Close
CDMO Safety Testing 2026
Novotech

GeneQuine Selects Exothera to Support the Next Stage of Its Osteoarthritis Gene Therapy Development

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!

โ€“ Access the Media Pack Now

โ€“ Book a Conference Call

โ€“ Leave Message for Us to Get Back

Related stories

Quantum machine learning in pharma research growth

The convergence of artificial intelligence and quantum processing is opening new avenues for rapid discovery and innovation within the life sciences. By utilizing advanced mathematical models that operate across multi-dimensional datasets, researchers can now identify complex biological patterns and predict molecular behaviors with a speed that surpasses traditional computational methods. This transformation is accelerating the development of novel therapies and providing deeper insights into disease mechanisms, fundamentally altering the trajectory of pharmaceutical research and development.

Quantum sensors enabling advanced drug diagnostics

The landscape of medical diagnostics is being reshaped by the introduction of sensing technologies that operate with atomic-level sensitivity. By providing high-fidelity measurements and real-time data, these tools allow for the detection of subtle biological changes and chemical markers that were previously invisible to conventional equipment. This advancement is enhancing the precision of drug testing and clinical monitoring, leading to earlier disease detection and more effective therapeutic interventions across the global healthcare spectrum.

Quantum computing optimizing pharma supply chains

The global distribution of pharmaceutical products is facing unprecedented challenges that demand a new level of logistical precision and resilience. By utilizing advanced analytical models, companies can now navigate complex international networks with greater efficiency, ensuring that temperature-sensitive medicines and life-saving therapies reach their destinations without delay. This evolution toward a more intelligent and responsive supply chain is critical for maintaining public health and responding effectively to emerging medical needs on a global scale.
- Advertisement -

GeneQuine Biotherapeutics GmbH, a biotech company focused on the development of gene therapy for musculoskeletal disorders, announced that it has contracted Exothera S.A., a full-service Contract Development and Manufacturing Organization (CDMO), to conduct a feasibility study for the development of a large-scale manufacturing process for its osteoarthritis gene therapy product candidate GQ-303 in the highly scalable scale-Xโ„ข fixed-bed bioreactor.

GeneQuine is developing GQ-303, its intraarticular gene therapy candidate, which turns joint cells into factories for production of the therapeutic protein proteoglycan 4. Proteoglycan 4 improves lubrication and inhibits molecular pathways that promote disease progression in osteoarthritis. Besides GQ-303, GeneQuine also develops other gene therapies based on the same vector technology, called helper-dependent adenoviral vectors. Since GeneQuineโ€™s product candidates are being developed for large indications such as osteoarthritis, the company is seeking to establish a large-scale manufacturing process for helper-dependent adenoviral vectors.

Exothera is a leading CDMO specialized in the industrialization of vaccine and gene therapy processes (for both adherent and suspension cell systems). Exotheraโ€™s technology capabilities includes the scale-X platform that covers applications from rapid proof-of-concepts to early-stage process development and large-scale GMP commercial manufacturing. Exothera will collaborate with GeneQuine to perform a feasibility study with the small-scale version of the scale-X bioreactor to assess the suitability of the platform for production of GQ-303 and GeneQuineโ€™s other product candidates.

โ€œNew approaches in bioprocessing will be required to overcome the complexities of gene therapy manufacturing. The right process design and development is a critical early step to create a sustainable gene therapy, said Romain de Rauville, VP Business Development at Exothera. โ€œWe aim to provide our partners with a commercial competitive advantage and help make their innovative treatment affordable for more patients.โ€

โ€œGeneQuineโ€™s aim is to develop gene therapies for large indications. Therefore, it is crucial for us to develop a truly scalable manufacturing process to be able to serve large patient populations with GQ-303 and our other product candidatesโ€, commented Gauthier Poncelet, Manufacturing Manager at GeneQuine. โ€œWe are excited to work with Exothera and leverage their expertise to evaluate the suitability of the scale X bioreactor in our production process.โ€

 

Latest stories

Related stories

Quantum machine learning in pharma research growth

The convergence of artificial intelligence and quantum processing is opening new avenues for rapid discovery and innovation within the life sciences. By utilizing advanced mathematical models that operate across multi-dimensional datasets, researchers can now identify complex biological patterns and predict molecular behaviors with a speed that surpasses traditional computational methods. This transformation is accelerating the development of novel therapies and providing deeper insights into disease mechanisms, fundamentally altering the trajectory of pharmaceutical research and development.

Quantum sensors enabling advanced drug diagnostics

The landscape of medical diagnostics is being reshaped by the introduction of sensing technologies that operate with atomic-level sensitivity. By providing high-fidelity measurements and real-time data, these tools allow for the detection of subtle biological changes and chemical markers that were previously invisible to conventional equipment. This advancement is enhancing the precision of drug testing and clinical monitoring, leading to earlier disease detection and more effective therapeutic interventions across the global healthcare spectrum.

Quantum computing optimizing pharma supply chains

The global distribution of pharmaceutical products is facing unprecedented challenges that demand a new level of logistical precision and resilience. By utilizing advanced analytical models, companies can now navigate complex international networks with greater efficiency, ensuring that temperature-sensitive medicines and life-saving therapies reach their destinations without delay. This evolution toward a more intelligent and responsive supply chain is critical for maintaining public health and responding effectively to emerging medical needs on a global scale.

Quantum security strengthening pharma data protection

Protecting sensitive patient information and proprietary research data is becoming a critical priority as the pharmaceutical industry navigates an increasingly complex digital landscape. By integrating advanced cryptographic methods and secure communication protocols, researchers can ensure the integrity of their clinical findings and the privacy of those involved in medical trials. This shift toward a more resilient digital infrastructure is essential for maintaining public trust and fostering global collaboration in the pursuit of life-saving therapeutic breakthroughs.

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!

โ€“ Access theMedia Pack Now

โ€“ Book a Conference Call

โ€“ Leave Message for Us to Get Back

Translate ยป