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用精氨酸丰富、细胞穿透、靶向 FOXP3 的肽偶联吗啉代寡聚体耗竭调节性 T 细胞可抑制调节性 T 细胞功能。

Depleting regulatory T cells with arginine-rich, cell-penetrating, peptide-conjugated morpholino oligomer targeting FOXP3 inhibits regulatory T-cell function.

机构信息

Duke Comprehensive Cancer Center, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Cancer Gene Ther. 2012 Jan;19(1):30-7. doi: 10.1038/cgt.2011.63. Epub 2011 Oct 14.

Abstract

CD4+CD25+regulatory T cells (T(reg)) impair anti-tumor and anti-viral immunity. As there are higher T(reg) levels in cancer patients compared with healthy individuals, there is considerable interest in eliminating them or altering their function as part of cancer or viral immunotherapy strategies. The scurfin transcriptional regulator encoded by the member of the forkhead winged helix protein family (FOXP3) is critical for maintaining the functions of T(reg). We hypothesized that targeting FOXP3 expression with a novel arginine-rich, cell-penetrating, peptide-conjugated phosphorodiamidate morpholino (PPMO) based antisense would eliminate T(reg) and enhance the induction of effector T-cell responses. We observed that the PPMO was taken up by activated T cells in vitro and could downregulate FOXP3 expression, which otherwise increases during antigen-specific T-cell activation. Generation of antigen-specific T cells in response to peptide stimulation was enhanced by pre-treatment of peripheral blood mononuclear cells with the FOXP3-targeted PPMO. In summary, modulation of T(reg) levels using the FOXP3 PPMO antisense-based genomic strategy has the potential to optimize immunotherapy strategies in cancer and viral immunotherapy.

摘要

CD4+CD25+调节性 T 细胞(Treg)会损害抗肿瘤和抗病毒免疫。由于癌症患者体内的 Treg 水平高于健康个体,因此人们非常有兴趣消除它们或改变其功能,作为癌症或病毒免疫治疗策略的一部分。叉头框翼状螺旋蛋白家族(FOXP3)成员编码的 scurfin 转录调节剂对于维持 Treg 的功能至关重要。我们假设,使用新型富含精氨酸、细胞穿透性、肽连接的磷酰胺酸酯吗啉代(PPMO)基反义寡核苷酸靶向 FOXP3 表达,将消除 Treg 并增强效应 T 细胞反应的诱导。我们观察到,PPMO 可被体外激活的 T 细胞摄取,并可下调 FOXP3 表达,否则 FOXP3 表达会在抗原特异性 T 细胞激活过程中增加。FOXP3 靶向 PPMO 预处理外周血单个核细胞可增强针对肽刺激的抗原特异性 T 细胞的产生。总之,使用 FOXP3 PPMO 反义基于基因组的策略调节 Treg 水平有可能优化癌症和病毒免疫治疗中的免疫治疗策略。

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