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解读急性髓系白血病:临床医生功能分析指南

Decoding Acute Myeloid Leukemia: A Clinician's Guide to Functional Profiling.

作者信息

Iyer Prasad, Jasdanwala Shaista Shabbir, Wang Yuhan, Bhatia Karanpreet, Bhatt Shruti

机构信息

Children's Blood and Cancer Centre, KK Women's and Children's Hospital, Singapore 229899, Singapore.

Duke-NUS Medical School, Singapore 169857, Singapore.

出版信息

Diagnostics (Basel). 2024 Nov 14;14(22):2560. doi: 10.3390/diagnostics14222560.

Abstract

Acute myeloid leukemia (AML) is a complex clonal disorder characterized by clinical, genetic, metabolomic, and epigenetic heterogeneity resulting in the uncontrolled proliferation of aberrant blood-forming precursor cells. Despite advancements in the understanding of the genetic, metabolic, and epigenetic landscape of AML, it remains a significant therapeutic challenge. Functional profiling techniques, such as BH3 profiling (BP), gene expression profiling (GEP), proteomics, metabolomics, drug sensitivity/resistance testing (DSRT), CRISPR/Cas9, and RNAi screens offer valuable insights into the functional behavior of leukemia cells. BP evaluates the mitochondrial response to pro-apoptotic BH3 peptides, determining a cell's apoptotic threshold and its reliance on specific anti-apoptotic proteins. This knowledge can pinpoint vulnerabilities in the mitochondria-mediated apoptotic pathway in leukemia cells, potentially informing treatment strategies and predicting therapeutic responses. GEP, particularly RNA sequencing, evaluates the transcriptomic landscape and identifies gene expression alterations specific to AML subtypes. Proteomics and metabolomics, utilizing mass spectrometry and nuclear magnetic resonance (NMR), provide a detailed view of the active proteins and metabolic pathways in leukemia cells. DSRT involves exposing leukemia cells to a panel of chemotherapeutic and targeted agents to assess their sensitivity or resistance profiles and potentially guide personalized treatment strategies. CRISPR/Cas9 and RNAi screens enable systematic disruption of genes to ascertain their roles in leukemia cell survival and proliferation. These techniques facilitate precise disease subtyping, uncover novel biomarkers and therapeutic targets, and provide a deeper understanding of drug-resistance mechanisms. Recent studies utilizing functional profiling have identified specific mutations and gene signatures associated with aggressive AML subtypes, aberrant signaling pathways, and potential opportunities for drug repurposing. The integration of multi-omics approaches, advances in single-cell sequencing, and artificial intelligence is expected to refine the precision of functional profiling and ultimately improve patient outcomes in AML. This review highlights the diverse landscape of functional profiling methods and emphasizes their respective advantages and limitations. It highlights select successes in how these methods have further advanced our understanding of AML biology, identifies druggable targets that have improved outcomes, delineates challenges associated with these techniques, and provides a prospective view of the future where these techniques are likely to be increasingly incorporated into the routine care of patients with AML.

摘要

急性髓系白血病(AML)是一种复杂的克隆性疾病,其特征在于临床、遗传、代谢组学和表观遗传学的异质性,导致异常造血前体细胞不受控制地增殖。尽管在对AML的遗传、代谢和表观遗传学格局的理解方面取得了进展,但它仍然是一个重大的治疗挑战。功能分析技术,如BH3分析(BP)、基因表达谱分析(GEP)、蛋白质组学、代谢组学、药物敏感性/耐药性测试(DSRT)、CRISPR/Cas9和RNA干扰筛选,为白血病细胞的功能行为提供了有价值的见解。BP评估线粒体对促凋亡BH3肽的反应,确定细胞的凋亡阈值及其对特定抗凋亡蛋白的依赖性。这些知识可以找出白血病细胞中线粒体介导的凋亡途径中的脆弱点,可能为治疗策略提供信息并预测治疗反应。GEP,特别是RNA测序,评估转录组格局并识别AML亚型特有的基因表达改变。蛋白质组学和代谢组学利用质谱和核磁共振(NMR),提供白血病细胞中活性蛋白和代谢途径的详细视图。DSRT包括将白血病细胞暴露于一组化疗药物和靶向药物中,以评估它们的敏感性或耐药性谱,并可能指导个性化治疗策略。CRISPR/Cas9和RNA干扰筛选能够系统地破坏基因,以确定它们在白血病细胞存活和增殖中的作用。这些技术有助于精确的疾病亚型分类,发现新的生物标志物和治疗靶点,并更深入地了解耐药机制。最近利用功能分析的研究已经确定了与侵袭性AML亚型、异常信号通路以及药物重新利用的潜在机会相关的特定突变和基因特征。多组学方法的整合、单细胞测序的进展以及人工智能有望提高功能分析的精度,并最终改善AML患者的治疗结果。这篇综述强调了功能分析方法的多样化格局,并强调了它们各自的优点和局限性。它突出了这些方法在如何进一步推进我们对AML生物学的理解方面取得的一些成功,确定了改善治疗结果的可药物靶向靶点,描述了与这些技术相关的挑战,并展望了未来这些技术可能会越来越多地纳入AML患者的常规护理中的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d3a6/11593197/c0feda74c592/diagnostics-14-02560-g001.jpg

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