Michelle Boisvert, Ashwyn Perera, Alexandra L. Condurat, John Jeang, Jessica W. Tsai, Dana Novikov, Kevin Zhou, Madison Chacon, Jeromy DiGiacomo, Rushil Kumbhani, Dayle Wang, Michael D. Taylor, Jordan R. Hansford, Louise Ludlow, Nada Jabado, Keith L. Ligon, Rameen Beroukhim, Pratiti Bandopadhayay, David T.W. Jones
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Thus, a deeper understanding of the molecular processes involved in these tumors is required to develop therapeutic strategies that are effective against their disease mechanisms. To better understand the cellular behaviors of this heterogenous group of tumors, we have employed single-cell and single-nuclei RNA sequencing technologies to analyze a large-scale dataset (>250,000 cells) of pLGGs. Analysis of this data identified a heterogenous population of cell types and cell states, detecting mature and progenitor-like astrocytes and oligodendrocytes, as well as cells exhibiting senescence or cycling programs. Moreover, we identify a significant immune infiltrate, comprised primarily of microglia. In addition to heterogeneity within pLGG tumors, heterogeneity between LGG subtypes represents another layer that stratifies pLGG biology. We performed a compositional analysis of the cell types present in these tumors and compared transcription signatures and gene expression programs across shared cellular populations of histologically and genetically distinct pLGGs. Finally, we optimized our integration and batch correction analyses by using external 293T cells as spike in controls during our single-cell and single-nuclei data generation steps to determine the most suitable method for batch-effect removal. Our analysis of human pLGGs at the single-cell and single-nuclei resolution provides critical insight into the heterogenous biological activities that constitute these tumors. Citation Format: Michelle Boisvert, Ashwyn Perera, Alexandra L. Condurat, John Jeang, Jessica W. Tsai, Dana Novikov, Kevin Zhou, Madison Chacon, Jeromy DiGiacomo, Rushil Kumbhani, Dayle Wang, Michael D. Taylor, Jordan R. Hansford, Louise Ludlow, Nada Jabado, Keith L. Ligon, Rameen Beroukhim, Pratiti Bandopadhayay, David T.W. Jones. 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To better understand the cellular behaviors of this heterogenous group of tumors, we have employed single-cell and single-nuclei RNA sequencing technologies to analyze a large-scale dataset (>250,000 cells) of pLGGs. Analysis of this data identified a heterogenous population of cell types and cell states, detecting mature and progenitor-like astrocytes and oligodendrocytes, as well as cells exhibiting senescence or cycling programs. Moreover, we identify a significant immune infiltrate, comprised primarily of microglia. In addition to heterogeneity within pLGG tumors, heterogeneity between LGG subtypes represents another layer that stratifies pLGG biology. We performed a compositional analysis of the cell types present in these tumors and compared transcription signatures and gene expression programs across shared cellular populations of histologically and genetically distinct pLGGs. Finally, we optimized our integration and batch correction analyses by using external 293T cells as spike in controls during our single-cell and single-nuclei data generation steps to determine the most suitable method for batch-effect removal. Our analysis of human pLGGs at the single-cell and single-nuclei resolution provides critical insight into the heterogenous biological activities that constitute these tumors. Citation Format: Michelle Boisvert, Ashwyn Perera, Alexandra L. Condurat, John Jeang, Jessica W. Tsai, Dana Novikov, Kevin Zhou, Madison Chacon, Jeromy DiGiacomo, Rushil Kumbhani, Dayle Wang, Michael D. Taylor, Jordan R. Hansford, Louise Ludlow, Nada Jabado, Keith L. Ligon, Rameen Beroukhim, Pratiti Bandopadhayay, David T.W. Jones. Understanding the transcriptional heterogeneity of pediatric low-grade gliomas and its implication for tumor pathophysiology [abstract]. 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引用次数: 0
摘要
小儿低级别胶质瘤(pLGGs)是儿童中最常见的脑肿瘤,由不同位置、组织学亚型、发病年龄和临床行为的异质性肿瘤组成。肿瘤通常对化疗或放射治疗有反应,但它们可以在一段时间的静止后重新生长,需要进一步的治疗。因此,需要更深入地了解这些肿瘤的分子过程,以制定有效对抗其疾病机制的治疗策略。为了更好地了解这种异质性肿瘤的细胞行为,我们采用单细胞和单核RNA测序技术分析了pLGGs的大规模数据集(>250,000个细胞)。对这些数据的分析确定了细胞类型和细胞状态的异质性群体,检测成熟和祖细胞样星形胶质细胞和少突胶质细胞,以及表现出衰老或循环程序的细胞。此外,我们发现了一个重要的免疫浸润,主要由小胶质细胞组成。除了pLGG肿瘤内部的异质性外,LGG亚型之间的异质性代表了pLGG生物学分层的另一层。我们对这些肿瘤中存在的细胞类型进行了组成分析,并比较了组织学和遗传学上不同的pLGGs共享细胞群的转录特征和基因表达程序。最后,我们优化了我们的整合和批量校正分析,在我们的单细胞和单核数据生成步骤中,我们使用外部293T细胞作为峰值对照,以确定最适合的批量效应去除方法。我们在单细胞和单核分辨率上对人类pLGGs进行分析,为了解构成这些肿瘤的异质性生物活性提供了关键的见解。引文格式:Michelle Boisvert, Ashwyn Perera, Alexandra L. Condurat, John Jeang, Jessica W. Tsai, Dana Novikov, Kevin Zhou, Madison Chacon, jerome DiGiacomo, Rushil Kumbhani, Dayle Wang, Michael D. Taylor, Jordan R. Hansford, Louise Ludlow, Nada Jabado, Keith L. Ligon, Rameen Beroukhim, Pratiti Bandopadhayay, David T.W. Jones。了解小儿低级别胶质瘤的转录异质性及其对肿瘤病理生理的意义[摘要]。AACR癌症研究特别会议论文集:儿童癌症的发现和创新-从生物学到突破性疗法;2025年9月25日至28日;波士顿,MA。费城(PA): AACR;癌症研究2025;85(18_Suppl_2): nr A014。
Abstract A014: Understanding the transcriptional heterogeneity of pediatric low-grade gliomas and its implication for tumor pathophysiology
Pediatric low-grade gliomas (pLGGs) are the most frequent brain tumors in children and comprise a heterogeneous group of tumors with different locations, histologic subtypes, ages at presentation, and clinical behavior. Tumors frequently respond to treatment with chemotherapy or radiation therapy, but they can regrow after a period of quiescence, requiring further therapy. Thus, a deeper understanding of the molecular processes involved in these tumors is required to develop therapeutic strategies that are effective against their disease mechanisms. To better understand the cellular behaviors of this heterogenous group of tumors, we have employed single-cell and single-nuclei RNA sequencing technologies to analyze a large-scale dataset (>250,000 cells) of pLGGs. Analysis of this data identified a heterogenous population of cell types and cell states, detecting mature and progenitor-like astrocytes and oligodendrocytes, as well as cells exhibiting senescence or cycling programs. Moreover, we identify a significant immune infiltrate, comprised primarily of microglia. In addition to heterogeneity within pLGG tumors, heterogeneity between LGG subtypes represents another layer that stratifies pLGG biology. We performed a compositional analysis of the cell types present in these tumors and compared transcription signatures and gene expression programs across shared cellular populations of histologically and genetically distinct pLGGs. Finally, we optimized our integration and batch correction analyses by using external 293T cells as spike in controls during our single-cell and single-nuclei data generation steps to determine the most suitable method for batch-effect removal. Our analysis of human pLGGs at the single-cell and single-nuclei resolution provides critical insight into the heterogenous biological activities that constitute these tumors. Citation Format: Michelle Boisvert, Ashwyn Perera, Alexandra L. Condurat, John Jeang, Jessica W. Tsai, Dana Novikov, Kevin Zhou, Madison Chacon, Jeromy DiGiacomo, Rushil Kumbhani, Dayle Wang, Michael D. Taylor, Jordan R. Hansford, Louise Ludlow, Nada Jabado, Keith L. Ligon, Rameen Beroukhim, Pratiti Bandopadhayay, David T.W. Jones. Understanding the transcriptional heterogeneity of pediatric low-grade gliomas and its implication for tumor pathophysiology [abstract]. In: Proceedings of the AACR Special Conference in Cancer Research: Discovery and Innovation in Pediatric Cancer— From Biology to Breakthrough Therapies; 2025 Sep 25-28; Boston, MA. Philadelphia (PA): AACR; Cancer Res 2025;85(18_Suppl_2): nr A014.
期刊介绍:
Cancer Research, published by the American Association for Cancer Research (AACR), is a journal that focuses on impactful original studies, reviews, and opinion pieces relevant to the broad cancer research community. Manuscripts that present conceptual or technological advances leading to insights into cancer biology are particularly sought after. The journal also places emphasis on convergence science, which involves bridging multiple distinct areas of cancer research.
With primary subsections including Cancer Biology, Cancer Immunology, Cancer Metabolism and Molecular Mechanisms, Translational Cancer Biology, Cancer Landscapes, and Convergence Science, Cancer Research has a comprehensive scope. It is published twice a month and has one volume per year, with a print ISSN of 0008-5472 and an online ISSN of 1538-7445.
Cancer Research is abstracted and/or indexed in various databases and platforms, including BIOSIS Previews (R) Database, MEDLINE, Current Contents/Life Sciences, Current Contents/Clinical Medicine, Science Citation Index, Scopus, and Web of Science.