基于 DNA 超分子水凝胶的保护性 NK 细胞储库用于增强三阴性乳腺癌治疗
Protective NK Cell Reservoir Based on DNA Supramolecular Hydrogel for Enhanced Triple-Negative Breast Cancer Therapy.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:The Effects of Tamoxifen on Tolerogenic Cells in Cancer.
The Effects of Tamoxifen on Tolerogenic Cells in Cancer.
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他莫昔芬(TAM)是治疗激素受体阳性乳腺癌患者最常用的选择性雌激素受体调节剂(SERM),临床使用已逾20年。其激素治疗作用已得到充分确立,但对免疫耐受细胞的调节作用仍需进一步阐明。肿瘤微环境中浸润的调节性T细胞(TME-Treg)具有重要免疫抑制功能,该作用由转录因子Foxp3介导。大量研究利用基因敲除模型提示,Foxp3可调节多种参与致癌过程的基因表达,包括CTLA-4、PD-1、LAG-3、TIM-3、TIGIT和TNFR2。在Cre/loxP系统中,TAM可间接诱导融合蛋白转位至细胞核、切除被loxP位点夹住的STOP盒,并使表达Foxp3的细胞群稳定表达编码的荧光蛋白。
此外,乳腺癌治疗中给予TAM可直接影响髓源性抑制细胞(MDSC),并富集NK和NKT等白细胞群,同时损害树突状细胞的分化与活化。
然而,TAM如何减少这一细胞群的基本机制仍不清楚。本文综述TAM对调节性T细胞的重要影响,以更准确理解癌症免疫治疗的作用机制。
Tamoxifen (TAM) is the most prescribed selective estrogen receptor modulator (SERM) to treat hormone-receptor-positive breast cancer patients and has been used for more than 20 years. Its role as a hormone therapy is well established; however, the potential role in modulating tolerogenic cells needs to be better clarified. Infiltrating tumor-microenvironment-regulatory T cells (TME-Tregs) are important as they serve a suppressive function through the transcription factor Forkhead box P3 (Foxp3).
Abundant studies have suggested that Foxp3 regulates the expression of several genes (CTLA-4, PD-1, LAG-3, TIM-3, TIGIT, TNFR2) involved in carcinogenesis to utilize its tumor suppressor function through knockout models. TAM is indirectly concomitant via the Cre/loxP system by allowing nuclear translocation of the fusion protein, excision of the floxed STOP cassette and heritable expression of encoding fluorescent protein in a cohort of cells that express Foxp3.
Moreover, TAM administration in breast cancer treatment has shown its effects directly through MDSCs by the enrichment of its leukocyte populations, such as NK and NKT cells, while it impairs the differentiation and activation of DCs.
However, the fundamental mechanisms of the reduction of this pool by TAM are unknown.
Here, we review the vital effects of TAM on Tregs for a precise mechanistic understanding of cancer immunotherapies.
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