Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Shai Zilberzwige-Tal"'
Engineered Riboswitch Nanocarriers as a Possible Disease-Modifying Treatment for Metabolic Disorders
Autor:
Shai Zilberzwige-Tal, Danielle Gazit, Hanaa Adsi, Myra Gartner, Rahat Behl, Dana Bar-Yosef Laor, Ehud Gazit
Publikováno v:
ACS nano. 16(8)
Both DNA- and RNA-based nanotechnologies are remarkably useful for in vitro molecular-scale device engineering and are applied in a vast array of applications. However, while the function of nucleic acid nanostructures is robust under in vitro settin
Autor:
Shai Zilberzwige-Tal, Pedro Fontanarrosa, Darya Bychenko, Yuval Dorfan, Ehud Gazit, Chris J. Myers
Over the past two decades, synthetic biology has yielded ever more complex genetic circuits able to perform sophisticated functions in response to specific signals. Yet, genetic circuits are not immediately transferable to an outside-the-lab setting
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::151221fc71f43c77e97320c25d5a0be6
https://doi.org/10.1101/2022.05.16.492150
https://doi.org/10.1101/2022.05.16.492150
Metal-Ion Modulated Structural Transformation of Amyloid-Like Dipeptide Supramolecular Self-Assembly
Autor:
Kai Tao, Xuehai Yan, Shai Zilberzwige-Tal, Wei Ji, Sharon Gilead, Priyadarshi Chakraborty, Ehud Gazit, Chengqian Yuan, Ruirui Xing
Publikováno v:
ACS Nano
The misfolding of proteins and peptides potentially leads to a conformation transition from an α-helix or random coil to β-sheet-rich fibril structures, which are associated with various amyloid degenerative disorders. Inhibition of the β-sheet ag
Autor:
Shahar Zachariah, Ehud Gazit, Amit Hollander, Danielle Gazit, Dan Alon, Shai Zilberzwige-Tal, Johann Elbaz
DNA nanotechnology is leading the field of in vitro molecular-scale device engineering, accumulating to a dazzling array of applications from zeolite-like catalysts to bio-imaging. However, while DNA nanostructures' function is robust under in vitro
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::30281c3f64acb35df19ce495760fd32d
https://doi.org/10.21203/rs.3.rs-98920/v1
https://doi.org/10.21203/rs.3.rs-98920/v1
Autor:
Shai Zilberzwige-Tal, Ehud Gazit
Publikováno v:
Chemistry - An Asian Journal. 13:3437-3447
The rapid development of cost-efficient microfluidic devices has received tremendous attention from scientists of diverse fields. The growing potential of utilizing microfluidic platforms has further advanced the ability to integrate existing technol
Autor:
Priyadarshi Chakraborty, Shai Zilberzwige-Tal, Guanghong Wei, Darya Bychenko, Tal Dvir, Hadas Oved, Ehud Gazit, Yifei Yao, Yiming Tang
Publikováno v:
Advanced Materials. 33:2008715
Owing to their dynamic nature and ordered architecture, supramolecular materials strikingly resemble organic components of living systems. Although short-peptide self-assembled nanostructured hydrogels are regarded as intriguing supramolecular materi
Autor:
Ehud Gazit, Aviad Levin, Zenon Toprakcioglu, Shai Zilberzwige-Tal, Tuomas P. J. Knowles, Johann Elbaz
Publikováno v:
Small. 15:1901780
In nature, intracellular microcompartments have evolved to allow the simultaneous execution of tightly regulated complex processes within a controlled environment. This architecture serves as the blueprint for the construction of a wide array of arti
Autor:
Tal Dvir, Yiming Tang, Nofar Adadi, Guanghong Wei, Ayyalusamy Ramamoorthy, Tomoya Yamamoto, Wei Ji, Tom Guterman, Yifei Yao, Priyadarshi Chakraborty, Shai Zilberzwige-Tal, Ehud Gazit
Publikováno v:
Advanced Materials
Self-assembled peptide hydrogels represent the realization of peptide nanotechnology into biomedical products. There is a continuous quest to identify the simplest building blocks and optimize their critical gelation concentration (CGC). Herein, a mi
Autor:
Zilberzwige‐Tal, Shai1, Gazit, Ehud1,2 ehudg@post.tau.ac.il
Publikováno v:
Chemistry - An Asian Journal. 11/16/2018, Vol. 13 Issue 22, p3437-3447. 11p.
Autor:
Chakraborty, Priyadarshi, Oved, Hadas, Bychenko, Darya, Yao, Yifei, Tang, Yiming, Zilberzwige‐Tal, Shai, Wei, Guanghong, Dvir, Tal, Gazit, Ehud
Publikováno v:
Advanced Materials; 7/1/2021, Vol. 33 Issue 26, p1-10, 10p