Deep sequencing for minimal residual disease detection in Acute Lymphoblastic Leu
Deep sequencing for minimal residual disease detection in Acute Lymphoblastic Leu
批准号:
9263895
负责人:
Harlan S. Robins
金额:
$64.84万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-05-19 至 2019-04-30
关键词:
AcuteAcute Lymphocytic LeukemiaAdoptionAftercareBiological AssayBone MarrowCaringChild SupportClinicalClinical SensitivityClinical TrialsClonal EvolutionComplexDataDetectionDetection of Minimal Residual DiseaseDevelopmentDiagnosisDiagnosticDiseaseDisease OutcomeEuropeEvaluationFlow CytometryGene RearrangementGoalsGoldHematopathologyHigh-Throughput Nucleotide SequencingImmunoglobulinsIndividualLaboratoriesManuscriptsMeasurementMeasuresMethodsMolecularNeoadjuvant TherapyOutcomePatient-Focused OutcomesPatientsPediatric Oncology GroupPreparationReceptor GeneReceptors, Antigen, B-CellResearch InfrastructureResidual NeoplasmRunningSamplingSensitivity Training GroupsSensitivity and SpecificitySpecificityStandardizationT-Cell Receptor GenesT-LymphocyteTestingTimeUnited StatesUniversitiesValidationWashingtonWood materialbasechemotherapyclinical diagnosticsclinically significantcohortcostdeep sequencingdesignimmunoglobulin receptorimprovedlymphoid neoplasmnext generation sequencingpatient stratificationpublic health relevancerelapse predictionstandard of caretechnology validationtranslational impact
中文摘要
描述(申请人提供):急性淋巴细胞性白血病(ALL)是一种侵袭性的未成熟淋巴样肿瘤。在过去的几十年里,这些患者的疾病结局有了实质性的改善[3]。在一定程度上,这一改善是由于根据微小残留病(MRD)的评估,加强了对需要额外治疗的患者的识别。目前,MRD的评估是通过使用患者特有的分子分析(主要在欧洲)和/或多参数流式细胞术(MPFC)(通常在美国)来实现的。目前,以统一的方式执行这些办法是复杂和具有挑战性的。对MRD的个性化分子评估受到大型机构基础设施要求的限制,因为每个患者的分子分析必须单独设计和验证。相比之下,多参数流式细胞术很难标准化,导致质量不同。虽然很明显,MRD I对于指导针对患者的护理很重要,但目前的方法并不牢固,无法持续地实现这一目标。在一个初步项目中,来自正在进行的T-ALL儿童肿瘤组(COG)试验AALL0434[1]的43对治疗前后样本,我们证明了T细胞受体基因重排的高通量测序增强了对极低水平MRD的检测,提高了多参数流式细胞术的灵敏度和特异度,而不需要复杂的机构基础设施来个性化针对最小残留疾病的高灵敏度分子评估。我们发现,高通量测序可以在所有多参数流式细胞术识别疾病的患者中识别MRD。然而,测序也允许以大约10倍的更高灵敏度检测MRD。自那以后,我们已经完成了对来自COG试验AALL0932(手稿正在准备中)的99名B系急性淋巴细胞性白血病患者的分析。在这项研究中,我们还发现,免疫球蛋白受体基因重排的下一代测序可以提供对MRD的增强检测。这些数据引发了几个问题。首先,这些发现的临床特异性和敏感性是什么?第二,下一代测序在多大程度上适合临床实验室的常规实施?在这项建议中,我们应用高通量测序来敏感和全面地评估B和T系ALL患者的MRD。
英文摘要
DESCRIPTION (provided by applicant): Acute lymphoblastic leukemia (ALL) is an aggressive immature lymphoid neoplasm. Over the last couple of decades, there has been substantial improvement in disease outcomes for these patients [3]. In part, this improvement is due to enhanced identification of patients requiring additional therapy based on the assessment of minimal residual disease (MRD). Currently, assessment of MRD is achieved through the use of either patient-specific molecular assays (predominantly in Europe), and/or multi-parametric flow cytometry (mpFC), (commonly in the US). At present, implementation of these approaches in a uniform manner is complex and challenging. Individualized molecular assessment of MRD is limited by requirements for a large institutional infrastructure, as molecular assays for each patient must be individually-designed and validated. By contrast, multi-parametric flow cytometry is difficult to standardize, resulting in disparate quality. While it is clear that MRD i important for guiding patient-specific care, current approaches are not robust to achieve this goal consistently. In a preliminary project involving 43 paired pre- and post-treatment samples from an ongoing T-ALL Children's Oncology Group (COG) trial AALL0434 [1], we demonstrate that high-throughput sequencing of T-cell receptor gene rearrangements enhanced detection of very low-level MRD, improving upon the sensitivity and specificity of multi-parametric flow cytometry, without requiring the complex institutional infrastructure required to individualize high-sensitivity molecular evaluation for minimal residual disease. We found that high-throughput sequencing could identify MRD in all patients in whom multi-parametric flow cytometry identified disease. However, sequencing also permitted detection of MRD at a higher sensitivity of approximately 10-fold. We have since completed analysis of another cohort of 99 patients with B-lineage acute lymphoblastic leukemia derived from COG trial AALL0932 (manuscript in preparation). In this study, we also found that next-generation sequencing of immunoglobulin receptor gene rearrangements could provide enhanced detection of MRD. Several questions are raised by these data. First, what is the clinical specificity and sensitivityof these findings? Second, to what extent is next-generation sequencing suitable for routine implementation in the clinical laboratory? In this proposal, we apply high-throughput sequencing to sensitively and comprehensively assess MRD in patients with B- and T-lineage ALL.
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财政年份:2014
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负责人:Harlan S. Robins
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财政年份:--
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海外基金