γδ T 细胞调节小细胞肺癌中的抗肿瘤免疫
γδ T cells modulate anti-tumor immunity in small cell lung cancer.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Metal-based anticancer agents as immunogenic cell death inducers: the past, present, and future.
Metal-based anticancer agents as immunogenic cell death inducers: the past, present, and future.
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癌症是仅次于心脏病的世界上最致命的疾病。遗憾的是,即使在我们遭受Covid-19疫情肆虐之际,这一事实依然如此。虽然当前的化疗和放疗治疗策略已显著提高了患者的生存率,但疾病复发仍然对太多患者构成致命风险。肿瘤细胞未能从体内完全清除会增加转移和产生对当前治疗耐药的风险。免疫疗法代表了一种近几十年来帮助克服这些局限性的治疗方式。
然而,还需要进一步的进展。所谓的免疫原性细胞死亡(ICD)是最近发现的一种独特的细胞死亡方式,可能触发这一必要的进一步进展。ICD涉及作为下游效应刺激肿瘤特异性免疫反应。在某些治疗方式的促进下,经历ICD的细胞可以触发由IFN-γ介导的免疫反应,涉及细胞毒性T细胞(CTLs)和γδ T细胞,从而清除残留的肿瘤细胞。近年来,作为潜在ICD诱导剂进行测试的小分子数量显著增加。这些ICD诱导剂中有大量是金属基配合物。事实上,基于Pt、Ru、Ir、Cu和Au的抗癌金属药物现在已知可通过ICD引发针对肿瘤细胞的免疫反应。在利用组合策略和递送策略方面也取得了进展。在有利的情况下,这些方法已被证明能提高原本对ICD“沉默”的金属配合物的疗效。综合来看,合理设计的新型抗癌金属配合物能够作为ICD诱导剂,有望成为治疗肿瘤疾病的潜在新免疫疗法。本教程综述将使读者能够评估这一快速发展的领域的进展,从而为未来的进步奠定基础。
Cancer is the deadliest disease in the world behind heart disease. Sadly, this remains true even as we suffer the ravages of the Covid-19 pandemic. Whilst current chemo- and radiotherapeutic treatment strategies have significantly improved the patient survival rate, disease reoccurrence continues to pose a deadly risk for all too many patients.
Incomplete removal of tumour cells from the body increases the chances of metastasis and developing resistance against current treatments. Immunotherapy represents a therapeutic modality that has helped to overcome these limitations in recent decades.
However, further progress is needed. So-called immunogenic cell death (ICD) is a recently discovered and unique mode of cell death that could trigger this necessary further progress. ICD involves stimulation of a tumour-specific immune response as a downstream effect. Facilitated by certain treatment modalities, cells undergoing ICD can trigger the IFN-γ mediated immune response involving cytotoxic T cells (CTLs) and γδ T cells that eradicate residual tumour cells. In recent years, there has been a significant increase in the number of small-molecules being tested as potential ICD inducers. A large number of these ICD inducers are metal-based complexes.
In fact, anticancer metal drugs based on Pt, Ru, Ir, Cu, and Au are now known to give rise to an immune response against tumour cells as the result of ICD. Advances have also been made in terms of exploiting combinatorial and delivery strategies. In favourable cases, these approaches have been shown to increase the efficacy of otherwise ICD "silent" metal complexes.
Taken in concert, rationally designed novel anticancer metal complexes that can act as ICD inducers show promise as potential new immunotherapies for neoplastic disease. This Tutorial Review will allow the readers to assess the progress in this fast-evolving field thus setting the stage for future advances.
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