Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Liquidia Technologies Announces Collaboration with Abbott to Develop siRNA Therapeutics

Abstract:
Liquidia Technologies, Inc. announced today that it has entered into a collaboration and license agreement with Abbott to develop PRINT® nanoparticles for the delivery of siRNA-based therapeutics. Liquidia's PRINT technology offers the ability to fabricate nanoparticles of precisely defined size, shape, surface chemistry, and composition, which offers the potential to develop safer and more effective therapies.

Liquidia Technologies Announces Collaboration with Abbott to Develop siRNA Therapeutics

Research Triangle Park, NC | Posted on January 7th, 2009

"Delivery has been the most significant hurdle to realizing the broad potential of siRNA therapeutics. We are very pleased to form a partnership with Abbott, which we hope will enable significant progress in addressing this problem," said Neal Fowler, Chief Executive Officer of Liquidia. "By combining Abbott's research and development capabilities with Liquidia's particle design and delivery expertise, we hope to enable the use of siRNA for therapy and provide more targeted, effective treatment options for cancer patients."

Under the terms of the agreement, Liquidia will provide Abbott with certain rights to PRINT technology for the development and commercialization of siRNA therapeutics. Financial terms were not disclosed.

About siRNA Therapeutics - Short interfering RNA (siRNA) are small, double stranded RNA molecules that selectively silence and regulate the activity of human genes through the process of RNA interference (RNAi). Since many diseases are caused by the inappropriate expression of certain genes, the ability to selectively silence disease-associated genes represents a novel and powerful method for treating disease. The primary challenge to achieving broad application of siRNA therapeutics is effective delivery of the molecules to target tissues and cell types.

####

About Liquidia Technologies, Inc.
Liquidia Technologies Inc. is a privately-held nanotechnology company that designs, develops, and manufactures precisely engineered particles and films for a variety of life and materials science applications. Within life sciences, Liquidia is focused on developing novel vaccines and Engineered Drug Therapies™ for nucleic acid delivery and inhaled therapeutics. The company was founded in 2004 on the discoveries of Professor Joseph DeSimone and colleagues at the University of North Carolina, Chapel Hill and is located in Research Triangle Park, North Carolina.

For more information, please click here

Contacts:
Liquidia Technologies
Elle Pishny
919-328-4361

Copyright © Business Wire 2008

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related News Press

News and information

Researchers are cracking the code on solid-state batteries: Using a combination of advanced imagery and ultra-thin coatings, University of Missouri researchers are working to revolutionize solid-state battery performance February 28th, 2025

Unraveling the origin of extremely bright quantum emitters: Researchers from Osaka University have discovered the fundamental properties of single-photon emitters at an oxide/semiconductor interface, which could be crucial for scalable quantum technology February 28th, 2025

Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025

Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025

Nanomedicine

Multiphoton polymerization: A promising technology for precision medicine February 28th, 2025

Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025

SMART researchers pioneer first-of-its-kind nanosensor for real-time iron detection in plants February 28th, 2025

How a milk component could eliminate one of the biggest challenges in treating cancer and other disease, including rare diseases: Nebraska startup to use nanoparticles found in milk to target therapeutics to specific cells January 17th, 2025

Announcements

Development of 'transparent stretchable substrate' without image distortion could revolutionize next-generation displays Overcoming: Poisson's ratio enables fully transparent, distortion-free, non-deformable display substrates February 28th, 2025

Unraveling the origin of extremely bright quantum emitters: Researchers from Osaka University have discovered the fundamental properties of single-photon emitters at an oxide/semiconductor interface, which could be crucial for scalable quantum technology February 28th, 2025

Closing the gaps — MXene-coating filters can enhance performance and reusability February 28th, 2025

Rice researchers harness gravity to create low-cost device for rapid cell analysis February 28th, 2025

Patents/IP/Tech Transfer/Licensing

Getting drugs across the blood-brain barrier using nanoparticles March 3rd, 2023

Study finds nanomedicine targeting lymph nodes key to triple negative breast cancer treatment: In mice, nanomedicine can remodel the immune microenvironment in lymph node and tumor tissue for long-term remission and lung tumor elimination in this form of metastasized breast cance May 13th, 2022

Metasurfaces control polarized light at will: New research unlocks the hidden potential of metasurfaces August 13th, 2021

Arrowhead Pharmaceuticals Announces Closing of Agreement with Takeda November 27th, 2020

Alliances/Trade associations/Partnerships/Distributorships

Manchester graphene spin-out signs $1billion game-changing deal to help tackle global sustainability challenges: Landmark deal for the commercialisation of graphene April 14th, 2023

Chicago Quantum Exchange welcomes six new partners highlighting quantum technology solutions, from Chicago and beyond September 23rd, 2022

CEA & Partners Present ‘Powerful Step Towards Industrialization’ Of Linear Si Quantum Dot Arrays Using FDSOI Material at VLSI Symposium: Invited paper reports 3-step characterization chain and resulting methodologies and metrics that accelerate learning, provide data on device pe June 17th, 2022

University of Illinois Chicago joins Brookhaven Lab's Quantum Center June 10th, 2022

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project