We’re looking forward to connecting with you in Boston, May 13-17, 2024
Meet the experts
Catch our team of experts in booth 711 to see how we can work together to accelerate your research for protein engineering and synthetic biology.
Poster presentation
Monday, May 13th – Tuesday, May 14th
Poster # A029: myTXTL Cell-Free Expression of Antibodies and Antibody Fragments
Our cell-free protein expression, Nathan Gardner, Ph.D., will be presenting data on our novel myTXTL Antibody/DS Master Mix, which enables rapid, cell-free expression of antibody constructs to greatly reduce the overall time and resources required for antibody discovery. This solution can enhance your research results, so you will not want to miss his presentation. Join us Monday, May 13th – Tuesday, May 14th.
Nathan Gardner, Ph.D.
Nathan joined Daicel Arbor Biosciences in 2019 as a Research Scientist. As a part of the synthetic biology team, Nathan is responsible for research and development activities related to expanding and improving cell-free protein expression platforms. Prior to their work at Daicel Arbor, Nathan completed their doctoral research at Purdue University, focusing on the influence of protein folding intermediated and the chemical environment on protein stability.
Visit us at booth #711
Stop by to chat about:
- Expediting your workflow with cell-free protein expression tools that let you screen more variants in less time.
- Scaling up your production with high-throughput solutions that enable increased yield with reliable performance.
- Performing protein expression not possible with in-vivo methods, such as synthesizing toxic proteins that prevent cell survival.
- Anything else on your mind!
Resources
myTXTL
- Product overview: myTXTL Cell-free Expression Kits
- Product overview: myTXTL Plasmids and Reagents
- Application note: Arzeda’s next-generation protein design workflow powered by the myTXTL cell-free protein expression system enables smarter and faster discovery – with Arzeda
- Webinar: myTXTL®: Breaking Out of the Cell to Enable High-Throughput Protein Engineering