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Bionano’s Saphyr System Used to Characterize Virus Integration Into Human Genome

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Bionano Genomics (Nasdaq: BNGO) announced a pivotal publication in the Proceedings of the National Academy of Sciences, detailing how the Saphyr system effectively characterizes the integration of human herpesvirus 6 (HHV-6) within the human genome. This international collaboration demonstrated that traditional molecular techniques failed to pinpoint the viral integration sites, highlighting Saphyr's unique capabilities in imaging long DNA sequences. CEO Erik Holmlin emphasized the significance of this research in understanding HHV-6's impact on human health, as its integration can lead to various diseases.

Positive
  • Saphyr's unique capabilities established as effective in identifying viral integration sites, showcasing technological superiority over existing methods.
  • International collaboration with respected institutions enhances credibility and further validates Bionano's position in genome analysis.
  • Publication in a prestigious journal could increase visibility and interest in Bionano's technology, potentially leading to new partnerships.
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SAN DIEGO, Dec. 15, 2020 (GLOBE NEWSWIRE) -- Bionano Genomics, Inc. (Nasdaq: BNGO) announced the publication of a paper in the Proceedings of the National Academy of Sciences (PNAS) that describes the detailed characterization of how and where the human herpesvirus 6 (HHV-6) integrates in the human genome of its hosts. The study, which involved an international collaboration of scientists from prestigious institutions including the Freie Universität Berlin and the Fred Hutchinson Cancer Research Center at the University of Washington, used optical genome mapping with Saphyr to determine precisely the location of the viral sequence in the human telomeres, a region of the genome that is known to be difficult to analyze by next-generation sequencing.

Infection with HHV-6 can cause roseola, heart disease, and brain inflammation. This paper describes how previous attempts to characterize the integration of HHV-6A and HHV-6B with existing molecular analysis technologies have failed. The authors, led by Dr. Kaufer, state that fluorescent in-situ hybridization (FISH), PCR amplification and Sanger sequencing, next-generation sequencing (NGS) using various platforms, and long-read sequencing using Oxford Nanopore Technologies all were unable to identify the correct integration site and measure the telomere sequences flanking the inserted virus, while Saphyr did. Additionally Saphyr revealed the orientation of the virus and identified the presence of long telomeres at both sides of the integrated virus genome.

Erik Holmlin, Ph.D., CEO of Bionano Genomics commented, “The integration of viruses in the human genome can cause lifelong suffering, and in the case of HHV, can be genetically passed on to next generations, yet their location in the genome and the mechanisms with which their integration causes disease is poorly understood. Saphyr’s unique ability to image extremely long DNA molecules without being bogged down by repetitive sequences makes it a highly useful tool to locate and characterize these inserted virus sequences in ways that existing sequencing-based methods have been unable to achieve. This study adds to the increasing number of publications demonstrating how Bionano’s optical genome mapping can characterize diseases mediated by or involving repetitive elements, which make up two thirds of the human genome.”

The publication is available in the Proceedings of the National Academy of Sciences of the United States of America at https://www.pnas.org/content/117/49/31410.long.

About Bionano Genomics
Bionano is a genome analysis company providing tools and services based on its Saphyr system to scientists and clinicians conducting genetic research and patient testing, and providing diagnostic testing for those with autism spectrum disorder (ASD) and other neurodevelopmental disabilities through its Lineagen business. Bionano’s Saphyr system is a platform for ultra-sensitive and ultra-specific structural variation detection that enables researchers and clinicians to accelerate the search for new diagnostics and therapeutic targets and to streamline the study of changes in chromosomes, which is known as cytogenetics. The Saphyr system is comprised of an instrument, chip consumables, reagents and a suite of data analysis tools, and genome analysis services to provide access to data generated by the Saphyr system for researchers who prefer not to adopt the Saphyr system in their labs. Lineagen has been providing genetic testing services to families and their healthcare providers for over nine years and has performed over 65,000 tests for those with neurodevelopmental concerns. For more information, visit www.bionanogenomics.com or www.lineagen.com.

Forward-Looking Statements
This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Words such as “may,” “will,” “expect,” “plan,” “anticipate,” “estimate,” “intend” and similar expressions (as well as other words or expressions referencing future events, conditions or circumstances) convey uncertainty of future events or outcomes and are intended to identify these forward-looking statements. Forward-looking statements include statements regarding our intentions, beliefs, projections, outlook, analyses or current expectations concerning, among other things: Bionano’s capabilities and advantages as compared to traditional sequencing methods. Each of these forward-looking statements involves risks and uncertainties. Actual results or developments may differ materially from those projected or implied in these forward-looking statements. Factors that may cause such a difference include the risks and uncertainties associated with: the impact of the COVID-19 pandemic on our business and the global economy; general market conditions; changes in the competitive landscape and the introduction of competitive products; changes in our strategic and commercial plans; our ability to obtain sufficient financing to fund our strategic plans and commercialization efforts; the ability of medical and research institutions to obtain funding to support adoption or continued use of our technologies; the loss of key members of management and our commercial team; and the risks and uncertainties associated with our business and financial condition in general, including the risks and uncertainties described in our filings with the Securities and Exchange Commission, including, without limitation, our Annual Report on Form 10-K for the year ended December 31, 2019 and in other filings subsequently made by us with the Securities and Exchange Commission. All forward-looking statements contained in this press release speak only as of the date on which they were made and are based on management's assumptions and estimates as of such date. We do not undertake any obligation to publicly update any forward-looking statements, whether as a result of the receipt of new information, the occurrence of future events or otherwise.

CONTACTS

Company Contact:
Erik Holmlin, CEO
Bionano Genomics, Inc.
+1 (858) 888-7610
eholmlin@bionanogenomics.com

Investor Relations Contact:
Ashley R. Robinson
LifeSci Advisors, LLC
+1 (617) 430-7577
arr@lifesciadvisors.com

Media Contact:
Darren Opland, PhD
LifeSci Communications
+1 (617) 733-7668
darren@lifescicomms.com 


FAQ

What did Bionano Genomics announce on December 15, 2020?

Bionano Genomics announced a study published in PNAS that details how its Saphyr system successfully characterizes the integration of HHV-6 in the human genome.

How does Saphyr compare to traditional sequencing methods according to Bionano?

Saphyr is highlighted as superior in identifying the integration sites of HHV-6, which traditional methods failed to achieve.

Why is the study on HHV-6 significant?

The study is significant as it improves understanding of HHV-6's integration in the genome, which can cause severe health issues such as heart disease and brain inflammation.

Where can I find the publication from Bionano Genomics?

The publication is available in the Proceedings of the National Academy of Sciences and can be accessed online.

What is the stock symbol for Bionano Genomics?

The stock symbol for Bionano Genomics is BNGO.

Bionano Genomics, Inc.

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