Philips and GlyGenix Therapeutics team up to research ultrasound-mediated gene therapy | Philips Healthcare
LinkedIn Login

Connect healthcare products, companies and hospitals with your LinkedIn network.

Facebook Login

Interact with your Facebook network around healthcare products, companies and hospitals.

Login With Facebook
MedicExchange Login

Enjoy Premium Access as a MedicExchange Member.

       Enter Your Email Address to Receive a
Copy of MedicExhange Member Demograhpics

Facebook Twitter Linkedin
Facebook: MedicExchange
Twitter: MedicExchange
Healthcare Company News Philips Healthcare Philips and GlyGenix Therapeutics team up to research ultrasound-mediated gene therapy

Philips and GlyGenix Therapeutics team up to research ultrasound-mediated gene therapy

Company News - Philips Healthcare

Philips and GlyGenix Therapeutics announced a joint research agreement to explore the feasibility of using ultrasound technologies for gene therapy

Royal Philips Electronics and GlyGenix Therapeutics, Inc. (Woodbridge, Connecticut, USA) announced a joint research agreement to explore the feasibility of using ultrasound technologies for gene therapy.  As per the agreement, companies, together will research the treatment of Glycogen Storage Disease Type 1a (GSD-1a) in pre-clinical studies. The collaboration unites Philips’ expertise in medical imaging technologies for diagnosis and minimally-invasive medical procedures with GlyGenix’s expertise in correcting the genetic defect in GSD-1a.

GSD-1a is an inherited disease that makes it impossible for the body to regulate blood sugar (glucose) levels, due to a defective G6Pase gene that prevents the body from producing an enzyme called glucose-6-phosphatase.  Currently, there are no approved curative treatments for GSD-1a. Correcting the genetic defect that causes it could offer the prospect of an effective therapy that would allow patients with GSD-1a to lead a normal life.

The proposed treatment is known as ultrasound-mediated plasmid DNA (pDNA) delivery. The research program into it will specifically target the expression of a functional human G6Pase therapeutic pDNA to the liver, the primary organ responsible for glycogen storage and glucose release. Pre-clinical studies to investigate the feasibility of the technique will be carried out by Philips Research and GlyGenix Therapeutics in collaboration with the Duke University School of Medicine’s Division of Medical Genetics (Durham, North Carolina, USA).  Compared to current gene therapies that use viral vectors to infect cells, this ultrasound-mediated technique carries no risk of an anti-viral immune or inflammatory response. In addition, this targeted approach could reduce side effects.

By directing focused ultrasound to target organs following DNA delivery, an increase in uptake via a process known as sonoporation has been successfully demonstrated in pre-clinical studies. Sonoporation increases the permeability of cell walls to allow the uptake of large molecules, thereby enabling the delivery of therapeutic genes.

“The potential to deliver genes using a targeted approach will be a significant advance for correcting genetic defects and could offer the prospect of curing hereditary diseases such as GSD-1a,” commented William Fodor, CSO of GlyGenix Therapeutics, Inc. “Philips’ ultrasound-mediated DNA delivery techniques offer the opportunity to deliver genes without the size constraints and limitations of viral packaging systems, and thus open the door to the development of more robust and effective therapeutic genes.”

GlyGenix Therapeutics, Inc. holds a worldwide exclusive license to the G6Pase gene, protein, and related mutations for the treatment of GSD-1a. GlyGenix will seek to obtain orphan drug designation for the treatment of GSD-1a, which would provide 7 years of market exclusivity.

Source: Philips