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氧张力通过调节II类主要组织相容性复合体(MHC)的表达来调控GM-CSF扩增的小鼠骨髓树突状细胞的体外成熟。

Oxygen tension regulates the in vitro maturation of GM-CSF expanded murine bone marrow dendritic cells by modulating class II MHC expression.

作者信息

Goth Samuel R, Chu Ruth A, Pessah Isaac N

机构信息

NIEHS Center for Children's Environmental Health, University of California at Davis, Davis, CA 95616, USA.

出版信息

J Immunol Methods. 2006 Jan 20;308(1-2):179-91. doi: 10.1016/j.jim.2005.10.012. Epub 2005 Dec 19.

Abstract

Conventional culture conditions for GM-CSF expanded murine bone marrow derived dendritic cells (BMDCs) uses ambient (hyperoxic) oxygen pressure (20% v/v, 152 Torr) and medium supplemented with the thiol 2-mercaptoethanol (2-Me). Given the redox activities of O2 and 2-Me, the effects of 2%, 5%, 10%, and 20% v/v O2 atmospheres and omitting 2-Me from the medium were tested upon the generation of GM-CSF expanded BMDCs. DC yield, phenotype and function were compared to BMDCs grown using conventional conditions. All cultures yielded DC subsets with CD11c+ MHC II(NEG), CD11c+ MHC II(INT), CD11c+ MHC II(HI) expression phenotypes, classed as precursor, immature, and mature DCs (IDC, MDC). Low O2 tensions generated significantly fewer precursor DCs, and more IDCs and MDCs. Cytometer sorted precursor DCs expressed surface class II MHC after transfer to low, but not high O2 atmospheres. Expression of myeloid markers was similar between BMDC cultures generated in 5% O2 or conventional conditions, and MDCs from low O2 cultures had the morphology typical of mature myeloid DCs. IDCs and MDCs from low O2 and conventional culture conditions were similarly potent allostimulatory APCs. The O2 tension (but not 2-Me addition) in vitro significantly influences overall DC subset frequencies and yield, and governs DC maturation by regulating the surface class II MHC expression of GM-CSF expanded BMDC cultures.

摘要

粒细胞-巨噬细胞集落刺激因子(GM-CSF)扩增的小鼠骨髓来源树突状细胞(BMDCs)的传统培养条件使用环境(高氧)氧压(20% v/v,152 Torr)以及添加巯基2-巯基乙醇(2-Me)的培养基。鉴于O₂和2-Me的氧化还原活性,测试了2%、5%、10%和20% v/v O₂气氛以及培养基中省略2-Me对GM-CSF扩增的BMDCs生成的影响。将DC产量、表型和功能与使用传统条件培养的BMDCs进行比较。所有培养物均产生具有CD11c⁺MHC II(阴性)、CD11c⁺MHC II(中等)、CD11c⁺MHC II(高)表达表型的DC亚群,分别归类为前体、未成熟和成熟DC(IDC、MDC)。低氧张力产生的前体DC明显减少,而IDC和MDC增多。流式细胞仪分选的前体DC转移至低氧而非高氧气氛后表达表面II类MHC。在5% O₂或传统条件下生成的BMDC培养物之间髓系标志物的表达相似,低氧培养的MDC具有成熟髓系DC的典型形态。低氧和传统培养条件下的IDC和MDC同样是有效的同种异体刺激APC。体外氧张力(而非添加2-Me)显著影响总体DC亚群频率和产量,并通过调节GM-CSF扩增的BMDC培养物的表面II类MHC表达来控制DC成熟。

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