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NF-κB 在肝细胞癌治疗中的多效性作用:分子谱、治疗化合物和纳米材料方法。

Multifaceted role of NF-κB in hepatocellular carcinoma therapy: Molecular landscape, therapeutic compounds and nanomaterial approaches.

机构信息

Institute of Pharmaceutical Research, GLA University, District-Mathura, U. P., India.

Department of Dentistry, Kut University College, Kut, Wasit, 52001, Iraq; Medical Laboratory Techniques Department, Al-Farahidi University, Baghdad, 10022, Iraq.

出版信息

Environ Res. 2023 Jul 1;228:115767. doi: 10.1016/j.envres.2023.115767. Epub 2023 Mar 24.

Abstract

The predominant kind of liver cancer is hepatocellular carcinoma (HCC) that its treatment have been troublesome difficulties for physicians due to aggressive behavior of tumor cells in proliferation and metastasis. Moreover, stemness of HCC cells can result in tumor recurrence and angiogenesis occurs. Another problem is development of resistance to chemotherapy and radiotherapy in HCC cells. Genomic mutations participate in malignant behavior of HCC and nuclear factor-kappaB (NF-κB) has been one of the oncogenic factors in different human cancers that after nuclear translocation, it binds to promoter of genes in regulating their expression. Overexpression of NF-κB has been well-documented in increasing proliferation and invasion of tumor cells and notably, when its expression enhances, it induces chemoresistance and radio-resistance. Highlighting function of NF-κB in HCC can shed some light on the pathways regulating progression of tumor cells. The first aspect is proliferation acceleration and apoptosis inhibition in HCC cells mediated by enhancement in expression level of NF-κB. Moreover, NF-κB is able to enhance invasion of HCC cells via upregulation of MMPs and EMT, and it triggers angiogenesis as another step for increasing spread of tumor cells in tissues and organs. When NF-κB expression enhances, it stimulates chemoresistance and radio-resistance in HCC cells and by increasing stemness and population of cancer-stem cells, it can provide the way for recurrence of tumor. Overexpression of NF-κB mediates therapy resistance in HCC cells and it can be regulated by non-coding RNAs in HCC. Moreover, inhibition of NF-κB by anti-cancer and epigenetic drugs suppresses HCC tumorigenesis. More importantly, nanoparticles are considered for suppressing NF-κB axis in cancer and their prospectives and results can also be utilized for treatment of HCC. Nanomaterials are promising factors in treatment of HCC and by delivery of genes and drugs, they suppress HCC progression. Furthermore, nanomaterials provide phototherapy in HCC ablation.

摘要

原发性肝癌主要为肝细胞癌(HCC),由于肿瘤细胞增殖和转移的侵袭性行为,其治疗一直是医生的棘手难题。此外,HCC 细胞的干性会导致肿瘤复发和血管生成。另一个问题是 HCC 细胞对化疗和放疗产生耐药性。基因组突变参与 HCC 的恶性行为,核因子-κB(NF-κB)已成为不同人类癌症中的致癌因子之一,其在核转位后与基因启动子结合,调节其表达。NF-κB 的过表达已被充分证明可增加肿瘤细胞的增殖和侵袭,特别是当其表达增强时,可诱导化疗耐药和放疗耐药。NF-κB 在 HCC 中的功能强调了调节肿瘤细胞进展的途径。第一个方面是通过增强 NF-κB 的表达水平,加速 HCC 细胞的增殖和抑制凋亡。此外,NF-κB 能够通过上调 MMPs 和 EMT 增强 HCC 细胞的侵袭能力,并触发血管生成,作为增加肿瘤细胞在组织和器官中扩散的另一个步骤。当 NF-κB 表达增强时,它会刺激 HCC 细胞的化疗耐药和放疗耐药,并通过增加肿瘤干细胞的干性和数量,为肿瘤的复发提供途径。NF-κB 的过表达介导了 HCC 细胞的治疗耐药性,它可以被 HCC 中的非编码 RNA 调控。此外,通过抗癌和表观遗传药物抑制 NF-κB 可抑制 HCC 肿瘤发生。更重要的是,纳米粒子被认为可以抑制癌症中的 NF-κB 轴,其前景和结果也可用于治疗 HCC。纳米材料是治疗 HCC 的有前途的因素,通过基因和药物的递送,它们可以抑制 HCC 的进展。此外,纳米材料还为 HCC 消融提供光疗。

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