Close
Smartlab Europe
Inizio Ignite

REGENXBIO Announces Orphan Drug Designation Granted to RGX-202, a Novel Gene Therapy Candidate for the Treatment of Duchenne Muscular Dystrophy

Note* - All images used are for editorial and illustrative purposes only and may not originate from the original news provider or associated company.

Subscribe

- Never miss a story with notifications

- Gain full access to our premium content

- Browse free from any location or device.

Media Packs

Expand Your Reach With Our Customized Solutions Empowering Your Campaigns To Maximize Your Reach & Drive Real Results!

– Access the Media Pack Now

– Book a Conference Call

Leave Message for Us to Get Back

Related stories

Predictive Analytics in Labs: Driving Smarter Decisions in Pharma

The application of statistical algorithms and machine learning techniques to historical research data is enabling scientists to anticipate experimental outcomes and identify emerging patterns with unprecedented accuracy. By moving from a retrospective view of data to a forward-looking perspective, research facilities can optimize their strategies and focus their resources on the most promising therapeutic avenues.

IoT Applications Enhancing Laboratory Operational Efficiency

The integration of internet-connected sensors and smart devices is fundamentally reshaping how research facilities monitor their environment and manage their instrumentation. By providing a constant stream of real-time data, these technological advancements allow for a more granular level of control over laboratory operations, ensuring that the delicate conditions required for high-stakes pharmaceutical research are maintained with absolute precision.

Optimizing Pharma Workflows with Integrated Lab Software Solutions

The modern laboratory environment requires a unified approach to data management and process control to remain competitive. By bridging the gap between disparate instruments and legacy databases, research facilities can eliminate operational silos and create a high-speed environment where innovation is no longer hindered by fragmented digital infrastructure.
- Advertisement -

REGENXBIO Inc. announced the U.S. FDA granted Orphan Drug Designation for RGX-202, a potential one-time gene therapy for the treatment of Duchenne muscular dystrophy (Duchenne). RGX-202 is designed to deliver a novel, optimized microdystrophin transgene with a unique C-terminal domain and a muscle specific promoter to support targeted therapy for improved resistance to muscle damage associated with Duchenne. RGX-202 uses REGENXBIO’s proprietary NAV® AAV8 vector.

“This important designation is a milestone in the development of RGX-202 and highlights the need for potential new treatment options for patients with Duchenne,” said Olivier Danos, Ph.D., Chief Scientific Officer of REGENXBIO. “The novel microdystrophin transgene in RGX-202 includes coding regions that retain essential functional elements of naturally occurring dystrophin to potentially improve muscle strength and resistance in patients with Duchenne. We look forward to advancing this one-time gene therapy into the clinic.”

REGENXBIO expects to submit an Investigational New Drug (IND) application to the FDA for RGX-202 by the end of 2021. Commercial-scale cGMP material has already been produced at 1,000 liter capacity using REGENXBIO’s suspension cell culture manufacturing process, and the Company’s internal cGMP facility is expected to allow for production up to 2,000 liters for the clinical development of RGX-202.

FDA Orphan Drug Designation is granted to investigational therapies addressing rare medical diseases or conditions that affect fewer than 200,000 people in the United States. Orphan drug status provides benefits to drug developers, including assistance in the drug development process, tax credits for clinical costs, exemptions from certain FDA fees and seven years of post-approval marketing exclusivity.

 

About REGENXBIO Inc.

REGENXBIO is a leading clinical-stage biotechnology company seeking to improve lives through the curative potential of gene therapy. REGENXBIO’s NAV® Technology Platform, a proprietary adeno-associated virus (AAV) gene delivery platform, consists of exclusive rights to more than 100 novel AAV vectors, including AAV7, AAV8, AAV9 and AAVrh10. REGENXBIO and its third-party NAV Technology Platform Licensees are applying the NAV Technology Platform in the development of a broad pipeline of candidates in multiple therapeutic areas.

Latest stories

Related stories

Predictive Analytics in Labs: Driving Smarter Decisions in Pharma

The application of statistical algorithms and machine learning techniques to historical research data is enabling scientists to anticipate experimental outcomes and identify emerging patterns with unprecedented accuracy. By moving from a retrospective view of data to a forward-looking perspective, research facilities can optimize their strategies and focus their resources on the most promising therapeutic avenues.

IoT Applications Enhancing Laboratory Operational Efficiency

The integration of internet-connected sensors and smart devices is fundamentally reshaping how research facilities monitor their environment and manage their instrumentation. By providing a constant stream of real-time data, these technological advancements allow for a more granular level of control over laboratory operations, ensuring that the delicate conditions required for high-stakes pharmaceutical research are maintained with absolute precision.

Optimizing Pharma Workflows with Integrated Lab Software Solutions

The modern laboratory environment requires a unified approach to data management and process control to remain competitive. By bridging the gap between disparate instruments and legacy databases, research facilities can eliminate operational silos and create a high-speed environment where innovation is no longer hindered by fragmented digital infrastructure.

Advanced Robotics Driving Pharmaceutical Lab Efficiency

The implementation of high-speed robotic systems and automated handling technologies is fundamentally altering the productivity of modern research facilities. By taking over repetitive physical tasks and operating with sub-millimeter precision, these mechanical innovators are allowing scientific staff to redirect their cognitive energy toward complex analysis and the development of breakthrough therapies.

Subscribe

- Never miss a story with notifications

- Gain full access to our premium content

- Browse free from any location or device.

Media Packs

Expand Your Reach With Our Customized Solutions Empowering Your Campaigns To Maximize Your Reach & Drive Real Results!

– Access theMedia Pack Now

– Book a Conference Call

Leave Message for Us to Get Back

Translate »