们尝试将标准免疫学分析与流式细胞仪的细胞分辨能力相结合,以积极鉴定参与航天诱导的免疫改变的特定细胞类型。我们从27个宇航员那里获得了全血样本,这些样本是在最近四个航天飞机任务的三个时间点(L-10,R + 0和R + 3)采集的。这些任务的持续时间为10到18天。进行的测定包括血清/尿皮质醇,全面的亚型表型分析,有丝分裂刺激后细胞活化标志物的评估以及细胞内细胞因子的产生。航天飞行后,外周粒细胞的绝对水平显着升高,但循环淋巴细胞和单核细胞的水平未改变。淋巴细胞亚群分析显示出T细胞百分比减少和B细胞百分比增加的趋势。几乎所有宇航员的CD4:CD8比率都增加了,这在某些人中非常明显。记忆(CD45RA +)与幼稚(CD45RO +)CD4 + T细胞亚群的评估更为含糊,受试者倾向于作为飞行机组人员分组。一个特派团的所有受试者的CD45RA:CD45RO比率增加,而另一特派团的所有受试者的比率则下降。虽然在散布所定义的单核细胞群中未见明显趋势,但在所有测试的受试者中,航天飞行后都观察到CD14 + CD16 +单核细胞亚群的百分比降低。通常,在R + O处评估并与R-10比较的上述大多数细胞变化,在R + 3之前趋于飞行前水平。尽管暴露于微重力下后细胞活化标记CD69和CD25的表达未见明显差异,但对特定亚群的有丝分裂活化反应,细胞因子的产生却发生了显着变化。在大多数情况下,R + O后IL-2的T细胞(CD3 +)产生显着降低,CD4 +和CD8 + T细胞亚群的IL-2产生也明显降低。一般而言,T细胞或CD8 + T细胞亚群中的微重力暴露都不会影响IFN(sub gamma)的产生。有一个太空飞行引起的CD4 + T细胞亚群中IFN(subγ)产生的减少,但是没有达到统计学意义。血清和尿液应激激素分析表明,航天员航天员飞行后存在明显的生理压力。总而言之,这些结果表明,在进行10到18天的航天飞行后,宇航员的外周免疫系统会立即发生变化,并支持对宇航员进行常规长期航天之前对微重力和免疫学(包括飞行中采样)的持续研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号