Check out our new technology for #PFAS#bioremediation using lignocellulosic materials and fungus. Congrats to Jinghao and Yuan & Dai Lab @yuan_ssbih for such a wonderful job!
As single cell proteomics person, we always try to compare protein measurements to transcript, what if we can do both on the same cells? Great job by @cajun_science and collaboration between @EMSLscience and @Cellenion https://t.co/ewYEQUVhV0
Impressive work! Very interesting story explaining similarities and differences among closely related cyanobacterium strains 7942, 6301, 2973, and 3055.
Check out our latest publication on @BioDesignR! In the paper, we rewired carbon partitioning from sugar metabolism to terpene biosynthesis in cyanobacteria using the “push and pull” strategy.
Thrilled to have my latest work published in @NatureComms. We used machine learning to inform algae cultivation and engineered a cyanobacterium strain to be self-aggregated as a simplified biomass harvest method. As a result, we brought down algal production costs significantly.
Using a semi-continuous cultivation system and an aggregation-based sedimentation strategy to achieve high levels production of biomass and limonene in algae.
@yuan_ssbih@BinLong3
https://t.co/myEMpminFY
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Happy to share our latest paper in Nature Materials on engineered living materials (ELMs). Big shout out to Damen Schaak & the @ecovative team for the core fungal tech and @Geneticdesigner & his MIT team for this super fun collab!
https://t.co/dSjhyw7qf6
Very useful ! MS Spec directly from the agar colonies! #synbio#engbio
“Accelerating strain phenotyping with desorption electrospray ionization-imaging mass spectrometry and untargeted analysis of intact microbial colonies”
https://t.co/fXTaGDLtYP