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临床试验/NCT07660627
NCT07660627招募中不适用

Determination of Minimal Residual Disease by Deep ctDNA Sequencing.

Masaryk Memorial Cancer Institute1 个研究点 分布在 1 个国家目标入组 34 人开始时间: 2022年8月22日最近更新:
适应症
干预措施

试验速览

阶段
不适用
状态
招募中
入组人数
34
试验地点
1

研究概览

简要总结

Preoperative neoadjuvant chemotherapy is the standard treatment for locally advanced gastrointestinal tumours. However, not all patients respond to preoperative treatment. Early identification of progression during neoadjuvant chemotherapy or diagnosis of early disease relapse during adjuvant treatment is essential to modify the treatment strategy. The aim of this project is to validate ctDNA as a biomarker of molecular relapse/progression of disease.

详细描述

Neoadjuvant chemotherapy is the standard of care for locally advanced gastrointestinal tumors. However, not all patients respond to preoperative treatment. Early identification of disease progression during neoadjuvant chemotherapy or diagnosis of early disease relapse during adjuvant therapy is essential for modifying the treatment strategy. The aim of the project is to validate ctDNA as a molecular biomarker of disease relapse/progression.

The persistence of tumor cells after primary treatment of cancer is a key prognostic indicator of the disease's future course. In solid tumors, minimal residual disease (MRD) may involve tumor cells in the blood, small metastases in the body, or a small portion of the primary tumor that remains after treatment. Detection of MRD at a stage when the tumor cannot be detected by morphological imaging techniques is becoming an important diagnostic indicator that could better stratify patients after primary treatment in the future. MRD determination should thus serve in the future both to indicate further treatment and to monitor treatment response. For the successful clinical application of MRD determination, it is crucial to establish a sufficiently sensitive and specific method based on the detection of circulating tumor DNA (ctDNA). Tumor ctDNA is a component of circulating free DNA (cfDNA), which is released into the plasma from apoptotic or necrotic cells in the form of fragments with an average length of approximately 170 bp. The release of DNA from cells into the bloodstream can be influenced by a number of factors, which is reflected in the high variability of total cfDNA concentration, which can range from 1 to 100,000 fragments per milliliter of plasma. Therefore, to quantify MRD, it is crucial to determine both the total concentration of cfDNA and the proportion of tumor ctDNA. To reliably distinguish tumor ctDNA from non-tumor cfDNA, the detection of mutations identified in the primary tumor is currently used. For this purpose, PCR or digital PCR detecting specific mutations using fluorescent probes can be used. An alternative to PCR is mutation detection using next-generation sequencing (NGS), which allows for the detection of multiple different mutations in parallel. A disadvantage of MRD determination using commercial NGS kits designed for liquid biopsies is the high financial cost and the time-consuming preparation of sequencing libraries. We hypothesize that deep sequencing of cfDNA targeting mutations identified in the primary tumor can significantly increase both the specificity and sensitivity of MRD detection from liquid biopsies. Deep sequencing of 2-3 genomic regions with known mutations should enable the parallel detection of MRD in multiple patients while reducing the cost of this type of testing compared to commercially available options.

研究设计

研究类型
Interventional
分配方式
Non Randomized
干预模型
Parallel
主要目的
Diagnostic
盲法
None

入排标准

性别
All
接受健康志愿者

入选标准

  • Consent to participate in the study
  • Patients with esophageal, gastric, or pancreatic cancer, stage 0-2
  • Patients with locally advanced, potentially operable disease treated with systemic perioperative chemotherapy or chemoradiotherapy
  • Patients with metastatic disease treated with first- to third-line palliative systemic therapy

排除标准

  • not specified

研究组 & 干预措施

Interventional

Experimental

Participants with locally advanced potentially resectable esophageal, gastric, or pancreatic cancer receiving neoadjuvant/perioperative treatment will undergo serial blood sampling for plasma isolation and circulating tumor DNA (ctDNA) analysis. Samples will be collected prior to initiation of neoadjuvant therapy, at the time of surgery, and subsequently at approximately 3-month intervals for 1-2 years after surgery or until disease progression. ctDNA analyses will be performed using a targeted next-generation sequencing (NGS) approach to evaluate longitudinal changes in tumor-specific genomic alterations and their association with treatment response and disease recurrence.

干预措施: NGS sequencing of mutations selected based on sequencing of primary tumors (Diagnostic Test)

Control

Active Comparator

Participants with esophageal, gastric, or pancreatic cancer receiving first-line palliative systemic therapy will undergo serial blood sampling for plasma isolation and ctDNA analysis. Samples will be collected prior to initiation of systemic treatment and subsequently at approximately 3-month intervals during first-line therapy. ctDNA analyses will be performed using the same targeted NGS methodology to assess longitudinal changes in tumor-specific genomic alterations during systemic treatment.

干预措施: NGS sequencing of mutations selected based on sequencing of primary tumors (Diagnostic Test)

研究者

申办方类型
Other
责任方
Sponsor

研究点 (1)

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