Aguilar-Morante Diana, Gómez-Cabello Daniel, Quek Hazel, Liu Tianqing, Hamerlik Petra, Lim Yi Chieh
Instituto de Biomedicina de Sevilla (IBiS), Hospital Universitario Virgen del Rocío/CSIC/Universidad de Sevilla, 41013 Sevilla, Spain.
QIMR Berghofer Medical Research Institute, Brisbane, QLD 4006, Australia.
Biomedicines. 2022 Jan 31;10(2):332. doi: 10.3390/biomedicines10020332.
Adult diffuse glioma, particularly glioblastoma (GBM), is a devastating tumor of the central nervous system. The existential threat of this disease requires on-going treatment to counteract tumor progression. The present outcome is discouraging as most patients will succumb to this disease. The low cure rate is consistent with the failure of first-line therapy, radiation and temozolomide (TMZ). Even with their therapeutic mechanism of action to incur lethal DNA lesions, tumor growth remains undeterred. Delivering additional treatments only delays the inescapable development of therapeutic tolerance and disease recurrence. The urgency of establishing lifelong tumor control needs to be re-examined with a greater focus on eliminating resistance. Early genomic and transcriptome studies suggest each tumor subtype possesses a unique molecular network to safeguard genome integrity. Subsequent seminal work on post-therapy tumor progression sheds light on the involvement of DNA repair as the causative contributor for hypermutation and therapeutic failure. In this review, we will provide an overview of known molecular factors that influence the engagement of different DNA repair pathways, including targetable vulnerabilities, which can be exploited for clinical benefit with the use of specific inhibitors.
成人弥漫性胶质瘤,尤其是胶质母细胞瘤(GBM),是一种侵袭性很强的中枢神经系统肿瘤。这种疾病带来的生存威胁需要持续治疗以对抗肿瘤进展。目前的治疗结果令人沮丧,因为大多数患者最终会死于这种疾病。低治愈率与一线治疗(放疗和替莫唑胺(TMZ))的失败一致。即使它们的作用机制是造成致命的DNA损伤,但肿瘤生长仍未得到抑制。进行额外的治疗只会延迟治疗耐受性和疾病复发这一不可避免的发展。需要重新审视建立终身肿瘤控制的紧迫性,更加关注消除耐药性。早期的基因组和转录组研究表明,每种肿瘤亚型都拥有独特的分子网络来维护基因组完整性。随后关于治疗后肿瘤进展的开创性研究揭示了DNA修复作为导致超突变和治疗失败的原因。在这篇综述中,我们将概述影响不同DNA修复途径参与的已知分子因素,包括可靶向的脆弱点,利用特定抑制剂可将其用于临床获益。