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炎症性微核化是否是抗癌有丝分裂药物成功的关键?

Is inflammatory micronucleation the key to a successful anti-mitotic cancer drug?

机构信息

Department of Systems Biology, Harvard Medical School, Boston, MA, USA

Department of Systems Biology, Harvard Medical School, Boston, MA, USA.

出版信息

Open Biol. 2017 Nov;7(11). doi: 10.1098/rsob.170182.

Abstract

Paclitaxel is a successful anti-cancer drug that kills cancer cells in two-dimensional culture through perturbation of mitosis, but whether it causes tumour regression by anti-mitotic actions is controversial. Drug candidates that specifically target mitosis, including inhibitors of kinesin-5, AurkA, AurkB and Plk1, disappointed in the clinic. Current explanations for this discrepancy include pharmacokinetic differences and hypothetical interphase actions of paclitaxel. Here, we discuss post-mitotic micronucleation as a special activity of taxanes that might explain their higher activity in solid tumours. We review data showing that cells which exit mitosis in paclitaxel are highly micronucleated and suffer post-mitotic DNA damage, and that these effects are much stronger for paclitaxel than kinesin-5 inhibitors. We propose that post-mitotic micronucleation promotes inflammatory signalling via cGAS-STING and other pathways. In tumours, this signalling may recruit cytotoxic leucocytes, damage blood vessels and prime T-cell responses, leading to whole-tumour regression. We discuss experiments that are needed to test the micronucleation hypothesis, and its implications for novel anti-mitotic targets and enhancement of taxane-based therapies.

摘要

紫杉醇是一种成功的抗癌药物,它通过干扰有丝分裂在二维培养物中杀死癌细胞,但它是否通过抗有丝分裂作用导致肿瘤消退仍存在争议。包括驱动蛋白-5 抑制剂、AurkA、AurkB 和 Plk1 在内的专门针对有丝分裂的药物候选物在临床上令人失望。对于这种差异的当前解释包括药代动力学差异和紫杉醇假设的细胞间作用。在这里,我们讨论有丝分裂后微核形成作为紫杉烷的特殊活性,这可能解释它们在实体瘤中更高的活性。我们回顾了数据,表明紫杉醇中退出有丝分裂的细胞高度微核化,并遭受有丝分裂后 DNA 损伤,并且这些作用对于紫杉醇比驱动蛋白-5 抑制剂要强得多。我们提出,有丝分裂后微核化通过 cGAS-STING 和其他途径促进炎症信号。在肿瘤中,这种信号可能会募集细胞毒性白细胞,损伤血管并引发 T 细胞反应,导致整个肿瘤消退。我们讨论了需要进行的实验来测试微核形成假说,以及其对新型抗有丝分裂靶标和增强基于紫杉醇的治疗的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ec3c/5717346/a410b0bcba96/rsob-7-170182-g1.jpg

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