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Telesis Bio to Present at Jefferies Healthcare Conference 2023

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SAN DIEGO, June 08, 2023 (GLOBE NEWSWIRE) -- Telesis Bio Inc. (NASDAQ: TBIO), a leader in automated multi-omic and synthetic biology solutions, announced that Todd R. Nelson, Ph.D., CEO and Founder of Telesis Bio will present today at the 2023 Jefferies Healthcare Conference, Thursday, June 8, 2023, at 10:00 am Eastern time / 7:00 am Pacific Time.

The live and archived webcast of the presentation will be accessible from the company’s website at https://ir.telesisbio.com/news-events/events. The replay of the webcast will be available for 90 days.

About Telesis Bio
Telesis Bio is empowering scientists with the ability to create novel, synthetic biology-enabled solutions for many of humanity’s greatest challenges. As inventors of the industry-standard Gibson Assembly® method and the first commercial automated benchtop DNA and mRNA synthesis system, Telesis Bio is enabling rapid, accurate and reproducible writing of DNA and mRNA for numerous downstream markets. The award-winning BioXp® system consolidates, automates, and optimizes the entire synthesis, cloning and amplification workflow. As a result, it delivers virtually error-free synthesis of DNA and RNA at scale within days and hours instead of weeks or months. Scientists around the world are using the technology in their own laboratories to accelerate the design-build-test paradigm for novel, high-value products for precision medicine, biologics drug discovery, vaccine and therapeutic development, genome editing, and cell and gene therapy. Telesis Bio is a public company based in San Diego. For more information, visit www.telesisbio.com.

Telesis Bio, the Telesis Bio logo, Gibson Assembly, and BioXp are trademarks of Telesis Bio Inc.

Forward-Looking Statements
This press release contains forward-looking statements. All statements other than statements of historical facts contained herein are forward-looking statements reflecting the current beliefs and expectations of management made pursuant to the safe harbor provisions of the Private Securities Litigation Reform Act of 1995. These statements include statements and guidance regarding the anticipated use of proceeds from the financing, as well as statements regarding the future release and success of new and existing products and services. Such statements are based on current assumptions that involve risks and uncertainties that could cause actual outcomes and results to differ materially. These risks and uncertainties, many of which are beyond our control, include risks described in the section entitled Risk Factors and elsewhere in our Annual Report on Form 10-K, which was filed with the Securities and Exchange Commission (SEC) on March 22, 2023, as amended on May 17, 2023 and in our Quarterly Report on Form 10-Q, which was filed with the SEC on May 12, 2023. These forward-looking statements speak only as of the date hereof and should not be unduly relied upon. Telesis Bio disclaims any obligation to update these forward-looking statements.

Contact:
Jen Carroll
Vice President of Investor Relations
jen.carroll@telesisbio.com


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Analytical Laboratory Instrument Manufacturing
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SAN DIEGO

About TBIO

sgi-dna, a wholly owned subsidiary of synthetic genomics inc., provides genomic solutions to advance scientific discovery. sgi-dna’s ever expanding suite of products, services, reagents, bioinformatics tools and instrumentation enables scientists to discover, design and build novel solutions for basic research, as well as for biomedical and industrial applications. sgi-dna’s genomic services include whole genome sequencing, dna synthesis, library design, bioinformatics, cell engineering, and plasmid dna cloning and purification. sgi-dna’s reagents include a complete suite of gibson assembly® and site directed mutagenesis kits as well as optimized cell lines such as vmax™ a novel, fast growing host system for molecular biology. to further enable synthetic biology workflows, sgi-dna offers the bioxp™ 3200 system. this fully automated genomics workstation allows the creation of double stranded dna fragments, automated cloning, as well as next generation sequencing dna library preparation.