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Bionano Announces Publication Showing OGM’s High Resolution Structural Variation Detection in Cancer Validated by Cas9-Directed Nanopore Sequencing

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Bionano Genomics, Inc. (Nasdaq: BNGO) announced the results of a study showcasing optical genome mapping's (OGM) superior structural variation detection in cancer compared to traditional methods. The study revealed OGM's ability to detect variants missed by other techniques and the efficiency of targeted Cas9-directed Nanopore sequencing in validating these findings at a high resolution, offering a powerful tool for whole genome analysis in leukemia subtypes.
Bionano Genomics, Inc. (Nasdaq: BNGO) ha annunciato i risultati di uno studio che evidenzia la superiorità della mappatura del genoma ottico (OGM) nella rilevazione delle variazioni strutturali nel cancro rispetto ai metodi tradizionali. Lo studio ha rivelato la capacità dell'OGM di individuare varianti non rilevate da altre tecniche e l'efficacia del sequenziamento Nanopore diretto da Cas9 nel validare questi risultati ad alta risoluzione, offrendo uno strumento potente per l'analisi del genoma completo nei sottotipi di leucemia.
Bionano Genomics, Inc. (Nasdaq: BNGO) anunció los resultados de un estudio que destaca la superior detección de variaciones estructurales en cáncer mediante el mapeo genómico óptico (OGM) comparado con los métodos tradicionales. El estudio mostró la capacidad de OGM para detectar variantes que otras técnicas no lograron identificar y la eficiencia de la secuenciación Nanopore dirigida por Cas9 para validar estos hallazgos con alta resolución, ofreciendo una herramienta poderosa para el análisis del genoma completo en subtipos de leucemia.
바이오나노 제노믹스, 주식회사 (나스닥: BNGO)가 전통적인 방법들에 비해 암에서의 구조적 변이 감지에서 광학 유전체 매핑(OGM)의 우수성을 보여주는 연구 결과를 발표했습니다. 이 연구는 OGM이 다른 기술들이 놓친 변이를 감지할 수 있는 능력과 이러한 발견을 고해상도로 검증하는 데 Cas9 지향성 나노포어 시퀀싱의 효율성을 밝혔으며, 백혈병 하위 유형에서 전체 유전체 분석을 위한 강력한 도구를 제공합니다.
Bionano Genomics, Inc. (Nasdaq : BNGO) a annoncé les résultats d'une étude démontrant la supériorité du cartographie génomique optique (OGM) dans la détection des variations structurelles dans le cancer par rapport aux méthodes traditionnelles. L'étude a révélé la capacité de l'OGM à détecter des variantes manquées par d'autres techniques et l'efficacité du séquençage Nanopore dirigé par Cas9 pour valider ces découvertes à haute résolution, offrant un outil puissant pour l'analyse complète du génome dans les sous-types de leucémie.
Bionano Genomics, Inc. (Nasdaq: BNGO) gab die Ergebnisse einer Studie bekannt, die die Überlegenheit des optischen Genom-Mappings (OGM) bei der Erkennung struktureller Variationen in Krebs im Vergleich zu traditionellen Methoden aufzeigt. Die Studie enthüllt die Fähigkeit von OGM, Varianten zu erkennen, die von anderen Techniken übersehen wurden, und die Effizienz der zielgerichteten Cas9-Nanopore-Sequenzierung, um diese Befunde mit hoher Auflösung zu validieren, was ein leistungsfähiges Werkzeug für die gesamte Genomanalyse bei Leukämie-Subtypen bietet.
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SAN DIEGO, April 24, 2024 (GLOBE NEWSWIRE) -- Bionano Genomics, Inc. (Nasdaq: BNGO), today announced the results of an implementation study conducted by researchers at University Medical Center Groningen that compared optical genome mapping (OGM) to traditional cytogenetic methods for the detection of structural variants (SVs) in bone marrow aspirate (BMA) samples. OGM has been shown to regularly detect SVs missed by other methods, as a result of the higher resolution and sensitivity of OGM. Some of OGM’s novel findings, however, are difficult for other methods to validate, because of their resolution limitations. In this paper, researchers used OGM to detect variants in the BMA samples that were missed by traditional methods, and then applied targeted Cas9-directed Nanopore sequencing to validate the variants detected with OGM and define the breakpoints at the base pair level. The study results highlight OGM’s ability to provide researchers with a more comprehensive understanding of leukemia subtypes and the potential of targeted Cas9-directed Nanopore sequencing to validate new findings efficiently and at high resolution, compared to other genome analysis methods, including short read or other long read sequencing methods.

“We were pleased to see researchers conclude that the findings detected by OGM in leukemia samples were robust and superior to classical cytogenetic methods. When these findings are validated with Cas9-directed Nanopore sequencing, we believe the result is a powerful whole genome analysis tool that has the potential to identify pathogenically relevant SVs and further our understanding of molecular subtypes in blood cancer,” commented Erik Holmlin, PhD, president and chief executive officer of Bionano.

The publication can be viewed here.

About Bionano

Bionano is a provider of genome analysis solutions that can enable researchers and clinicians to reveal answers to challenging questions in biology and medicine. The Company’s mission is to transform the way the world sees the genome through OGM solutions, diagnostic services and software. The Company offers OGM solutions for applications across basic, translational and clinical research, and nucleic acid extraction and purification solutions using proprietary isotachophoresis (ITP) technology. Through its Lineagen, Inc. d/b/a Bionano Laboratories business, the Company also provides OGM-based testing for certain laboratory developed tests. The Company also offers an industry-leading, platform-agnostic software solution, which integrates next-generation sequencing and microarray data designed to provide analysis, visualization, interpretation and reporting of copy number variants, single-nucleotide variants and absence of heterozygosity across the genome in one consolidated view. For more information, visit www.bionano.com and www.bionanolaboratories.com

Unless specifically noted otherwise, Bionano’s OGM products are for research use only and not for use in diagnostic procedures.

Forward-Looking Statements of Bionano

This press release contains forward-looking statements contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. Words such as “ability,” “believe,” “potential, “shown” and similar expressions (as well as other words or expressions referencing future events, conditions or circumstances and the negatives thereof) 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: the ability and utility of OGM to regularly detect SVs missed by other cytogenetic methods; the ability and utility of Cas-9 directed LRS to validate SVs detected using OGM; the ability and utility of OGM to detect SVs relevant to blood cancers; and other statements that are not historical facts.

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 geopolitical and macroeconomic developments, such as recent and future bank failures, the ongoing conflicts between Ukraine and Russia and Israel and Hamas, and related sanctions, and any global pandemics, inflation, or supply disruptions, on our business and the global economy; challenges inherent in developing, manufacturing and commercializing products; our ability to further deploy new products and applications and expand the markets for our technology platforms; the failure of OGM to regularly detect SVs missed by other cytogenetic methods; the failure of Cas-9 directed LRS to validate SVs detected using OGM; the failure of OGM to detect SVs relevant to blood cancers; future study results that contradict or do not support the study results described in this press release; our expectations and beliefs regarding future growth of the business and the markets in which we operate; changes in our strategic and commercial plans; our ability to obtain sufficient financing to fund our strategic plans and commercialization efforts; our ability to effectively manage our uses of cash, and our ability to continue as a “going concern”; the ability of institutions to obtain funding to support adoption or continued use of our technologies; and 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, 2023 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 are under no duty to update any of these forward-looking statements after the date they are made to conform these statements to actual results or revised expectations, except as required by law. You should, therefore, not rely on these forward-looking statements as representing our views as of any date subsequent to the date the statements are made. Moreover, except as required by law, neither we nor any other person assumes responsibility for the accuracy and completeness of the forward-looking statements contained in this press release.

CONTACTS

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

Investor Relations:
David Holmes
Gilmartin Group
+1 (858) 888-7625
IR@bionano.com 


FAQ

What study results did Bionano announce?

Bionano Genomics announced the results of an implementation study on OGM's structural variation detection in cancer validated by Cas9-directed Nanopore sequencing.

What is the significance of OGM in the study?

OGM demonstrated the ability to detect structural variants missed by other methods due to its higher resolution and sensitivity.

How was the validation of the variants detected by OGM done?

Researchers used targeted Cas9-directed Nanopore sequencing to validate the variants detected by OGM and define breakpoints at the base pair level.

Who commented on the study results?

Erik Holmlin, PhD, the president and CEO of Bionano, commented on the study results praising OGM's robust findings in leukemia samples and its superiority to classical cytogenetic methods.

Where can the publication of the study be viewed?

The publication of the study can be viewed by following the provided link.

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About BNGO

at bionano genomics®, we are committed to unlocking understanding of genome biology to advance the promise of genomics in areas including cancer and human disease, agricultural bioengineering and genome discovery. our team is not afraid to venture into uncharted territory to look for answers. we welcome the curious and provide a place where those who are not satisfied with the status quo can feel at home. our next-generation genome mapping and analysis tools help researchers see true genome structure to fill in what’s missing from sequencing-based data. saphyr™, our high-speed, high-throughput whole genome mapping solution, offers unmatched structural variation discovery capabilities and the ability to construct the most complete genome assemblies. at bionano, we are invested in the success of our customers and users around the world, and are dedicated to supporting them with the tools, resources and support they need to achieve their goals and make a real impact on improving quality o