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临床试验/NCT05931055
NCT05931055尚未招募不适用

The Effectiveness of Liquid Biopsy in Differential Diagnosis of Benign and Malignant Ovarian Tumors and Early Screening of Epithelial Ovarian Cancer, and the Exploration of Invasive Mechanisms of Epithelial Ovarian Cancer

Peking Union Medical College Hospital0 个研究点目标入组 1,000 人开始时间: 2024年1月1日最近更新:
适应症

试验速览

阶段
不适用
状态
尚未招募
入组人数
1,000
主要终点
Fragment length

研究概览

简要总结

At present, there is a lack of effective screening methods. It is urgent to explore new non-invasive detection methods for early diagnosis of epithelial ovarian cancer and non-invasive differentiation methods for benign and malignant ovarian tumors.

Liquid biopsy technology has great potential for early screening of tumors. The fragmentation patterns of cfDNA fragments in plasma and the uneven coverage of the genome can indirectly reflect the state of gene expression regulation in vivo. Its characteristics mainly include copy number variation (CNV), Nucleosome footprint, fragment length and motif.

The number of proteins in a proteome can sometimes exceed the number of genomes. It includes "structural Proteomics" and "functional Proteomics". At present, research has explored the use of urinary protein biomarkers for early diagnosis of gastric cancer. "Deep Visual Proteomics (DVP)" reveals the mechanism driving tumor evolution and new therapeutic targets for tumors.

Using the currently mature low depth WGS sequencing technology, this study aims to explore its clinical application in the differentiation and early screening of epithelial ovarian cancer, as well as monitoring the course of epithelial ovarian cancer, including the detection of minimal residual lesions (MRD) and monitoring of recurrence (MOR). This study also explores the role of urine proteomics in the differentiation of benign and malignant ovarian tumors, early screening and invasiveness of epithelial ovarian cancer, and monitoring the course of epithelial ovarian cancer.

详细描述

At present, there is a lack of effective screening methods. Numerous studies and practices have shown that tumor screening and early diagnosis and treatment can effectively prolong the overall survival period of cancer patients and reduce the economic burden of the disease. The traditional early screening methods for tumors in clinical practice, including imaging screening, endoscopic screening, and tumor marker screening, generally have defects such as strong invasiveness, significant discomfort during the screening process, low accuracy (false negative, false positive), and poor compliance. Therefore, it is urgent to explore new non-invasive detection methods for early diagnosis of epithelial ovarian cancer and non-invasive differentiation methods for benign and malignant ovarian tumors.

Liquid biopsy technology, as a non-invasive new detection technology, has great potential for early screening of tumors. CfDNA is an important marker for liquid biopsy and has been widely used in non-invasive prenatal examinations and cancer liquid biopsy research. The fragmentation patterns of cfDNA fragments in plasma and the uneven coverage of the genome can indirectly reflect the state of gene expression regulation in vivo. Its characteristics mainly include copy number variation (CNV), Nucleosome footprint, fragment length and motif.

Proteome changes with different tissue and even environmental states. During transcription, a gene can be spliced in multiple mRNA forms, and a proteome is not a direct product of a genome. The number of proteins in a proteome can sometimes exceed the number of genomes. It includes "structural Proteomics" and "functional Proteomics". The former is mainly the study of protein expression models, including protein amino acid sequence, analysis and spatial structure analysis, type analysis and quantity determination; The latter mainly focuses on the study of protein functional patterns, including protein function and protein-protein interactions. At present, research has explored the use of urinary protein biomarkers for early diagnosis of gastric cancer. "Deep Visual Proteomics (DVP)" reveals the mechanism driving tumor evolution and new therapeutic targets for tumors.

There is ample evidence to support the diagnostic value of fragment omics research in tumors. Using the currently mature low depth WGS sequencing technology, this study aims to explore its clinical application in the differentiation and early screening of epithelial ovarian cancer, as well as monitoring the course of epithelial ovarian cancer, including the detection of minimal residual lesions (MRD) and monitoring of recurrence (MOR). In addition, there is currently no research on the use of urine proteomics in the differentiation and early screening of ovarian cancer. This study also explores the role of urine proteomics in the differentiation of benign and malignant ovarian tumors, early screening and invasiveness of epithelial ovarian cancer, and monitoring the course of epithelial ovarian cancer.

研究设计

研究类型
Observational
观察模型
Case Control
时间视角
Prospective

入排标准

年龄范围
18 Years 至 —(Adult, Older Adult)
性别
Female
接受健康志愿者

入选标准

  • Age ≥ 18 years old, female;
  • Suspicious or considering mass in the accessory area, requiring surgical treatment and obtaining pathology of ovarian tissue;
  • Having pelvic imaging evaluation results, including ultrasound, MRI, CT, or PET/CT;
  • Serum CA125 and HE4 tests are tested before surgery, and ROMA evaluation results is obtained;
  • Volunteer to participate in this research and sign an informed consent form; (6) Good compliance and regular follow-up.

排除标准

  • Patients with confirmed ovarian cancer who have undergone surgery and obtained histopathology;
  • Patients who have received chemotherapy or pelvic radiation therapy within 6 months prior to sample collection;
  • Researchers have confirmed patients with recurrent ovarian cancer, or ovarian cancer patients who have received chemotherapy and/or surgical treatment;
  • Contraindications for surgical evaluation and inability to obtain ovarian pathology or surgical pathological information;
  • Samples that do not meet the requirements for collecting and storing assessment reagent samples; Or contaminated or suspected contaminated samples;
  • Samples with missing, incomplete, and untraceable clinical information of corresponding patients;
  • Pregnant and lactating women;
  • Patients who cannot cooperate with examinations, have poor compliance, and cannot follow up regularly.

结局指标

主要结局

Fragment length

时间窗: 3 years follow-up after enrollment or till the end of research

Exploring the characteristics of cfDNA fragment length in patients with epithelial ovarian cancer

Motif

时间窗: 3 years follow-up after enrollment or till the end of research

Exploring the characteristics of cfDNA motif in patients with epithelial ovarian cancer

Copy number variation

时间窗: 3 years follow-up after enrollment or till the end of research

Exploring the characteristics of cfDNA copy number variation in patients with epithelial ovarian cancer

Nucleosome Footprint

时间窗: 3 years follow-up after enrollment or till the end of research

Exploring the characteristics of cfDNA nucleosome Footprint in patients with epithelial ovarian cancer

次要结局

  • Construction and validation a risk prediction model(3 years follow-up after enrollment or till the end of research)
  • urinary proteomics(3 years follow-up after enrollment or till the end of research)

研究者

申办方类型
Other
责任方
Sponsor

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The Effectiveness of Liquid Biopsy in Differential... | 临床试验