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Published on: May 24, 2024
Fn14•TRAIL effectively inhibits hepatocellular carcinoma growth
Alexandra Aronin1, Shira Amsili, Tatyana B Prigozhina
1Nephrology and Hypertension Services, Hadassah-Hebrew University Medical Center, Jerusalem, Israel.
Background:
New strategies for the treatment of hepatocellular carcinoma (HCC) are needed, given that currently available chemotherapeutics are inefficient. Since tumor growth reflects the net balance between pro-proliferative and death signaling, agents shifting the equilibrium toward the latter are of considerable interest. The TWEAK:Fn14 signaling axis promotes tumor cell proliferation and tumor angiogenesis, while TRAIL:TRAIL-receptor (TRAIL-R) interactions selectively induce apoptosis in malignant cells. Fn14•TRAIL, a fusion protein bridging these two pathways, has the potential to inhibit tumor growth, by interfering with TWEAK:Fn14 signaling, while at the same time enforcing TRAIL:TRAIL-R-mediated apoptosis. Consequently, Fn14•TRAIL's capacity to inhibit HCC growth was tested.
Results:
Fn14•TRAIL induced robust apoptosis of multiple HCC cell lines, while sparing non-malignant hepatocyte cell lines. Differential susceptibility to this agent did not correlate with expression levels of TRAIL, TRAIL-R, TWEAK and Fn14 by these lines. Fn14•TRAIL was more potent than soluble TRAIL, soluble Fn14, or a combination of the two. The requirement of both of Fn14•TRAIL's molecular domains for function was established using blocking antibodies directed against each of them. Subcutaneous injection of Fn14•TRAIL abrogated HCC growth in a xenograft model, and was well tolerated by the mice.
Conclusions:
In this study, Fn14•TRAIL, a multifunctional fusion protein originally designed to treat autoimmunity, was shown to inhibit the growth of HCC, both in vitro and in vivo. The demonstration of this fusion protein's potent anti-tumor activity suggests that simultaneous targeting of two signaling axes by a single fusion can serve as a basis for highly effective anti-cancer therapies.
Insights
A novel fusion protein, Fn14•TRAIL, effectively inhibits hepatocellular carcinoma (HCC) growth by inducing cancer cell death. This bifunctional agent shows promise for new HCC therapies.
Area of Science:
- Oncology
- Molecular Biology
- Drug Development
Background:
- Hepatocellular carcinoma (HCC) treatment remains a challenge due to inefficient chemotherapeutics.
- Tumorigenesis involves a balance between pro-proliferative and cell death signaling pathways.
- Targeting the TWEAK:Fn14 axis (pro-proliferative) and TRAIL:TRAIL-receptor (TRAIL-R) axis (apoptotic) offers a therapeutic strategy.
Purpose of the Study:
- To evaluate the efficacy of Fn14•TRAIL, a fusion protein targeting both TWEAK:Fn14 and TRAIL:TRAIL-R pathways, in inhibiting HCC growth.
- To assess the safety and tolerability of Fn14•TRAIL in a preclinical model.
Main Methods:
- In vitro apoptosis assays using multiple HCC cell lines and non-malignant hepatocytes.
- In vivo efficacy study using a subcutaneous HCC xenograft mouse model.
- Assessment of protein expression levels (TRAIL, TRAIL-R, TWEAK, Fn14) and functional characterization using blocking antibodies.
Main Results:
- Fn14•TRAIL induced significant apoptosis in HCC cell lines but not in normal hepatocytes.
- The fusion protein demonstrated superior potency compared to individual components or their combination.
- Fn14•TRAIL effectively suppressed HCC tumor growth in vivo and was well-tolerated in mice.
Conclusions:
- Fn14•TRAIL exhibits potent anti-cancer activity against HCC both in vitro and in vivo.
- This multifunctional fusion protein represents a promising therapeutic candidate for HCC.
- Simultaneous targeting of multiple signaling pathways via a single fusion protein offers a novel approach for effective anti-cancer therapies.
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