Construction method and application of pancreatic ductal cancer state evaluation model

A technology for pancreatic ductal carcinoma and status assessment, applied in the fields of genetic testing and bioinformatics, can solve the problems of insufficient analysis range, single omics, and few genes

Pending Publication Date: 2020-10-23
上海市生物医药技术研究院 +1
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Problems solved by technology

Gene chip technology, by hybridizing with a set of nucleic acid probes of known sequence for nucleic acid sequence determination, realizes high-throughput parallelization, but the disadvantages are that the repeatability and sensitivity need to be enhanced, and the analysis range is not wide enough
Next-generation sequencing technology, also known as next-generation sequencing technology (next-generation sequencing, NGS), is different from the first-generation sequencing technology. It achieves high-throughput parallel sequencing through in vitro fragment amplification and sequencing while synthesizing. The main disadvantages are read length
2) Detection and evaluation content is relatively single, with limited functions
At present, due to gene collection and screening capabilities and sequencing costs, the same marker detection scheme covers relatively few genes. In practical applications, single site or small fragment mutations are...

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  • Construction method and application of pancreatic ductal cancer state evaluation model
  • Construction method and application of pancreatic ductal cancer state evaluation model

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Embodiment Construction

[0236] The present invention is further elaborated below in conjunction with embodiment and accompanying drawing. It should be understood that these examples are only used to illustrate the present invention, not to limit the scope of the present invention. Without departing from the spirit and scope of the concept of the present invention, changes and advantages conceivable by those skilled in the art are all included in the present invention, and the appended claims and equivalent contents are the protection scope.

[0237] The embodiments of the present invention are applied to the whole process of constructing pancreatic ductal carcinoma state evaluation model and panel design, and the present invention will be further described in detail in conjunction with specific examples. It should be understood that the following examples are only used to illustrate the present invention and not to limit the present invention range. Specific steps are as follows:

[0238] S2.1 Acqu...

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Abstract

The invention relates to the field of gene detection and bioinformatics and discloses application of a complex disease state evaluation method constructed based on high-throughput sequencing data andclinical phenotypes in a pancreatic ductal carcinoma state evaluation model. The invention also provides a method for mining pancreatic ductal cancer complex disease markers based on transcriptome data, exon group/genome data and clinical phenotypes, designs a calculation method for constructing a pancreatic ductal cancer state evaluation model by integrating high-throughput sequencing data and clinical phenotypes, screens out biomarkers related to pancreatic ductal cancer and creates the corresponding disease state evaluation model. The markers having both accuracy and mechanism interpretability are constructed through the method, and can be used for pancreatic ductal cancer prognosis evaluation, treatment effect prediction, assistant decision making of treatment schemes and the like.

Description

technical field [0001] The present invention relates to the technical fields of gene detection and bioinformatics, and relates to a construction method and application of a pancreatic ductal carcinoma state assessment model, in particular to a method and application for constructing a pancreatic ductal carcinoma state assessment model based on high-throughput sequencing data and clinical phenotypes , and related detection panel design and implementation application cases. Background technique [0002] The first-generation sequencing technology obtains the base information at a specific position of the sequence through the dideoxy terminal termination method or chemical cleavage method, and reads the nucleic acid sequence by electrophoresis and development. Gene chip technology, by hybridizing with a set of nucleic acid probes of known sequences for nucleic acid sequence determination, has achieved high-throughput parallelization. The disadvantages are that the repeatability ...

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Application Information

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IPC IPC(8): G16H50/70G16H10/20G16B20/20G16B20/10G06Q10/04G06N3/12
CPCG16H50/70G16H10/20G16B20/20G16B20/10G06Q10/04G06N3/126Y02A90/10
Inventor 戴文韬李园园吴柏旭程翎刘继翔
Owner 上海市生物医药技术研究院
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