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Updated: Jun 22, 2026

Defining Gene Functions in Tumorigenesis by Ex vivo Ablation of Floxed Alleles in Malignant Peripheral Nerve Sheath Tumor Cells
Published on: August 25, 2021
Induction of tumor cell apoptosis by TRAIL gene therapy
1Department of Urology, University of Iowa, Iowa City, IA, USA.
Abstract:
Members of the tumor necrosis factor (TNF) superfamily influence a variety of immunological functions, including cellular activation, proliferation, and death, upon interaction with a corresponding superfamily of receptors. Whereas interest in the apoptosis-inducing molecules TNF and Fas ligand has peaked because of their participation in events such as autoimmune disorders, activation-induced cell death, immune privilege, and tumor evasion from the immune system, another death-inducing family member, TNF-related apoptosis-inducing ligand (TRAIL), or Apo-2 ligand, has generated excitement because of its unique ability to induce apoptosis in a wide range of transformed cell lines but not in normal tissues. TRAIL is well tolerated when given to healthy animals, and no observable histological or functional changes have been observed in any of the tissues or organs examined. Moreover, multiple injections of soluble TRAIL into mice beginning the day after tumor implantation can significantly suppress the growth of the tumors, with many animals becoming tumor-free. One potential drawback to these findings is that large amounts of soluble TRAIL may be required to inhibit tumor formation, possibly because of the pharmacokinetic profile of soluble TRAIL that indicates that, after intravenous injection, the majority of the protein is rapidly cleared. Increasing the in vivo half-life of recombinant soluble TRAIL or developing an alternative means of delivery may increase the relative tumoricidal activity of TRAIL such that larger, more established tumors could be eradicated as efficiently as smaller tumors. The information presented here describes the production of an adenoviral vector engineered to carry the complementary DNA (cDNA) for murine TRAIL (hTRAIL).
Insights
Tumor necrosis factor-related apoptosis-inducing ligand (TRAIL) shows promise for cancer treatment by selectively inducing apoptosis in cancer cells. Researchers developed an adenoviral vector to enhance TRAIL delivery and efficacy against tumors.
Area of Science:
- Immunology
- Molecular Biology
- Oncology
Background:
- Tumor necrosis factor (TNF) superfamily members regulate immune responses, including cell death.
- TNF-related apoptosis-inducing ligand (TRAIL) selectively induces apoptosis in cancer cells but not normal tissues.
- TRAIL demonstrates anti-tumor activity in preclinical models but faces pharmacokinetic challenges.
Purpose of the Study:
- To develop an adenoviral vector for enhanced delivery of TRAIL.
- To improve TRAIL's tumoricidal activity and overcome pharmacokinetic limitations.
Main Methods:
- Production of an adenoviral vector carrying the complementary DNA (cDNA) for murine TRAIL (mTRAIL).
Main Results:
- Adenoviral vector successfully engineered to express mTRAIL.
- TRAIL demonstrated selective apoptosis induction in transformed cell lines.
- Preclinical studies showed TRAIL suppressed tumor growth effectively.
Conclusions:
- Adenoviral-mediated delivery of TRAIL offers a potential strategy to enhance anti-tumor efficacy.
- Further development may overcome TRAIL's pharmacokinetic limitations for improved cancer therapy.
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