多形性胶质母细胞瘤合成致死模式的进展。

Advances in synthetic lethality modalities for glioblastoma multiforme.

作者信息

Richard Seidu A

机构信息

Department of Medicine, Princefield University, P. O. Box MA128, Volta Region, Ho, Ghana.

Institute of Neuroscience, Third Affiliated Hospital, Zhengzhou University, Zhengzhou, 450052, China.

出版信息

Open Med (Wars). 2024 Jun 10;19(1):20240981. doi: 10.1515/med-2024-0981. eCollection 2024.

Abstract

Glioblastoma multiforme (GBM) is characterized by a high mortality rate, high resistance to cytotoxic chemotherapy, and radiotherapy due to its highly aggressive nature. The pathophysiology of GBM is characterized by multifarious genetic abrasions that deactivate tumor suppressor genes, induce transforming genes, and over-secretion of pro-survival genes, resulting in oncogene sustainability. Synthetic lethality is a destructive process in which the episode of a single genetic consequence is tolerable for cell survival, while co-episodes of multiple genetic consequences lead to cell death. This targeted drug approach, centered on the genetic concept of synthetic lethality, is often selective for DNA repair-deficient GBM cells with restricted toxicity to normal tissues. DNA repair pathways are key modalities in the generation, treatment, and drug resistance of cancers, as DNA damage plays a dual role as a creator of oncogenic mutations and a facilitator of cytotoxic genomic instability. Although several research advances have been made in synthetic lethality modalities for GBM therapy, no review article has summarized these therapeutic modalities. Thus, this review focuses on the innovative advances in synthetic lethality modalities for GBM therapy.

摘要

多形性胶质母细胞瘤(GBM)具有高死亡率、对细胞毒性化疗和放疗高度耐药的特点,因其具有高度侵袭性。GBM的病理生理学特征是多种基因损伤,这些损伤使肿瘤抑制基因失活、诱导转化基因并过度分泌促生存基因,从而导致癌基因持续存在。合成致死是一种破坏性过程,其中单一基因后果的发生对细胞存活是可耐受的,而多种基因后果的共同发生则导致细胞死亡。这种以合成致死的基因概念为中心的靶向药物方法通常对DNA修复缺陷的GBM细胞具有选择性,对正常组织的毒性有限。DNA修复途径是癌症发生、治疗和耐药性的关键模式,因为DNA损伤既作为致癌突变的产生者,又作为细胞毒性基因组不稳定的促进者,发挥着双重作用。尽管在GBM治疗的合成致死模式方面已经取得了一些研究进展,但尚无综述文章总结这些治疗模式。因此,本综述重点关注GBM治疗中合成致死模式的创新进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3327/11167713/a9a55302b7a4/j_med-2024-0981-fig001.jpg

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