RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Low-dose aspirin can inhibit exosomal release induced by radiotherapy in breast cancer and attenuate its inhibitory effect on NK cell proliferation.
Low-dose aspirin can inhibit exosomal release induced by radiotherapy in breast cancer and attenuate its inhibitory effect on NK cell proliferation.
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低剂量阿司匹林可抑制放疗诱导的 BC 外泌体释放,并削弱其对 NK 细胞增殖的抑制作用,从而促进放疗抵抗。
乳腺癌(BC)严重威胁女性健康。阿司匹林在BC的治疗和预后中起着关键作用。
探讨低剂量阿司匹林通过外泌体和自然杀伤(NK)细胞机制对BC放疗的影响。
将BC细胞注射到裸鼠左侧胸壁以建立BC模型。观察肿瘤形态和大小。采用Ki-67免疫组化染色观察肿瘤细胞增殖情况。采用TUNEL检测癌细胞凋亡。采用Western blot检测外泌体生物发生和分泌相关基因(Rab 11、Rab27a、Rab27b、CD63和Alix)的蛋白水平。采用流式细胞术检测细胞凋亡。采用Transwell实验检测细胞迁移。采用克隆形成实验检测细胞增殖。提取BT549和4T1-Luc细胞的外泌体,并通过电子显微镜观察。将外泌体与NK细胞共培养后,采用CCK-8检测NK细胞活性。
在放疗处理下,BT549和4T1-Luc细胞中外泌体生成和分泌相关基因(Rab 11、Rab27a、Rab27b、CD63和Alix)的蛋白表达上调。低剂量阿司匹林抑制BT549和4T1-Luc细胞的外泌体释放,并减轻BC细胞外泌体对NK细胞增殖的抑制作用。此外,敲低Rab27a降低了BC细胞中外泌体相关和分泌相关基因的蛋白水平,进一步增强了阿司匹林对NK细胞增殖的促进作用,而过表达Rab27a则产生相反效果。阿司匹林以10 Gy的放疗剂量联合使用,以增强放疗耐受性BC细胞(BT549R和4T1-LucR)的放疗敏感性。动物实验也证实,阿司匹林可促进放疗对癌细胞的杀伤作用,并显著抑制肿瘤生长。
Breast cancer (BC) seriously threatens women's health. Aspirin plays a key role in the treatment and prognosis of BC.
To explore the effect of low-dose aspirin on BC radiotherapy through the mechanism of exosomes and natural killer (NK) cells.
BC cells were injected into the left chest wall to establish a BC model in nude mice. Tumor morphology and size were observed. Immunohistochemical staining for Ki-67 was used to observe the proliferation of tumor cells. TUNEL was used to detect the apoptosis of cancer cells. Protein levels of exosomal biogenesis- and secretion-related genes (Rab 11, Rab27a, Rab27b, CD63, and Alix) were detected by Western blot. Flow cytometry was used to detect apoptosis. Transwell assays were used to detect cell migration. A clonogenic assay was used to detect cell proliferation. Exosomes of BT549 and 4T1-Luc cells were extracted and observed by electron microscopy. After the coculture of exosomes and NK cells, the activity of NK cells was detected by CCK-8.
The protein expression of genes related to exosomal genesis and secretion (Rab 11, Rab27a, Rab27b, CD63, and Alix) in BT549 and 4T1-Luc cells was upregulated under radiotherapy treatment. Low doses of aspirin inhibited exosome release from BT549 and 4T1-Luc cells and alleviated the inhibitory effect of BC cell exosomes on NK cell proliferation. In addition, knocking down Rab27a reduced the protein levels of exosome-related and secretion-related genes in BC cells, further enhancing the promotive effect of aspirin on NK cell proliferation, while overexpressing Rab27a had the opposite effect. Aspirin was combined at a radiotherapeutic dose of 10 Gy to enhance the radiotherapy sensitivity of radiotherapy-tolerant BC cells (BT549R and 4T1-LucR). Animal experiments have also verified that aspirin can promote the killing effect of radiotherapy on cancer cells and significantly inhibit tumor growth.
Low doses of aspirin can inhibit the release of BC exosomes induced by radiotherapy and weaken their inhibition of NK cell proliferation, promoting radiotherapy resistance.
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