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Updated: Apr 18, 2026

An Efficient Method for Adenovirus Production
Published on: June 10, 2021
Engineered adenoviruses combine enhanced oncolysis with improved virus production by mesenchymal stromal carrier
Katharina Hammer1, Adam Kazcorowski2, Li Liu2
1Oncolytic Adenovirus Group, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Abstract:
Oncolytic viruses have demonstrated in pre-clinical and clinical studies safety and a unique pleiotropic activity profile of tumor destruction. Yet, their delivery suffers from virus inactivation by blood components and sequestration to healthy tissues. Therefore, mesenchymal stromal cells (MSCs) have been applied as carrier cells for shielded virus delivery to tumors after ex vivo infection with oncolytic viruses. However, infection and particle production by MSCs have remained unsatisfying. Here, we report engineered oncolytic adenoviruses (OAds) for improved virus production and delivery by MSCs. OAds are uniquely amenable to molecular engineering, which has facilitated improved tumor cell destruction. But for MSC-mediated regimens, OAd engineering needs to achieve efficient infection and replication in both MSCs and tumor cells. We show that an Ad5/3 chimeric OAd capsid, containing the adenovirus serotype 3 cell-binding domain, strongly increases the entry into human bone marrow-derived MSCs and into established and primary pancreatic cancer cells. Further, we reveal that OAd with engineered post-entry functions-by deletion of the anti-apoptotic viral gene E1B19K or expression of the death ligand TRAIL--markedly increased virus titers released from MSCs, while MSC migration was not hampered. Finally, these virus modifications, or viral expression of FCU1 for local 5-FC prodrug activation, improved tumor cell killing implementing complementary cytotoxicity profiles in a panel of pancreatic cancer cell cultures. Together, our study establishes post-entry modification of OAd replication for improving virus delivery by carrier cells and suggests a panel of optimized OAds for future clinical development in personalized treatment of pancreatic cancer.
Insights
Engineered oncolytic adenoviruses (OAds) show improved delivery by mesenchymal stromal cells (MSCs) for pancreatic cancer. Modifications enhance virus production and tumor cell killing, paving the way for personalized cancer treatments.
Area of Science:
- Oncolytic virotherapy
- Cancer biology
- Gene therapy
Background:
- Oncolytic viruses offer tumor destruction but face delivery challenges like inactivation and off-target effects.
- Mesenchymal stromal cells (MSCs) are explored as carriers for oncolytic viruses, but their infection and virus production efficiency remain suboptimal.
Purpose of the Study:
- To engineer oncolytic adenoviruses (OAds) for enhanced production and delivery by MSCs.
- To improve MSC-mediated delivery of OAds for pancreatic cancer treatment.
Main Methods:
- Developed Ad5/3 chimeric OAds with an adenovirus serotype 3 binding domain for improved MSC and cancer cell entry.
- Engineered OAds by deleting the E1B19K gene or expressing TRAIL to enhance virus release from MSCs.
- Assessed viral modifications for improved tumor cell killing and prodrug activation (FCU1/5-FC).
Main Results:
- The Ad5/3 capsid significantly increased OAd entry into MSCs and pancreatic cancer cells.
- Engineered OAds showed markedly increased virus titers released from MSCs without affecting MSC migration.
- Modified OAds and FCU1 expression improved pancreatic cancer cell killing through complementary mechanisms.
Conclusions:
- Post-entry modification of OAd replication enhances virus delivery by carrier cells.
- Optimized OAds demonstrate potential for improved pancreatic cancer treatment and personalized medicine.

