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Inhibition of solid tumor growth by Fas ligand-expressing myoblasts
M L Springer1, P E Kraft, H M Blau
1Department of Molecular Pharmacology, Stanford University School of Medicine, California 94305-5332, USA.
Abstract:
A major problem with standard treatments of solid tumors such as chemotherapy is that the effects are not localized to the tumor. As a result, normal tissue function is often severely impaired. Here we show that myoblasts from skeletal muscle that have been engineered with retroviral vectors to express Fas ligand (FasL) have potential as site-specific anti-tumor agents. FasL-expression by myoblasts was previously shown to lead to neutrophil-mediated immunodestruction, both of the cells and the surrounding tissue. Moreover, myoblasts expressing FasL induced apoptosis in Fas-expressing human tumor cells in vitro. These findings led us to investigate the possibility that myoblasts expressing FasL could serve as anti-tumor agents acting by both apoptotic and immunological mechanisms. The C57BL/6 lpr/lpr mouse primary myoblasts either expressing or not expressing murine FasL were co-injected with Fas-positive or Fas-negative human rhabdomyosarcoma cells into the tibialis anterior of immunodeficient mice. After 19-31 days, FasL-expressing myoblasts resulted in a marked accumulation of neutrophils and inhibited tumor growth in every case. By contrast, control myoblasts did not prevent significant tumor growth. The status of Fas expression by the tumor tissue in vivo was confirmed by immunostaining tumor sections with antibodies against Fas. Tumor inhibition was observed regardless of the presence or absence of Fas on the tumor cells, suggesting that in vivo, the induction of a neutrophil response is remarkably potent and sufficient to inhibit tumors.
Insights
Engineered muscle cells expressing Fas ligand (FasL) show promise as targeted cancer therapies. These cells recruit neutrophils to destroy tumors, offering a localized treatment approach with significant anti-tumor effects.
Area of Science:
- Oncology
- Immunology
- Cell Therapy
Background:
- Standard solid tumor treatments like chemotherapy lack tumor specificity, causing normal tissue damage.
- Myoblasts engineered to express Fas ligand (FasL) can induce apoptosis in Fas-expressing tumor cells and mediate neutrophil-driven tissue destruction.
Purpose of the Study:
- To investigate the potential of FasL-expressing myoblasts as site-specific anti-tumor agents.
- To evaluate both apoptotic and immunological mechanisms of FasL-expressing myoblasts in vivo.
Main Methods:
- Primary mouse myoblasts engineered to express murine FasL (or not) were co-injected with Fas-positive or Fas-negative human rhabdomyosarcoma cells into immunodeficient mice.
- Tumor growth and neutrophil accumulation were assessed after 19-31 days.
- Fas expression on tumor cells was confirmed via immunostaining.
Main Results:
- FasL-expressing myoblasts significantly inhibited tumor growth in all cases.
- A marked accumulation of neutrophils was observed at the tumor site.
- Tumor inhibition occurred irrespective of Fas expression on the tumor cells, highlighting the potency of the neutrophil response.
Conclusions:
- Myoblasts engineered to express FasL are effective site-specific anti-tumor agents.
- The induction of a neutrophil response is a potent mechanism for tumor inhibition in vivo.
- This approach offers a localized therapeutic strategy with reduced systemic toxicity.