✨This International Women’s Day, WONDER celebrates the brilliant women pushing the boundaries of discovery in nanotechnology, biotechnology, and research 🧬 From the lab bench to leadership, women are driving innovation, asking bold questions, and transforming ideas into breakthroughs🌎
Molpigs
@molpigs.bsky.social
We are the MOLecular Programming Interest Group, early-career researchers in the field of molecular programming building our community through podcasts, reading groups and community activities. Links to all podcast feeds and Slack at molpi.gs
We just released the latest episode of the Molpigs podcast! This time with Megan Engel, a professor at the University of Calgary who is who uses machine learning to build better molecular models. 🧬 Links to the episode on all major feeds can be found on our website: podcast.molpi.gs/media/engel-...
molpigs Podcast | Megan Engel: Harnessing Machine Learning to Build Better Molecular Models
Join us for a conversation with Professor Megan Engel from the University of Calgary about what it takes to build better physical models of molecules. Her work is inspired by the challenges faced by t...
podcast.molpi.gs
Podcast drop🧬! As part of the Molecular Programming Flightplan, we assembled a panel discussion on collaboration! The panel is now available as two podcasts, each with half the panel, and a bonus interview with @programmablematter.bsky.social. Links to all major feeds here: podcast.molpi.gs
molpigs Podcast | Molecular Programming Interest Group
podcast.molpi.gs
Molecular Programmers🧬: @programmablematter.bsky.social summons us to organize a “Flightplan”, a 10-year strategic initiative for the field. The meeting will be July 21-23rd in Seattle and will be moderated by NSF program officers. Travel funding is available! Apply here: mpflightplan.com/apply-now
Molecular Programmers🧬: @programmablematter.bsky.social summons us to organize a “Flightplan”, a 10-year strategic initiative for the field. The meeting will be July 21-23rd in Seattle and will be moderated by NSF program officers. Travel funding is available! Apply here: mpflightplan.com/apply-now
Apply now! — MP Decadal Flightplan
mpflightplan.com
Follow WONDER for networking opportunities and upcoming mentorship events aimed at increasing female representation and retention in the Molecular Programming field 🧬
Hello (bluesky) world! We are WONDER 🧬, an organization aimed at female PhD students, early and late career researchers within DNA Nanotechnology and related fields 😊🧬 Follow us here to stay updated and sign up to our mailing list (link in bio) to never miss out on any news🧬
Thank you to everybody who came to our 🧬DNA origami🧬 reading group over the last 7 weeks! We all learned a ton from the discussions and revisiting these classic papers. What should our next topic be?? Leave us a comment to help us decide.
It's time for the finale of the 🧬DNA origami🧬 reading group! This week we're thinking about how to make origami biiiiiig. When previous papers assembled multiple origami, the yield started to crash. This week's paper is an attempt to get around that problem. www.nature.com/articles/s41...
Multi-micron crisscross structures grown from DNA-origami slats - Nature Nanotechnology
Addressable DNA structures with lateral dimensions of ~2 µm can be self-assembled starting from over 1,000 distinct DNA-origami monomers via joint capture of the non-nearest neighbours.
nature.com
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
This week in the Molpigs 🧬DNA Origami🧬 Reading Group there are two cool concepts we're exploring: dynamic structures, and using blunt-end stacking as a structural tool instead of treating it as The Enemy. Info on how to join the discussion in the quoted thread! www.science.org/doi/full/10....
science.org
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
This week in the Molpigs 🧬DNA Origami🧬 Reading Group, we're exploring how DNA origami went from tightly packed sheets/blocks, to open wireframes with complex and beautiful geometries. This paper required designing intricate strand routing, let's follow the path! www.nature.com/articles/nna...
Complex wireframe DNA origami nanostructures with multi-arm junction vertices - Nature Nanotechnology
A design approach for engineering wireframe DNA nanostructures, in which each vertex and line segment can be individually controlled, can be used to fabricate complex structures including quasicrystal...
nature.com
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
Welcome to the halfway point in the 🧬DNA origami🧬 reading group! This week we're reading "Folding DNA into Twisted and Curved Nanoscale Shapes", the second 2009 paper from the Shih lab demonstrating the programmability of DNA origami. www.science.org/doi/full/10....
science.org
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
For week three of our 🧬DNA origami🧬 reading group we're reading the first of two 2009 papers from the Shih lab which demonstrated that you really could fold DNA into any 3D shape! This paper also demonstrated Cadnano, which remains the most used design software today. www.nature.com/articles/nat...
Self-assembly of DNA into nanoscale three-dimensional shapes - Nature
DNA has proved to be a versatile building block in the creation of complex structures through self-assembly, exploiting the intermolecular forces between the components. Here, the arrangement of DNA h...
nature.com
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
The second meeting of the Origami Reading Group is tonight at 18:00 EST! Come discuss the original DNA Origami with us (spoiler, it’s shockingly sassy). 🧬
It's time to put the origami in our DNA Origami Reading Group! This week we're reading Rothemund's "Folding DNA to create nanoscale shapes and patterns" to understand this seminal paper in context! What did Rothemund know, and what did he intuit? Join us to discuss!🧬 www.nature.com/articles/nat...
Folding DNA to create nanoscale shapes and patterns - Nature
A robust, versatile, one-pot bottom-up nanotechnology fabrication method uses a few-hundred short DNA strands to 'staple' a very long strand into two-dimensional structures of 100 nm in diameter and r...
nature.com
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
First 🧬DNA Origami reading group🧬 meets today! Our first paper is a precursor to origami, where Yan and colleagues showed that you could build larger structures via scaffolded tile assembly! www.pnas.org/doi/10.1073/...
Directed nucleation assembly of DNA tile complexes for barcode-patterned lattices | PNAS
The programmed self-assembly of patterned aperiodic molecular structures is a major challenge in nanotechnology and has numerous potential applica...
pnas.org
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
Excited to start our 🧬DNA origami🧬 reading group next week! We’ll be hosting two weekly sessions: Tuesday @ 20:15 CET Thursday @ 18 EST You can still sign up by joining the reading-group channel on Slack or filling the form for email updates! Timezone converter: molpi.gs/timezones#tz...
Molecular Programming Interest GroupMolecular Programming Interest Group
molpi.gs
It's time for another Molpigs reading group! This time we'll be routing our brains through the history of DNA origami. We will be starting the week of March 10th and reading 1 paper/week for 7 weeks. Please fill out either the form linked in the next post or join the Molpigs Slack for updates. 🧬🧬🧬
It's time for another Molpigs reading group! This time we'll be routing our brains through the history of DNA origami. We will be starting the week of March 10th and reading 1 paper/week for 7 weeks. Please fill out either the form linked in the next post or join the Molpigs Slack for updates. 🧬🧬🧬
In this series on the origins of DNA nanotechnology, we've so far seen a lot of DNA, not a lot of nanostructure and not a lot of technology. Today's paper introduces structure, we're looking at the first well-defined object built out of DNA, the humble cube! 🧬 1/8 www.nature.com/articles/350...
Synthesis from DNA of a molecule with the connectivity of a cube - Nature
Nature - Synthesis from DNA of a molecule with the connectivity of a cube
nature.com
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
DNA nanotechnology works because of the specificity of A-T and G-C base-pairs. But isolated pairs aren't stable! Only when you have longer stretches will DNA form a helix. Before finally building the first structure, let's discuss Ned's sequence design tool. 1/6 www.tandfonline.com/doi/pdf/10.1...
De Novo Design of Sequences for Nucleic Acid Structural Engineering: Journal of Biomolecular Structure and Dynamics: Vol 8 , No 3 - Get Access
We’re here to help
tandfonline.com
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
Paper #3 in our series: the time Ned and co read too much science fiction. That's right, it's Robinson & Seeman's "The design of a biochip: a self-assembling molecular-scale memory device" published in Protein Engineering in 1987. 🧬 1/7 academic.oup.com/peds/article...
The design of a biochip: a self-assembling molecular-scale memory device
Abstract. A design for a biochip memory device based on known materials and existing principles is presented. The fabrication of this memory system relies
academic.oup.com
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
Wake up and smell the acrylamide! Today we're talking about the second paper in our retrospective on Ned Seeman's work, "An immobile nucleic acid junction constructed from oligonucleotides", Nature 1983. 🧬 1/5 www.nature.com/articles/305...
An immobile nucleic acid junction constructed from oligonucleotides - Nature
Nature - An immobile nucleic acid junction constructed from oligonucleotides
nature.com
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
First up, Ned Seeman's 1982 "Nucleic Acid Junctions and Lattices", published in the Journal of Theoretical Biology. This was the first paper to propose that through sequence design it might be possible to create precisely-defined crystal lattices out of DNA. 🧬 www.sciencedirect.com/science/arti...
Nucleic acid junctions and lattices
It is possible to generate sequences of oligomeric nucleic acids which will preferentially associate to form migrationally immobile junctions, rather …
sciencedirect.com
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
We've organized two reading groups on classic papers in molecular programming: - A celebration of the late Ned Seeman, the founder of DNA nanotechnology - Foundations of DNA computing Let's talk about some of the great papers we've read! Each discussion will start as a quote of this post. 🧬
Are there any other scientists from molecular programming here? That's self-assembly, chemical computation, rational design et al. I made a mol pro feed which works like the Science (🧪) feed. Let me know, I add you to the list, you post with a 🧬 emoji. Let's assemble! bsky.app/profile/flop...
Goodbye X, hello BlueSky! Let's start rebuilding the molecular programming community over here. If you're curious about what the field is, and who we are, our latest podcast episode is an introduction to our new team members and a lot of geekery about the field. 🧬 podcast.molpi.gs/media/team2-...
molpigs Podcast | molpigs TeamMolecular Programming Interest Grouptilibit nanosystems
podcast.molpi.gs