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New Vaccine Development Partnerships Established To Tackle SARS-CoV-2 Variants

Consequently, scientists are now being drawn into a game of whack-a-mole with SARS-CoV-2, as demand for the development of new COVID-19 vaccine candidates continues. CEPI is one of many organizations playing a part in this second wave of vaccine development. “Remarkable progress has been made to develop safe and effective vaccines against COVID-19,” said Dr Richard Hatchett, CEO of CEPI, in a recent press release, “But in parallel to the global roll out of vaccines we must now redouble our R&D efforts so we have the tools we need to tackle emerging variants of the virus.” Expanding existing partnerships

Celiac Disease Drugs Market Competitive Landscape 2020, Global Analysis by Size, Growth Rate, Key Tr

Search jobs 22-Feb-2021 Celiac Disease Drugs Market Competitive Landscape 2020, Global Analysis by Size, Growth Rate, Key Trends, drug type, diagnosis, Treatment and Regional Forecast Celiac disease is an autoimmune disorder that cause damage and inflammation to the small intestine and mostly found in people who are hereditarily inclined towards gluten. Some of the symptoms of celiac disease are gastrointestinal malfunctions such as diarrhea, abdominal distention, loss of appetite, and among kids’ failure to grow normally and also sometimes loss of lymphocytes. Coeliac disease is triggered when the body reacts to gluten, generally found in wheat and in other grains such as barley and rye.

Nanotechnology Now - Press Release: Pore-like proteins designed from scratch: By creating barrel-shaped proteins that embed into lipid membranes, biochemist have expanded the bioengineering toolkit

Our NanoNews Digest Sponsors Home > Press > Pore-like proteins designed from scratch: By creating barrel-shaped proteins that embed into lipid membranes, biochemist have expanded the bioengineering toolkit Abstract: In a milestone for biomolecular design, a team of scientists has succeeded in creating new proteins that adopt one of the most complex folds known to molecular biology. These designer proteins were shown in the lab to spontaneously fold into their intended structures and embed into lipid membranes. Reported in the journal Science, this research opens the door to the construction of custom nanoscale tools for advanced filtration and DNA sequencing. Pore-like proteins designed from scratch: By creating barrel-shaped proteins that embed into lipid membranes, biochemist have expanded the bioengineering toolkit

Pore-like proteins designed from scratch

 E-Mail IMAGE: Newly designed beta-barrel proteins fold spontaneously into their intended structures and embed into lipid membranes. How the proteins were created from scratch, and their future potential in the construction of. view more  Credit: Ian Haydon, UW Medicine Institute for Protein Design In a milestone for biomolecular design, a team of scientists has succeeded in creating new proteins that adopt one of the most complex folds known to molecular biology. These designer proteins were shown in the lab to spontaneously fold into their intended structures and embed into lipid membranes. Reported in the journal Science, this research opens the door to the construction of custom nanoscale tools for advanced filtration and DNA sequencing.

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