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PLC-PIP2 和 cAMP-PKA 信号通路在辐射诱导免疫抑制效应中的作用。

Role of PLC-PIP2 and cAMP-PKA signal pathways in radiation-induced immune-suppressing effect.

机构信息

Ministry of Health Key Laboratory of Radiobiology, Jilin University, Changchun 130021, Jilin, China.

Department of Radiation Oncology, China-Japan Union Hospital of Jilin University, Changchun 130033, Jilin, China.

出版信息

Biomed Environ Sci. 2014 Jan;27(1):27-34. doi: 10.3967/bes2014.005.

Abstract

OBJECTIVE

The purpose of the present study was to observe the changes in CD4+CD25+Nrp1+Treg cells after irradiation with different doses and explore the possible molecular mechanisms involved.

METHODS

ICR mice and mouse lymphoma cell line (EL-4 cells) was used. The expressions of CD4, CD25, Nrp1, calcineurin and PKC-α were detected by flow cytometry. The expressions of TGF-β1, IL-10, PKA and cAMP were estimated with ELISA.

RESULTS

At 12 h after irradiation, the expression of Nrp1 increased significantly in 4.0 Gy group, compared with sham-irradiation group (P<0.05) in the spleen and thymus, respectively, when ICR mice received whole-body irradiation (WBI). Meanwhile the synthesis of Interleukin 10 (IL-10) and transforming growth factor-β1 (TGF-β1) increased significantly after high dose irradiation (HDR) (> or = 1.0 Gy). In addition, the expression of cAMP and PKA protein increased, while PKC-α, calcineurin decreased at 12h in thymus cells after 4.0 Gy X-irradiation. While TGF-β1 was clearly inhibited when the PLC-PIP2 signal pathway was stimulated or the cAMP-PKA signal pathway was blocked after 4.0 Gy X-irradiation, this did not limit the up-regulation of CD4+CD25+Nrp1+Treg cells after ionizing radiation.

CONCLUSION

These results indicated that HDR might induce CD4+CD25+Nrp1+Treg cells production and stimulate TGF-β1 secretion by regulating signal molecules in mice.

摘要

目的

本研究旨在观察不同剂量照射后 CD4+CD25+Nrp1+Treg 细胞的变化,并探讨可能涉及的分子机制。

方法

采用 ICR 小鼠和小鼠淋巴瘤细胞系(EL-4 细胞)。采用流式细胞术检测 CD4、CD25、Nrp1、钙调神经磷酸酶和 PKC-α的表达。采用 ELISA 法检测 TGF-β1、IL-10、PKA 和 cAMP 的表达。

结果

全身照射(WBI)后 12 h,4.0 Gy 组小鼠脾、胸腺 Nrp1 表达明显高于假照射组(P<0.05)。高剂量照射(>或=1.0 Gy)后白细胞介素 10(IL-10)和转化生长因子-β1(TGF-β1)合成明显增加。此外,4.0 Gy X 射线照射后 12 h,胸腺细胞中 cAMP 和 PKA 蛋白表达增加,PKC-α和钙调神经磷酸酶表达减少。然而,4.0 Gy X 射线照射后刺激 PLC-PIP2 信号通路或阻断 cAMP-PKA 信号通路可明显抑制 TGF-β1,但不能限制电离辐射后 CD4+CD25+Nrp1+Treg 细胞的上调。

结论

这些结果表明,HDR 可能通过调节小鼠信号分子诱导 CD4+CD25+Nrp1+Treg 细胞产生,并刺激 TGF-β1 分泌。

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