Excited to share this new collaborative work. Fluorogenic Aptamer Optimization on a Massively Parallel Sequencing Platform | ACS Sensors https://t.co/3jWrtDzu5W
We're excited to share our latest work. "Revisiting the Conformational Flexibility of DNA 3-Arm Junctions for Nanoconstruction" | Nano Letters https://t.co/OkTByFxie0
RNA motifs can also be modified to recruit small molecules, proteins and RNA molecules in a sequence-specific manner to the RNA-rich phase @NatureNano@UCLA
https://t.co/ALRooi62QB
DNA Chalk: Calcium Carbonate Functionalized 3D DNA Crystals for Responsive Materials
https://t.co/SDT1Iqr21y
DNA crystals exhibit mesoporous properties, nuclease resistance and stimuli-responsive small molecule release through coating the inner lattice with amorphous CaCO3.
I'm looking for postdocs and post-baccs for my lab. If you or anyone you know are interested in what we do, reach out to me via email!
🔗Lab website: https://t.co/YppCWcMcUT
📧My contact: [email protected]
🏫University/Institute: https://t.co/xI9Lyc7ezR
Please RT. 📢📢📢
Check out our new work in @angew_chem by @AlishaKamra_.
We report nuclease-resistant enzyme-mimicking oligonucleotide assemblies via
Pt(II) supramolecular conjugation for light-activated oxidase activity.
Thanks @ANRFIndia@iiscbangalore@DBTIndia
🔗 https://t.co/8Lvt6eFIkk
On the cover of this week's issue: "High-Precision DNA Nanostructure-Templated Silicification via Modified Silanes"
Read it here 🔗 https://t.co/VMgSoNOBJV
.@PurdueChemistry's Christopher Uyeda has developed catalysts and reactions to tackle some of the most complex hurdles facing chemistry. Learn how they're being applied to produce some of the globe's most needed medicines. https://t.co/jYFO5PEpLw
Excited to share our new JACS paper, and my first from the Mirkin lab! @CHADNANO
We show that stimuli-responsive PAEs can be created via dynamic stacking of supermolecular cores, offering a new route to smart nanoscale materials. Grateful to our team!
https://t.co/w4kkOmsXNM
Shape Shifting Crystals:
Encoded Single-Stranded DNA for 3D Signal Propagation
https://t.co/HisateGn43
We demonstrate using X-ray diffraction that
isothermal targeting of SSDs can induce reconfiguration of physical lattice properties without disrupting
structural integrity.
Blunt-Force Assembly: Programmable DNA Architectures using π–π Stacking https://t.co/IrbSo1OR7X
We established the ability of mixtures of L- and D-DNA motifs to perform programmable co-assembly, demonstrating molecular recognition and coexistence between mirror molecular systems.
Congratulations @VicEliPal for being awarded the Alice Watson Kramer Award for advances in chemical biology and related fields by the gracious Purdue Chemistry Department and Prof. Jean Chmielewski. Great work! 🧬🎉
Excited to give notice of our recent work on logic gates with DNA crystals. Excellent work by @CuizhengZ and thank you for the additional help from @VicEliPal, Dr. Ruojie Sha and Prof. Nataša Jonoska
https://t.co/m1j2vGrbCt