Une source publique officielle qui nomme directement Geno10X dans une collaboration de recherche définie.
Science et publications
Chaque affirmation conserve la catégorie de sa source.
Le registre sépare les collaborations Geno10X, la recherche de collaborateurs, la science de fond et les dossiers publics de financement. Une référence peut éclairer la plateforme sans devenir une affirmation de performance.
SOURCE_REGISTRY: 14
Comment lire ce registre
Une recherche publique d’un établissement collaborateur. Ses résultats restent attribués à cet établissement et à l’étude.
Des travaux évalués par les pairs qui apportent un contexte scientifique. Ils ne constituent pas une performance de produit Geno10X.
Une base de données ou annonce officielle documentant une aide ou un projet précis.
Sources institutionnelles, industrielles et éditoriales qui contextualisent les enjeux de déploiement, de gouvernance et de marché.
Source primaire
Registre des sources originales
Innovate BC Awards $1.5M to Five Research & Development Projects Advancing Clean Tech and Life Sciences Solutions in British Columbia
Innovate BC
Official public announcement naming Geno10X Biosciences, Gene Bio Medical and Simon Fraser University researchers in an HPV point-of-care research collaboration, with a C$300,000 Ignite award.
Ouvrir la source originale — Innovate BC Awards $1.5M to Five Research & Development Projects Advancing Clean Tech and Life Sciences Solutions in British ColumbiaUsing the body’s smallest clues to detect disease
Simon Fraser University
SFU overview of collaborator research on ultrasensitive, rapid cytokine sensors. It is contextual research and is not presented as Geno10X product performance.
Ouvrir la source originale — Using the body’s smallest clues to detect diseaseUnrau Lab: RNA imaging, detection and manipulation
Simon Fraser University
Current laboratory overview accessed in 2026; the page displays no publication date. It describes RNA Mango and related RNA research and is not a Geno10X performance record.
Ouvrir la source originale — Unrau Lab: RNA imaging, detection and manipulationFluorophore ligand binding and complex stabilization of the RNA Mango and RNA Spinach aptamers
RNA Journal
Peer-reviewed background on fluorophore binding, fluorescence enhancement and structural differences between RNA Mango and RNA Spinach aptamers.
Ouvrir la source originale — Fluorophore ligand binding and complex stabilization of the RNA Mango and RNA Spinach aptamersFluorogenic RNA Mango aptamers for imaging small non-coding RNAs in mammalian cells
Nature Communications
Peer-reviewed background on selected fluorogenic RNA Mango aptamers and RNA imaging in fixed and live mammalian cells.
Ouvrir la source originale — Fluorogenic RNA Mango aptamers for imaging small non-coding RNAs in mammalian cellsStructure and functional reselection of the Mango-III fluorogenic RNA aptamer
Nature Chemical Biology / PubMed
Peer-reviewed structural research on Mango-III, its fluorophore-binding architecture and functionally reselected variants.
Ouvrir la source originale — Structure and functional reselection of the Mango-III fluorogenic RNA aptamerRNA detection with high specificity and sensitivity using nested fluorogenic Mango NASBA
RNA Journal
Peer-reviewed scientific context reporting 2.5 aM RNA detection, approximately 1.5 RNA molecules per microlitre, under the published experimental method. This is not presented as Geno10X product performance.
Ouvrir la source originale — RNA detection with high specificity and sensitivity using nested fluorogenic Mango NASBALive cell imaging of single RNA molecules with fluorogenic Mango II arrays
Nature Communications
Peer-reviewed background on fluorogenic Mango II arrays used to study single RNA molecules in fixed and live cells.
Ouvrir la source originale — Live cell imaging of single RNA molecules with fluorogenic Mango II arraysTurn-on RNA Mango Beacons for trans-acting fluorogenic nucleic acid detection
RNA Journal / PubMed
Peer-reviewed background on trans-acting fluorogenic Mango Beacon designs that respond to target nucleic-acid sequences.
Ouvrir la source originale — Turn-on RNA Mango Beacons for trans-acting fluorogenic nucleic acid detectionSymmetry breaking of fluorophore binding to a G-quadruplex generates an RNA aptamer with picomolar KD
Nucleic Acids Research
Peer-reviewed background on a fluorogenic RNA aptamer–ligand complex with picomolar binding affinity under the reported experimental methods.
Ouvrir la source originale — Symmetry breaking of fluorophore binding to a G-quadruplex generates an RNA aptamer with picomolar KDUltrasensitive rapid cytokine sensors based on asymmetric geometry two-dimensional MoS2 diodes
Nature Communications
Peer-reviewed background on an aptamer-functionalized rapid cytokine sensor. Its reported findings belong to that study, not to a Geno10X product.
Ouvrir la source originale — Ultrasensitive rapid cytokine sensors based on asymmetric geometry two-dimensional MoS2 diodesDevelopment of sensor technology for ultrasensitive detection of HPV DNA
Natural Sciences and Engineering Research Council of Canada
Official NSERC funding record listing a separate C$225,000 Alliance project involving Simon Fraser University, Gene Bio Medical and Geno10X Biosciences.
Ouvrir la source originale — Development of sensor technology for ultrasensitive detection of HPV DNAAI and Drug Development: From Discovery to Delivery
British Columbia Trade & Invest
Policy and ecosystem update describing AI-accelerated pathways from research discovery through clinical development, including examples of partnerships linking computation, testing capacity and commercialization channels.
Ouvrir la source originale — AI and Drug Development: From Discovery to DeliveryThe Rise of AI Agents: Integrating AI, Blockchain Technologies, and Quantum Computing
McFarland
Book listing that frames AI-agent systems in relation to architecture, deployment, and governance questions across AI, blockchain and quantum computing.
Ouvrir la source originale — The Rise of AI Agents: Integrating AI, Blockchain Technologies, and Quantum Computing