Our recent review at Fundamental Research explores the innovative applications of programmable DNA-based biomaterials in bone tissue engineering. https://t.co/o2XG0dwhKH
Zhang lab developed a simple, effective method for assembling non-thiol-modified polyA-DNA on AuNRs. This allows easy control over surface DNA density & distribution paving the way for advanced higher-ordered assembly with AuNRs @HuanZhang16@Honglu_Zhang
https://t.co/avWGmTv6RP
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Why are mathematicians interested in the distribution of prime numbers, and what do they actually mean by that?
A 🧵 on the Riemann hypothesis and Yitang Zhang's latest preprint on the Landau-Siegel zeros conjecture, which I covered yesterday
https://t.co/PCua3EKpFD
We know quite a bit about nanoparticle interactions in mammalian cells. But what about plants? New Research Highlight on a @NatureNano paper by @Landry_Lab reporting the interactions of siRNA-gold nanoparticles in plant leaves - and yes, they are different https://t.co/5cM3yZcqBH
Want to deliver RNA in plants 🪴with nanoparticles 🧪? Nanoparticle cell entry isn't needed! Check out @_nanonat & @HuanZhang16's paper out today in @NatureNano featuring nanospheres, rods, and a transport mechanism for nanoparticles in plant tissues! https://t.co/JzzjFpsLXN
Thank you to landry lab @Landry_Lab and Yang lab @yanggroupucb for this great collaboration! We have another nanomaterial capable to deliver cargos in plants!
Kary Mullis, born #OTD 1944, was tired and it was dark. His thoughts wandered as he was driving. He had to stop his car to think properly - all the puzzle pieces fell into place. Mullis had just invented the polymerase chain reaction (PCR), earning him the 1993 Chemistry Prize.
Deep deep thanks to Landry lab! Let’s keep in touch and continue exploring nanoscience in agriculture! I will definitely visit back and welcome to visit my lab!