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胶质母细胞瘤 (GBM) 有效治疗的联合策略:现状与未来展望

英文原题:Combinatorial approaches to effective therapy in glioblastoma (GBM): Current status and what the future holds.

PubMed 2022/08/08(内容时间) Int Rev Immunol Q2 · IF 5.4(JCR 2025)

研究概要

这些强化治疗策略联合应用带来了适度的生存获益,且毒性可接受。

中文摘要

胶质母细胞瘤(GBM)具有侵袭性且易复发,原因多方面,包括生物学异质性、代谢信号通路异常、血脑屏障坚固、胶质瘤细胞干性导致其对标准疗法具有内在耐药、免疫抑制性肿瘤微环境、缺氧和新生血管生成;这些因素共同构成高度促肿瘤的环境。一旦这些因素相互影响形成连锁反应,仅靠当前以最大程度切除、放疗和替莫唑胺化疗为核心的标准治疗,便难以控制疾病。过去数十年,标准治疗方式使部分患者受益,但总生存期未取得显著改善。因此,亟需先进、多方面联合治疗策略。分子生物学进步、新型疗法和新型递送平台的发展,改变了胶质瘤治疗格局。长期研究已推动多种疗法出现,包括免疫检查点阻断、溶瘤病毒疗法、过继细胞治疗、纳米颗粒、对流增强递送(CED)和硼中子俘获治疗(BNCT);每种疗法都具有应对上述挑战的独特能力。近年来,研究者正采用创新联合策略,克服GBM细胞及其肿瘤微环境带来的多因素耐药。本综述讨论当前已用于及正在研究的GBM联合治疗策略,并总结截至目前累积的证据。 GBM是一种几乎会导致所有患者死亡的脑肿瘤。过去二十年来,手术、放疗和化疗等传统治疗已组合为标准方案。尽管这些积极治疗毒性尚可接受,但生存获益有限;绝大多数患者最终仍会复发并死亡。复发原因包括药物无法穿透血脑屏障、免疫抑制性肿瘤微环境、胶质瘤细胞干性、肿瘤异质性,以及缺氧和促血管生成因子增加。因此,开发GBM创新疗法迫在眉睫。近期,CAR-T细胞疗法、树突状细胞疫苗、免疫检查点阻断、溶瘤病毒、纳米颗粒及基因编辑/沉默等免疫治疗策略已在临床前及少数临床试验中显示前景。为提高这些新策略的疗效,研究者正在采用联合治疗,例如CAR-T细胞联合小分子药物、免疫检查点抑制剂或溶瘤病毒,以及纳米颗粒联合基因编辑、基因沉默或免疫检查点抑制剂。这些方案在临床前研究中结果令人鼓舞,部分试验也正在进行。本综述总结并详细讨论这些创新联合治疗方法。

展开英文摘要原文

The aggressive and recurrent nature of glioblastoma is multifactorial and has been attributed to its biological heterogeneity, dysfunctional metabolic signaling pathways, rigid blood-brain barrier, inherent resistance to standard therapy due to the stemness property of the gliomas cells, immunosuppressive tumor microenvironment, hypoxia and neoangiogenesis which are very well orchestrated and create the tumor's own highly pro-tumorigenic milieu. Once the relay of events starts amongst these components, eventually it becomes difficult to control the cascade using only the balanced contemporary care of treatment consisting of maximal resection, radiotherapy and chemotherapy with temozolamide. Over the past few decades, implementation of contemporary treatment modalities has shown benefit to some extent, but no significant overall survival benefit is achieved. Therefore, there is an unmet need for advanced multifaceted combinatorial strategies. Recent advances in molecular biology, development of innovative therapeutics and novel delivery platforms over the years has resulted in a paradigm shift in gliomas therapeutics. Decades of research has led to emergence of several treatment molecules, including immunotherapies such as immune checkpoint blockade, oncolytic virotherapy, adoptive cell therapy, nanoparticles, CED and BNCT, each with the unique proficiency to overcome the mentioned challenges, present research. Recent years are seeing innovative combinatorial strategies to overcome the multifactorial resistance put forth by the GBM cell and its TME. This review discusses the contemporary and the investigational combinatorial strategies being employed to treat GBM and summarizes the evidence accumulated till date. Glioblastoma is a form of brain tumor which typically leads to death in almost all patients. Over the last two decades, traditional treatment strategies such as surgery, radiotherapy and chemotherapy have been combined as standard therapy. Together, these aggressive treatment strategies have provided modest survival benefit with acceptable toxicity. However, relapse is the invariable norm resulting in death in the overwhelming majority of patients. Relapse occurs due to multiple factors such as inability of drugs to cross blood brain barrier, immunosuppressive tumor microenvironment, stemness nature of glioma cells, tumor heterogeneity and enhanced hypoxia and angiogenic factors. Therefore, there is an urgent need to develop an innovative treatment approach to treat glioblastoma. Recently, several treatment strategies known as immunotherapies including CAR T cell therapy, dendritic cell vaccines, immune checkpoints blockade and oncolytic virus, nano particles and gene editing/silencing technology have demonstrated promising results in preclinical and few clinical trials. Furthermore, to increase the efficacy of these novel strategies, combinatorial approaches are being implemented for the treatment. This includes CAR T cell therapy in combination with small molecules, immune checkpoint inhibitors and oncolytic virus and nanoparticles plus gene editing, silencing or immune checkpoints inhibitors. These treatments have shown exciting results in preclinical settings and few of these trials are in progress. The review summarizes these combinatorial novel approaches and discusses them in detail.

论文信息

作者
Asija S、Chatterjee A、Yadav S、Chekuri G、Karulkar A、Jaiswal AK、Goda JS、Purwar R
单位
Department of Biosciences & Bioengineering, Indian Institute of Technology, Mumbai, India.India
文献类型
综述
期刊
International reviews of immunology2022
原文标识
PubMed 35938932 · DOI 10.1080/08830185.2022.2101647