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#aptamers — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #aptamers, aggregated by home.social.

  1. 🧬 If structure determines function, how can we optimize DNA therapeutics without accurately predicting their 3D shape?

    🔗 Predicting Single-Stranded DNA Oligonucleotides 3D Structures: An Open Issue. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0127

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #StructuralBiology #DNA #ComputationalBiology #Bioinformatics #MolecularBiology #Aptamers #DNANanotechnology #GenomeEngineering #NucleicAcids

  2. 🧬 If structure determines function, how can we optimize DNA therapeutics without accurately predicting their 3D shape?

    🔗 Predicting Single-Stranded DNA Oligonucleotides 3D Structures: An Open Issue. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0127

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #StructuralBiology #DNA #ComputationalBiology #Bioinformatics #MolecularBiology #Aptamers #DNANanotechnology #GenomeEngineering #NucleicAcids

  3. 🧬 If structure determines function, how can we optimize DNA therapeutics without accurately predicting their 3D shape?

    🔗 Predicting Single-Stranded DNA Oligonucleotides 3D Structures: An Open Issue. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0127

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #StructuralBiology #DNA #ComputationalBiology #Bioinformatics #MolecularBiology #Aptamers #DNANanotechnology #GenomeEngineering #NucleicAcids

  4. 🧬 If structure determines function, how can we optimize DNA therapeutics without accurately predicting their 3D shape?

    🔗 Predicting Single-Stranded DNA Oligonucleotides 3D Structures: An Open Issue. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0127

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #StructuralBiology #DNA #ComputationalBiology #Bioinformatics #MolecularBiology #Aptamers #DNANanotechnology #GenomeEngineering #NucleicAcids

  5. 🧬 If structure determines function, how can we optimize DNA therapeutics without accurately predicting their 3D shape?

    🔗 Predicting Single-Stranded DNA Oligonucleotides 3D Structures: An Open Issue. Computational and Structural Biotechnology Journal (CSBJ). DOI: doi.org/10.34133/csbj.0127

    📚 CSBJ - A Science Partner Journal: spj.science.org/journal/csbj

    #StructuralBiology #DNA #ComputationalBiology #Bioinformatics #MolecularBiology #Aptamers #DNANanotechnology #GenomeEngineering #NucleicAcids

  6. Very insightful review by the group of Alexander Deiters in @[email protected] They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb... #ChemSky #ChemBio #NucleicAcids #RNA #DNA

    Covalent aptamers: agents with...

  7. Very insightful review by the group of Alexander Deiters in @[email protected] They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb... #ChemSky #ChemBio #NucleicAcids #RNA #DNA

    Covalent aptamers: agents with...

  8. Very insightful review by the group of Alexander Deiters in @[email protected] They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb... #ChemSky #ChemBio #NucleicAcids #RNA #DNA

    Covalent aptamers: agents with...

  9. Very insightful review by the group of Alexander Deiters in RSC Chemical Biology. They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb00133a
    #Chemistry #ChemBio #NucleicAcids #RNA #DNA

  10. Very insightful review by the group of Alexander Deiters in RSC Chemical Biology. They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb00133a
    #Chemistry #ChemBio #NucleicAcids #RNA #DNA

  11. Very insightful review by the group of Alexander Deiters in RSC Chemical Biology. They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb00133a
    #Chemistry #ChemBio #NucleicAcids #RNA #DNA

  12. Very insightful review by the group of Alexander Deiters in RSC Chemical Biology. They give an overview of the development of covalent #aptamers for protein labeling and inhibition including an overview of the chemistries used. doi.org/10.1039/d5cb00133a
    #Chemistry #ChemBio #NucleicAcids #RNA #DNA

  13. 6-Jun-2025
    Ultra-selective #aptamers give viruses a taste of their own medicine
    Inspired by the way #viruses attach to cells, EPFL scientists have developed a method for engineering ultra-selective aptamers. The synthetic molecules bind to targets like viral spike proteins, making them useful for #biomedical #diagnostics and treatments

    loving the acronym: #MEDUSA (Multivalent Evolved #DNA-based SUpramolecular Assemblies)

    eurekalert.org/news-releases/1 #science #nanoworld

  14. 6-Jun-2025
    Ultra-selective #aptamers give viruses a taste of their own medicine
    Inspired by the way #viruses attach to cells, EPFL scientists have developed a method for engineering ultra-selective aptamers. The synthetic molecules bind to targets like viral spike proteins, making them useful for #biomedical #diagnostics and treatments

    loving the acronym: #MEDUSA (Multivalent Evolved #DNA-based SUpramolecular Assemblies)

    eurekalert.org/news-releases/1 #science #nanoworld

  15. 6-Jun-2025
    Ultra-selective #aptamers give viruses a taste of their own medicine
    Inspired by the way #viruses attach to cells, EPFL scientists have developed a method for engineering ultra-selective aptamers. The synthetic molecules bind to targets like viral spike proteins, making them useful for #biomedical #diagnostics and treatments

    loving the acronym: #MEDUSA (Multivalent Evolved #DNA-based SUpramolecular Assemblies)

    eurekalert.org/news-releases/1 #science #nanoworld

  16. 6-Jun-2025
    Ultra-selective #aptamers give viruses a taste of their own medicine
    Inspired by the way #viruses attach to cells, EPFL scientists have developed a method for engineering ultra-selective aptamers. The synthetic molecules bind to targets like viral spike proteins, making them useful for #biomedical #diagnostics and treatments

    loving the acronym: #MEDUSA (Multivalent Evolved #DNA-based SUpramolecular Assemblies)

    eurekalert.org/news-releases/1 #science #nanoworld

  17. 6-Jun-2025
    Ultra-selective #aptamers give viruses a taste of their own medicine
    Inspired by the way #viruses attach to cells, EPFL scientists have developed a method for engineering ultra-selective aptamers. The synthetic molecules bind to targets like viral spike proteins, making them useful for #biomedical #diagnostics and treatments

    loving the acronym: #MEDUSA (Multivalent Evolved #DNA-based SUpramolecular Assemblies)

    eurekalert.org/news-releases/1 #science #nanoworld

  18. Meet Richard Napier, a JXB handling #editor who oversees manuscripts covering various topics such as #auxin, #protein structure, #signalling, receptors, #biosensors, #aptamers, #cytokinins, and chemical #biology 🌱

  19. Meet Richard Napier, a JXB handling #editor who oversees manuscripts covering various topics such as #auxin, #protein structure, #signalling, receptors, #biosensors, #aptamers, #cytokinins, and chemical #biology 🌱

  20. Meet Richard Napier, a JXB handling #editor who oversees manuscripts covering various topics such as #auxin, #protein structure, #signalling, receptors, #biosensors, #aptamers, #cytokinins, and chemical #biology 🌱

  21. Meet Richard Napier, a JXB handling #editor who oversees manuscripts covering various topics such as #auxin, #protein structure, #signalling, receptors, #biosensors, #aptamers, #cytokinins, and chemical #biology 🌱

  22. Researchers from North Carolina State University have developed a new generation of high-performance #DNA #aptamers and highly accurate drug sensors for #cocaine and other #opioids.
    #Chemistry #Genetics #Pharmaceutical #sflorg
    sflorg.com/2024/03/chm03042401

  23. Researchers from North Carolina State University have developed a new generation of high-performance #DNA #aptamers and highly accurate drug sensors for #cocaine and other #opioids.
    #Chemistry #Genetics #Pharmaceutical #sflorg
    sflorg.com/2024/03/chm03042401

  24. Researchers from North Carolina State University have developed a new generation of high-performance #DNA #aptamers and highly accurate drug sensors for #cocaine and other #opioids.
    #Chemistry #Genetics #Pharmaceutical #sflorg
    sflorg.com/2024/03/chm03042401

  25. Researchers from North Carolina State University have developed a new generation of high-performance #DNA #aptamers and highly accurate drug sensors for #cocaine and other #opioids.
    #Chemistry #Genetics #Pharmaceutical #sflorg
    sflorg.com/2024/03/chm03042401

  26. Researchers from North Carolina State University have developed a new generation of high-performance #DNA #aptamers and highly accurate drug sensors for #cocaine and other #opioids.
    #Chemistry #Genetics #Pharmaceutical #sflorg
    sflorg.com/2024/03/chm03042401

  27. 23-Jun-2023
    Bridging the gap for precision medicine: nanofluidic aptamer nanoarray measures individual proteins

    A pioneering step towards digital assays at cellular concentrations

    eurekalert.org/news-releases/9 #science #nanoworld #aptamers #proteins #nanofluidics #sensors

  28. 23-Jun-2023
    Bridging the gap for precision medicine: nanofluidic aptamer nanoarray measures individual proteins

    A pioneering step towards digital assays at cellular concentrations

    eurekalert.org/news-releases/9 #science #nanoworld #aptamers #proteins #nanofluidics #sensors

  29. 23-Jun-2023
    Bridging the gap for precision medicine: nanofluidic aptamer nanoarray measures individual proteins

    A pioneering step towards digital assays at cellular concentrations

    eurekalert.org/news-releases/9 #science #nanoworld #aptamers #proteins #nanofluidics #sensors

  30. 23-Jun-2023
    Bridging the gap for precision medicine: nanofluidic aptamer nanoarray measures individual proteins

    A pioneering step towards digital assays at cellular concentrations

    eurekalert.org/news-releases/9 #science #nanoworld #aptamers #proteins #nanofluidics #sensors

  31. 👋 #Introduction

    I'm Khalid 🇮🇳🇺🇸 (BiochemPhD on the bird site).

    PhD from U of Missouri, focused on #RNA #Aptamers #Bioinformatics and where I developed a passion for #SynBio and #Entrepreneurship. 🧬

    Postdoc at Northwestern U, where I developed #CellFree #Biosensor technology at the Center for #SyntheticBiology and Center for #Water Research.💧

    Now commercializing cell-free biosensor tech at Stemloop, a #startup in Chicago.

    Interested in a lot, but mostly here for the scientific community!

  32. 👋 #Introduction

    I'm Khalid 🇮🇳🇺🇸 (BiochemPhD on the bird site).

    PhD from U of Missouri, focused on #RNA #Aptamers #Bioinformatics and where I developed a passion for #SynBio and #Entrepreneurship. 🧬

    Postdoc at Northwestern U, where I developed #CellFree #Biosensor technology at the Center for #SyntheticBiology and Center for #Water Research.💧

    Now commercializing cell-free biosensor tech at Stemloop, a #startup in Chicago.

    Interested in a lot, but mostly here for the scientific community!

  33. 👋 #Introduction

    I'm Khalid 🇮🇳🇺🇸 (BiochemPhD on the bird site).

    PhD from U of Missouri, focused on #RNA #Aptamers #Bioinformatics and where I developed a passion for #SynBio and #Entrepreneurship. 🧬

    Postdoc at Northwestern U, where I developed #CellFree #Biosensor technology at the Center for #SyntheticBiology and Center for #Water Research.💧

    Now commercializing cell-free biosensor tech at Stemloop, a #startup in Chicago.

    Interested in a lot, but mostly here for the scientific community!