Pediatric Glioma Models Provide Insights into Tumor Development and Future Therapeutic Strategies.

IF 2.3 4区 医学 Q2 DEVELOPMENTAL BIOLOGY Developmental Neuroscience Pub Date : 2024-01-01 Epub Date: 2023-05-12 DOI:10.1159/000531040
Amelia Foss, Manav Pathania
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Abstract

In depth study of pediatric gliomas has been hampered due to difficulties in accessing patient tissue and a lack of clinically representative tumor models. Over the last decade, however, profiling of carefully curated cohorts of pediatric tumors has identified genetic drivers that molecularly segregate pediatric gliomas from adult gliomas. This information has inspired the development of a new set of powerful in vitro and in vivo tumor models that can aid in identifying pediatric-specific oncogenic mechanisms and tumor microenvironment interactions. Single-cell analyses of both human tumors and these newly developed models have revealed that pediatric gliomas arise from spatiotemporally discrete neural progenitor populations in which developmental programs have become dysregulated. Pediatric high-grade gliomas also harbor distinct sets of co-segregating genetic and epigenetic alterations, often accompanied by unique features within the tumor microenvironment. The development of these novel tools and data resources has led to insights into the biology and heterogeneity of these tumors, including identification of distinctive sets of driver mutations, developmentally restricted cells of origin, recognizable patterns of tumor progression, characteristic immune environments, and tumor hijacking of normal microenvironmental and neural programs. As concerted efforts have broadened our understanding of these tumors, new therapeutic vulnerabilities have been identified, and for the first time, promising new strategies are being evaluated in the preclinical and clinical settings. Even so, dedicated and sustained collaborative efforts are necessary to refine our knowledge and bring these new strategies into general clinical use. In this review, we will discuss the range of currently available glioma models, the way in which they have each contributed to recent developments in the field, their benefits and drawbacks for addressing specific research questions, and their future utility in advancing biological understanding and treatment of pediatric glioma.

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小儿胶质瘤模型提供肿瘤发展和未来治疗策略的见解。
由于难以获得患者组织和缺乏具有临床代表性的肿瘤模型,对儿童胶质瘤的深入研究受到阻碍。然而,在过去的十年里,对精心策划的儿童肿瘤队列的分析已经确定了将儿童胶质瘤与成人胶质瘤分子分离的基因驱动因素。这些信息激发了一套新的强大的体外和体内肿瘤模型的开发,这些模型可以帮助确定儿科特异性致癌机制和肿瘤微环境的相互作用。对人类肿瘤和这些新开发的模型的单细胞分析表明,儿童胶质瘤源于时空离散的神经祖细胞群体,在这些群体中,发育程序变得失调。pHGGs还具有不同的共分离遗传和表观遗传学改变,通常伴随着肿瘤微环境中的独特特征。这些新工具和数据资源的开发使人们深入了解了这些肿瘤的生物学和异质性,包括识别不同的驱动突变集、发育受限的起源细胞、可识别的肿瘤进展模式、特征免疫环境以及正常微环境和神经程序的肿瘤劫持。随着共同努力扩大了我们对这些肿瘤的理解,新的治疗漏洞已经被发现,并且首次在临床前和临床环境中评估了有前景的新策略。即便如此,为了完善我们的知识并将这些新策略应用于临床,仍有必要进行专门和持续的合作。在这篇综述中,我们将讨论目前可用的神经胶质瘤模型的范围,它们各自对该领域最新发展的贡献方式,它们在解决特定研究问题方面的优缺点,以及它们在促进儿童神经胶质瘤的生物学理解和治疗方面的未来用途。
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来源期刊
Developmental Neuroscience
Developmental Neuroscience 医学-发育生物学
CiteScore
4.00
自引率
3.40%
发文量
49
审稿时长
>12 weeks
期刊介绍: ''Developmental Neuroscience'' is a multidisciplinary journal publishing papers covering all stages of invertebrate, vertebrate and human brain development. Emphasis is placed on publishing fundamental as well as translational studies that contribute to our understanding of mechanisms of normal development as well as genetic and environmental causes of abnormal brain development. The journal thus provides valuable information for both physicians and biologists. To meet the rapidly expanding information needs of its readers, the journal combines original papers that report on progress and advances in developmental neuroscience with concise mini-reviews that provide a timely overview of key topics, new insights and ongoing controversies. The editorial standards of ''Developmental Neuroscience'' are high. We are committed to publishing only high quality, complete papers that make significant contributions to the field.
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