-
Partners · 2026Year7Moon1Day
正式发布|Flex × PandaPure™ 自动化蛋白表达与纯化解决方案
Read More -
article · 2026Year4Moon1Day
J Proteome Res | Opentrons Flex赋能微量分泌组蛋白质组学,实现单胚胎无创检测
Read More -
article · 2026Year23Moon29Day
AI如何改变实验室自动化?这份白皮书给出了答案
Read More
Next-generation gene sequencing refers to the subsequent mutation status detection and mutation measurement of multiple mutation points of multiple genes at the same time to guide subsequent targeted treatments. Gene second-generation sequencing, also known as next-generation sequencing, can simultaneously evaluate the status of hundreds of thousands to hundreds of thousands of genes. With the continuous development of technology, it provides great potential for subsequent targeted detection. Convenience makes up for many of the previous shortcomings.

For example, when performing small biopsy specimens, there is not enough tissue for subsequent multiplex PCR testing, nor is there enough tissue for repeated verification of multiple indicators and targets. Next-generation sequencing perfectly solves this problem. Second-generation sequencing technology has greatly reduced sequencing costs, while also greatly increasing sequencing speed and maintaining high accuracy. It used to take 3 years to complete the sequencing of a human genome, but using second-generation sequencing technology only takes 1 week. , but the sequence read length is much shorter than that of first-generation sequencing technology. The second-generation gene sequencing process includes steps such as sample preparation, DNA or RNA extraction, library construction, PCR sequencing, and data analysis. Different reagents and operating methods need to be used in each step to ensure the accuracy and reliability of sequencing results.
The experienced service team and strong production support team provide customers with worry-free order services.
简体中文
繁體中文
English
日本語
한국인