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:Molecular panorama of therapy resistance in prostate cancer: a pre-clinical and bioinformatics analysis for clinical translation.
Molecular panorama of therapy resistance in prostate cancer: a pre-clinical and bioinformatics analysis for clinical translation.
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前列腺癌(PCa)是一种前列腺的恶性疾病,早期无症状,晚期具有高度转移潜能。化疗和手术切除为PCa患者提供了良好的预后,但晚期和侵袭性形式的PCa,包括CRPC和AVPC,对治疗缺乏适当应答,因此患者预后恶化。在晚期阶段,PCa细胞对化疗和放疗的应答不能达到满意水平,因此出现治疗抵抗。PCa细胞的分子谱分析揭示,凋亡抑制、促生存自噬诱导和EMT诱导是癌细胞恶性程度升级和治疗抵抗发展的因素。PCa分子谱的失调,包括STAT3和PI3K/Akt上调、STAT3下调以及非编码RNA异常表达,是决定癌细胞对化疗应答的因素。由于PCa中耐药性的普遍存在,已提出在PCa治疗中采用联合治疗,包括抗癌药物与纳米治疗方法的共同使用。由于DNA损伤修复增加,PCa细胞诱导放射抵抗,而RelB过表达可阻止照射介导的细胞死亡。与化疗类似,纳米材料通过递送载荷、改善在PCa细胞中的蓄积以及靶向生存相关通路,在促进放射敏感性方面具有前景。就免疫治疗作为抑制PCa的新工具的出现而言,肿瘤细胞能够增加PD-L1表达并灭活NK细胞,从而介导免疫逃逸。已开展用于评估耐药相关基因的生物信息学分析。
Prostate cancer (PCa) is a malignant disorder of prostate gland being asymptomatic in early stages and high metastatic potential in advanced stages. The chemotherapy and surgical resection have provided favourable prognosis of PCa patients, but advanced and aggressive forms of PCa including CRPC and AVPC lack response to therapy properly, and therefore, prognosis of patients is deteriorated. At the advanced stages, PCa cells do not respond to chemotherapy and radiotherapy in a satisfactory level, and therefore, therapy resistance is emerged. Molecular profile analysis of PCa cells reveals the apoptosis suppression, pro-survival autophagy induction, and EMT induction as factors in escalating malignant of cancer cells and development of therapy resistance. The dysregulation in molecular profile of PCa including upregulation of STAT3 and PI3K/Akt, downregulation of STAT3, and aberrant expression of non-coding RNAs are determining factor for response of cancer cells to chemotherapy.
Because of prevalence of drug resistance in PCa, combination therapy including co-utilization of anti-cancer drugs and nanotherapeutic approaches has been suggested in PCa therapy. As a result of increase in DNA damage repair, PCa cells induce radioresistance and RelB overexpression prevents irradiation-mediated cell death.
Similar to chemotherapy, nanomaterials are promising for promoting radiosensitivity through delivery of cargo, improving accumulation in PCa cells, and targeting survival-related pathways. In respect to emergence of immunotherapy as a new tool in PCa suppression, tumour cells are able to increase PD-L1 expression and inactivate NK cells in mediating immune evasion. The bioinformatics analysis for evaluation of drug resistance-related genes has been performed.
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