Lior Debbi (@debbilior) 's Twitter Profile
Lior Debbi

@debbilior

Postdoctoral Fellow, Technion Israel, Shulamit Levenberg Lab @LevenbergLab | Tissue Engineering, 3D Bioprinting, Extracellular vesicles, Vascularization

ID: 1284400862111182848

calendar_today18-07-2020 08:13:42

18 Tweet

508 Followers

911 Following

Levenberg Lab (@levenberglab) 's Twitter Profile Photo

Our new preprint from Lior Debbi et al. Please share with us your comments. Integrating Engineered Macro Vessels with Self-assembled Capillaries in 3D Implantable Tissue for Promoting Vascular Integration In-vivo biorxiv.org/content/10.110…

NASA (@nasa) 's Twitter Profile Photo

"Thanks for flying SpaceX." 📍 Current Location: Planet Earth A 2:48pm ET, Liam and Col. Doug Hurley splashed down, marking the first splashdown of an American crew spacecraft in 45 years. #LaunchAmerica

Lahann Lab (@lahannlab) 's Twitter Profile Photo

We recently collaborated with Shulamit Levenberg's lab to study vessel sprouting using polymer scaffolds. This work supports efforts toward precise vasculature engineering. @AdvSciNews doi.org/10.1002/adfm.2…

Levenberg Lab (@levenberglab) 's Twitter Profile Photo

Congratulation to Shaowei G., Idan R. et al. for their publication "Prevascularized Scaffolds Bearing Human Dental Pulp Stem Cells for Treating Complete Spinal Cord Injury" onlinelibrary.wiley.com/doi/10.1002/ad…

Lior Debbi (@debbilior) 's Twitter Profile Photo

Happy to share our recent work just published in Nano Letters . "Stimulating Extracellular Vesicles Production from Engineered Tissues by Mechanical Forces" pubs.acs.org/doi/10.1021/ac…

Happy to share our recent work just published in <a href="/NanoLetters/">Nano Letters</a> .
"Stimulating Extracellular Vesicles Production
from Engineered Tissues by Mechanical Forces"
pubs.acs.org/doi/10.1021/ac…
Bioconjugate Chem (@bioconjchem) 's Twitter Profile Photo

#Scale-up is a consideration for translating findings in biochemistry into viable tools for therapy & diagnosis. Read in Nano Letters about a new method to boost #extracellular #vesicle production from #3D #cell #cultures that squeezes out the competition. ow.ly/pYXS50E1a9D

#Scale-up is a consideration for translating findings in biochemistry into viable tools for therapy &amp; diagnosis. Read in <a href="/NanoLetters/">Nano Letters</a> about a new method to boost #extracellular #vesicle production from #3D #cell #cultures that squeezes out the competition. ow.ly/pYXS50E1a9D
Sek Kathiresan MD (@skathire) 's Twitter Profile Photo

A home run! @intelliatweets shows for first time in humans that in vivo liver gene editing (CRISPR-Cas9 mRNA + guide RNA packaged in a lipid nanoparticle) is going to work (REALLY WELL) At dose of just 0.3 mg/kg in 3 humans, plasma TTR reductions: 80%, 84%, & 96% No AEs 😳

A home run!

@intelliatweets shows for first time in humans that in vivo liver gene editing (CRISPR-Cas9 mRNA + guide RNA packaged in a lipid nanoparticle)

is going to work (REALLY WELL)

At dose of just 0.3 mg/kg in 3 humans, 
plasma TTR reductions:

80%, 84%, &amp; 96%

No AEs

😳
Lior Debbi (@debbilior) 's Twitter Profile Photo

Happy to share our recent publication in Biomaterials regarding multi-scale vessel networks within engineered tissues. I was really lucky to work on this project with Barak Zohar and the great team of Levenberg Lab !! AddThis | Home doi.org/10.1016/j.biom…

Lior Debbi (@debbilior) 's Twitter Profile Photo

Happy to share our recent review article just published in Biotechnology Advances. This article presents various strategies for boosting extracellular vesicle (and exosome) secretion. authors.elsevier.com/a/1f6Qw2d7Ir6k…

Happy to share our recent review article just published in Biotechnology Advances. This article presents various strategies for boosting extracellular vesicle (and exosome) secretion. 

authors.elsevier.com/a/1f6Qw2d7Ir6k…
Lior Debbi (@debbilior) 's Twitter Profile Photo

Happy to share our work regarding ultrasound-mediated polymerization for cell delivery, drug delivery, and 3D bioprinting! For delivering living cells and build functional cellularized tissues deep in the patient's body using non-invasive ultrasound induction!! Wiley in research