CLOSE

Specials

I agree We use cookies on this website to enhance your user experience. By clicking any link on this page you are giving your consent for us to set cookies. More info

Skip to: Curated Story Group 1
Life Sciences Review
US
APAC
CANADA

About Us

Conference

Partner With Us

  • Europe
    • US
    • APAC
    • CANADA
    • LATAM
  • Drug Discovery
    Biotech
    Cancer Immunotherapy
    Cell and Gene Therapy Companies
    Clinical Trial Management
    Drug Discovery and Development
    Genomics
    Therapeutics
    Women's Health
  • Biomanufacturing
    Biomanufacturing
    Bioprocessing
    CDMO
    Clinical Laboratory Services
    CRO
    Supplements
  • Business Services
    Clinical Research Training
    Life Science Consulting
    Life Science Logistics
    Life Science Marketing
  • Leadership Perspectives
  • Innovation Insights
  • News
  • Magazines
×
#

Life Science Review Weekly Brief

Be first to read the latest tech news, Industry Leader's Insights, and CIO interviews of medium and large enterprises exclusively from Life Science Review

Subscribe

loading

Thank you for Subscribing to Life Science Review Weekly Brief

State of the Industry - Cell and Gene Therapy Companies Europe

Cell and Gene Therapy Gains Commercial Ground Across Europe

Cell and gene therapy is entering a pivotal stage across Europe. Regulatory progress, manufacturing investment and demand for personalised medicine are accelerating adoption while healthcare systems and biotechnology companies. 

By

Life Sciences Review | Wednesday, May 13, 2026

Cell and gene therapy is starting to shift from high-risk experimental science into something much closer to a scalable healthcare market. Across Europe, advanced therapies that once existed largely inside research programmes are moving into approved treatment pathways, commercial manufacturing environments and hospital networks preparing for long-term deployment. The pace is still uneven, but the direction is becoming harder to ignore.


What makes the sector so closely watched is the scale of what these therapies are attempting to address. Cell therapies use living cells to restore immune function or repair damaged tissue, while gene therapies target disease at the molecular level by modifying or replacing defective genes. The field now includes CAR T-cell therapies, stem cell platforms, viral vector systems and newer gene-editing technologies pushing deeper into oncology, regenerative medicine and rare disease treatment.


The commercial opportunity surrounding that science has expanded quickly despite financial pressure across broader biotechnology markets. Industry forecasts continue projecting that the global cell and gene therapy sector could surpass $100 billion during the next decade as regulatory approvals increase and clinical adoption widens. Investors and pharmaceutical companies are still treating the category cautiously in some areas, but the market no longer feels speculative in the way it did several years ago.


Europe remains one of the industry’s most important operating environments because of its research infrastructure, pharmaceutical manufacturing base and academic networks. Germany, the UK, France and Switzerland continue attracting investment across translational medicine, clinical development and advanced manufacturing capacity. The region also benefits from long-standing collaboration between universities, biotechnology companies and healthcare systems, which has helped accelerate movement from laboratory research into clinical application.


Regulation has evolved alongside the science. The European Medicines Agency has expanded engagement around advanced therapy medicinal products, or ATMPs, creating faster evaluation pathways while maintaining strict oversight around safety and manufacturing standards. For developers, regulatory clarity matters almost as much as scientific progress because commercialisation timelines remain heavily tied to approval efficiency.


Cancer treatment continues driving much of the sector’s commercial momentum. CAR T-cell therapies have shown particularly strong results in certain blood cancers, especially among patients who exhausted conventional treatment options earlier in their care journey. Healthcare providers and pharmaceutical companies are now focused on reducing manufacturing turnaround times and expanding treatment availability beyond a limited number of specialist centres.


Rare disease treatment is creating another major growth area. Many gene therapies are designed around inherited conditions where existing treatment options are limited or entirely absent. That is forcing healthcare systems into difficult reimbursement discussions because several therapies involve high upfront pricing in exchange for potentially long-term or even permanent therapeutic benefit. Traditional reimbursement structures were not designed for one-time treatments carrying such substantial initial costs.


Manufacturing has become one of the defining commercial challenges across the industry. Cell and gene therapies require highly controlled production environments, strict quality oversight and specialised logistics infrastructure. Scaling those operations while maintaining regulatory compliance remains difficult, particularly for therapies tied to individualised patient treatment processes.


Supply chain reliability carries unusual importance in this sector because many therapies are highly time-sensitive. Delays involving cold-chain logistics, manufacturing schedules or patient coordination can directly affect treatment viability. Unlike conventional pharmaceutical products, many advanced therapies cannot tolerate major disruptions once production begins.


Healthcare systems across Europe are responding by increasing investment in specialised treatment infrastructure. Interest in automation and digitally managed manufacturing environments is also rising as companies look for ways to improve consistency, reduce production variability and support larger therapy volumes without compromising regulatory standards.


Partnership activity continues accelerating across the market. Pharmaceutical companies are collaborating more aggressively with biotechnology firms, research institutions and contract manufacturing organisations as they attempt to strengthen both clinical pipelines and production capabilities. Few companies can independently manage every stage of development, manufacturing and commercialisation inside such a technically demanding environment.


Pricing remains one of the sector’s most politically sensitive issues. Advanced therapies often involve substantial upfront costs because of their complexity, manufacturing requirements and personalised treatment design. European healthcare systems are increasingly exploring outcome-based reimbursement structures and long-term payment models as they attempt to balance innovation access against mounting budget pressure.


Workforce shortages are adding another layer of strain. Cell and gene therapy manufacturing depends on highly specialised expertise spanning molecular biology, bioprocessing, regulatory affairs and clinical manufacturing operations. Competition for experienced talent has intensified as more companies expand production facilities across Europe simultaneously.


Regulatory fragmentation across Europe still complicates commercialisation despite broader progress around approvals. Companies often face different reimbursement rules, manufacturing expectations and clinical access frameworks across national healthcare systems, slowing expansion even after therapies receive regulatory clearance.Infrastructure readiness also varies considerably between markets. Advanced therapies typically require


specialist treatment centres, trained clinicians and long-term patient monitoring systems. Larger healthcare networks are generally better positioned to support commercial deployment at scale, while smaller systems may struggle with both operational capacity and funding requirements.


The market is beginning to distinguish more clearly between companies built around research milestones and those capable of sustained commercial execution. Manufacturing scalability, supply continuity, regulatory coordination and post-treatment monitoring are becoming just as important as scientific innovation itself. Healthcare providers and pharmaceutical partners increasingly want assurance that therapies can move reliably from laboratory success into real-world delivery environments.


The next stage of the sector will likely revolve around accessibility, production efficiency and cost reduction. Interest is growing around allogeneic therapies, automated manufacturing systems and newer gene-editing technologies that could simplify production and shorten treatment timelines over the coming years.


Europe is expected to remain one of the industry’s strongest regions because of continued research investment and increasingly coordinated relationships between regulators, healthcare systems and biotechnology companies. Policy decisions made during the next several years will play a major role in determining how quickly advanced therapies move into mainstream treatment pathways.


Cell and gene therapy is no longer discussed purely as a future category inside biotechnology. It is becoming a more established part of modern medicine, particularly in areas where conventional treatment options remain limited or ineffective.


Healthcare organisations evaluating cell and gene therapy providers in 2026 are looking beyond scientific innovation alone. Manufacturing reliability, regulatory strength, treatment accessibility and long-term clinical value are becoming equally important in a market moving steadily towards commercial maturity.


Life Sciences Review Europe
Follow on LinkedIn

About

  • Home
  • About Us
  • Partner With Us

Stay Connected

  • Subscribe
  • Newsletter
  • Sitemap

Contact Us

  • editor@lifesciencesreview.com
  • sales@lifesciencesreview.com
  • marketing@lifesciencesreview.com

Legal

  • Editorial Policy
  • Privacy Policy
  • Terms of Use

© 2026 Life Sciences Review Europe. All rights reserved. Headquartered in Fort Lauderdale, FL, USA.

This content is copyright protected

However, if you would like to share the information in this article, you may use the link below:

https://www.lifesciencesrevieweurope.com/state-of-industry/cell-and-gene-therapy-gains-commercial-ground-across-europe-nwid-3299.html