HLA DR Ag was strongly expressed on activated T cells , macrophages.
巨噬细胞 、 T淋巴细胞高表达HLADR抗原 (P& lt; 005).
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Tk + T cells were sensitive to GCV ( P 0.05 )
转染HSV-tkT 细胞(tk+T细胞)对GCV有敏感性 ( P0.05 ).
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Summary: The potency of regulatory T cells is impressie, but unexplained.
总结: 调节性T淋巴细胞的效能值得注重, 但尚无法解释.
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Methods also provided for generating tolerogenic dendritic cells and regulatory T cells.
本发明也提供了产生致耐受性树突细胞和调节性T细胞的方法.
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T cells are produced by the body to fight infection.
细胞由机体产生以抵抗感染.
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The tyrosine phosphorylation of ZAP - 70 in CD 3~ + T cells was enhanced by M ? ? CD.
MβCD能够促进CD3+T细胞中ZAP-70分子的酪氨酸磷酸化.
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Conclusion: Aire gene does not affect the production of CD 4~ + CD 25~ + regulatory T cells.
结论: 结果表明Aire基因不影响CD4+CD25+调节性T细胞的产生.
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Gamma delta T cells are part of the body's defenses.
伽马德耳塔T细胞是人体免疫系统的一部分.
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These T cells are sometimes referred to as cytotoxic T cells.
这些T细胞有时被称为细胞毒性T细胞.
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Helper T cells aid the B cells to make antigen - specific antibodies.
辅助T细胞能帮助B细胞制造抗原特异的抗体.
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Results: The SAN and AVN chiefly consisted of P cells and T cells.
结果: 窦房结和房室结内的细胞主要为P细胞和T细胞.
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The tyrosine phosphorylated ZAP - 70 in the CD 3~ + T cells induced by M ? ? CD was detected by immunoblotting.
免疫印迹法检测MβCD诱导的CD3+T细胞中ZAP-70的磷酸化.
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Objective: To clarify the role of Aire on the production of regulatory T cells on mice.
目的: 探讨自身免疫调节因子(Aire)基因是否影响调节性T细胞的产生.
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Regulatory T cells have broad perspective in infection immunity, tumor immunity and transplantation immunity.
在感染免疫 、 肿瘤免疫、移植耐受等方面具有广泛的应用前景.
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It produces T cells responsible for fighting off disease, and is adversely affected by stress.
它产生T细胞负责抵抗疾病和抵消压力影响.
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