CAR-T(CAR-T)细胞疗法在非肿瘤性疾病中的应用
Chimeric antigen receptor T (CAR-T) cell therapy in non-oncological diseases.
CAR-T(CAR-T)细胞在血液系统恶性肿瘤中的应用推动了这种免疫治疗形式的显著进展。
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Deciphering the role of glycolipids as emerging therapeutic targets in EMT-driven cancer progression.
Deciphering the role of glycolipids as emerging therapeutic targets in EMT-driven cancer progression.
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上皮-间质转化(EMT)是一个复杂且动态的细胞过程,在此期间上皮细胞失去其极性和细胞黏附能力,随后表达间充质干细胞样表型,包括侵袭性增加、迁移、对程序性细胞死亡的抵抗以及细胞外基质成分的合成。尽管迄今为止已有若干研究揭示了驱动EMT的复杂信号通路和重要转录调控因子,但糖脂现正逐渐成为EMT转化的重要调节因子。糖脂组成的改变激活多种生长因子信号网络,最终促进EMT并推动肿瘤发展和转移。尽管如此,我们对于在EMT过程中糖脂重塑如何在时间和空间上发生变化,以及这些变化如何影响肿瘤微环境,仍存在很大空白。酶抑制剂、单克隆抗体、基于糖脂的疫苗、合成类似物、CRISPR Cas9和CAR-T 细胞疗法是一些正在研究的治疗策略,它们有潜力破坏糖脂驱动的EMT信号级联并阻碍肿瘤进展。
总体而言,这些治疗手段已成为抑制糖脂驱动的EMT信号和减缓转移性侵袭的有前景的候选方案。糖脂表达谱的改变可能作为EMT分子状态和转移潜力的有价值生物标志物。捕捉这些表达模式可能有助于患者分层、早期诊断以及新型治疗靶点的识别。本综述聚焦于利用糖脂调控EMT的最新进展。本文还讨论了潜在的治疗意义,为癌症治疗带来新的维度。
Epithelial-to-mesenchymal transition (EMT) is a complex and dynamic cellular process during which epithelial cells lose their polarity and cell adhesion capabilities and subsequently express mesenchymal stem cell-like phenotype, including increased invasiveness, migration, resistance to programmed cell death, and synthesis of extracellular matrix components. Although several studies to date have demonstrated the intricate signalling pathways and important transcriptional regulators that drive EMT, glycolipids are now emerging as a significant modulator of the EMT transition. Alterations in glycolipid composition activate various growth factor signalling networks, which ultimately promote EMT and facilitate tumor development and metastasis. Despite this, there are still big gaps in our understanding of how glycolipid remodelling changes through time and space in the process of EMT and how these changes impact on the tumor microenvironment.
Enzyme inhibitors, monoclonal antibodies, glycolipid-based vaccines, synthetic analogues, CRISPR Cas9, and CAR-T cell therapies are some of the therapeutic strategies under study that have the potential to disrupt the glycolipid-driven EMT-signalling cascade and hinder tumor progression. Collectively, these therapeutic treatments have emerged as intriguing candidates for inhibiting glycolipid-driven EMT signalling and slowing metastatic invasion.
The modified expression profiles of glycolipids may serve as valuable biomarkers for the molecular status of EMT and metastatic potential. Capturing these expression patterns may enable patient stratification, early diagnosis, and the identification of novel therapeutic targets. This review aims on recent progress in the use of glycolipid modulation of EMT. Potential therapeutic implications are also discussed here, to bring a new dimension to the cancer therapy.
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