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Syntrix Presents at the 2014 ACA Summit in Washington, D.C.

Syntrix was invited to present at the 2014 Angel Capital Association (ACA) Summit co-sponsored by the National Heart Lung and Blood Institute (NHLBI).  This conference brings together businesses, angel investors, and strategic partners from the biotech and pharmaceutical industries. It features presentations by top NHLBI-funded companies with innovative technologies.  The Syntrix presentation featured SX-682, the […]

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Syntrix Presents at the 2013 NHLBI Innovation Conference in San Francisco

Syntrix was one of six breakthrough technology companies invited to present at the 2013 Innovation Conference sponsored by the National Heart Lung and Blood Institute (NHLBI).  This conference brings together businesses, investors, and strategic partners from the biotech and pharmaceutical industries. It features presentations by top NHLBI-funded companies with innovative technologies.  The Syntrix presentation featured […]

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Science Education at Syntrix: 2013 Summer Interns Start!

With the arrival of our new interns at Syntrix, it must be summer again. It’s always inspiring to see new highly motivated students in our laboratories eager to contribute to the Syntrix culture and expand their education by learning directly at the bench in a real world entrepreneurial environment. This year we will be hosting Lindsey Kornowske, who […]

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In the News: Syntrix Wins Judgement of $115 Million in Largest Patent Verdict in Washington State History

Syntrix Biosystems wins final judgment of $115 million in patent case against Illumina, Inc.  Decision follows largest patent verdict in Washington state history. Read the full press release.

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Syntrix Reports Discovery of Stem-Chelate-Loop Probe Exhibiting Reversible Metal-Dependent Destabilization and Stabilization of Binding to Unmodified DNA

Congratulations to Syntrix scientists on their latest publication, which appeared in the journal Bioconjugate Chemistry. Abstract: Herein, we report the discovery of a novel DNA probe with a stem-chelate-loop structure, wherein the stability of the probe-target duplex can be modulated lower or higher using a narrow concentration range of dilute transition metal ions (0.1-10 μM). Oligonucleotide probes containing two […]

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