Le Lézard
Classified in: Health, Science and technology
Subjects: Conference, Product/Service

Takara Bio transforms single-cell landscape with new large-scale NGS profiling system for oncology biomarker discovery


Takara Bio USA, Inc., a wholly owned subsidiary of Takara Bio Inc., today announced the launch of the Shastatm Single-Cell System, an automated, high-throughput NGS solution with well-validated chemistries and intuitive bioinformatics tools that enables novel biomarker discovery for oncology research. This complete system allows researchers to mine more genomic and transcriptomic information from many more cells than possible with current technologies, while saving time and costs for research groups. Existing whole-genome amplification (WGA) technologies currently process 96?384 single cells per plate; the Shasta system increases WGA throughput to 1,500 cells per run. With its total RNA-seq application, the Shasta system detects more RNA biotypes with high sensitivity at high throughput?up to 100,000 cells per run?which is an improvement over both plate-based full-length RNA-seq and high-throughput mRNA-seq methods.

In March, Takara Bio USA delivered instruments and NGS kits to early-access users, who have started producing results with the system. The company is accepting orders with plans to ship instruments and chemistries towards the end of Q2. "We're very excited about this technology," said early-access user Dr. Ting Wang, Head, Department of Genetics at Washington University School of Medicine in St. Louis. "I want to expand our usage of this technology. We have two other projects in the lab where we want to do a full set of profiling of our entire model system. We're fully committed to continue pushing the limit of the technology to do the best science."

The Shasta system has three core elements: a state-of-the-art, automated dispensing and imaging platform, a unique array of NGS library prep chemistries, and Cogenttm bioinformatics software for comprehensive data analysis?easy to use even for researchers and staff without bioinformatics experience.

"We have reached a new era in single-cell analysis. Researchers are no longer limited to profiling just hundreds of cells or accessing only part of a cell's rich genetic information. Shasta technologies have broken the limits of current methods to allow the detection of events like splicing isoforms, gene fusions, long noncoding RNAs, and arm-level CNVs?without sacrificing sensitivity or scale," said Carol Lou, President & CEO of Takara Bio USA. Researchers can take advantage of three applications:

The Shasta system will be demonstrated at the upcoming American Association for Cancer Research® (AACR) Annual Meeting from April 5?10, 2024, where two posters have been accepted. Attendees of the AACR meeting can learn more about Shasta workflows and view the system at Booth #2955. The Shasta system will also be presented at the Association of Biomolecular Resource Facilities (ABRF) Annual Meeting from April 21?24, 2024. At ABRF, attendees can engage with Takara Bio during the plenary keynote session on April 21st and again during the technology showcase at 8 am on April 23rd. Attendees can view the Shasta system at Booth #502. Researchers and other professionals wanting details can sign up to receive priority access to product and technical information.

About Takara Bio

Takara Bio USA, Inc. is a wholly owned subsidiary of Takara Bio Inc. that manufactures and distributes kits, reagents, and instruments for the life sciences, including NGS, PCR, gene delivery, genome editing, stem cell research, nucleic acid and protein purification, and automated sample preparation.

Takara Bio Inc., a world leader in biotechnology research and development, offers a host of life science research solutions, from enzymes and GMP-grade reagents to contracted cell and gene therapy manufacturing services and is the developer of the RetroNectin® reagent, a world standard in gene therapy protocols. Takara Bio is committed to preventing disease and improving the quality of life for all people through the use of biotechnology.


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