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Updated: Feb 2, 2026

Establishment and Propagation of Human Retinoblastoma Tumors in Immune Deficient Mice
Published on: August 4, 2011
ACVR1C/SMAD2 signaling promotes invasion and growth in retinoblastoma
Laura Asnaghi1, David T White2, Nolan Key1
1Department of Pathology, Johns Hopkins University, School of Medicine, Baltimore, MD, USA.
Abstract:
Retinoblastoma is the most common intraocular cancer in children. While the primary tumor can often be treated by local or systemic chemotherapy, metastatic dissemination is generally resistant to therapy and remains a leading cause of pediatric cancer death in much of the world. In order to identify new therapeutic targets in aggressive tumors, we sequenced RNA transcripts in five snap frozen retinoblastomas which invaded the optic nerve and five which did not. A three-fold increase was noted in mRNA levels of ACVR1C/ALK7, a type I receptor of the TGF-β family, in invasive retinoblastomas, while downregulation of DACT2 and LEFTY2, negative modulators of the ACVR1C signaling, was observed in most invasive tumors. A two- to three-fold increase in ACVR1C mRNA was also found in invasive WERI Rb1 and Y79 cells as compared to non-invasive cells in vitro. Transcripts of ACVR1C receptor and its ligands (Nodal, Activin A/B, and GDF3) were expressed in six retinoblastoma lines, and evidence of downstream SMAD2 signaling was present in all these lines. Pharmacological inhibition of ACVR1C signaling using SB505124, or genetic downregulation of the receptor using shRNA potently suppressed invasion, growth, survival, and reduced the protein levels of the mesenchymal markers ZEB1 and Snail. The inhibitory effects on invasion, growth, and proliferation were recapitulated by knocking down SMAD2, but not SMAD3. Finally, in an orthotopic zebrafish model of retinoblastoma, a 55% decrease in tumor spread was noted (p = 0.0026) when larvae were treated with 3 µM of SB505124, as compared to DMSO. Similarly, knockdown of ACVR1C in injected tumor cells using shRNA also resulted in a 54% reduction in tumor dissemination in the zebrafish eye as compared to scrambled shRNA control (p = 0.0005). Our data support a role for the ACVR1C/SMAD2 pathway in promoting invasion and growth of retinoblastoma.
Insights
ACVR1C signaling drives retinoblastoma invasion and growth. Inhibiting this pathway with SB505124 or shRNA significantly reduced tumor spread and proliferation in preclinical models, identifying a potential therapeutic target for aggressive retinoblastoma.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Retinoblastoma is a common pediatric eye cancer, with metastatic disease being a major cause of mortality.
- Current therapies are often ineffective against aggressive, metastatic retinoblastoma, highlighting the need for novel therapeutic targets.
Purpose of the Study:
- To identify molecular targets driving retinoblastoma invasion and metastasis.
- To investigate the role of the ACVR1C/ALK7 signaling pathway in retinoblastoma progression.
Main Methods:
- RNA sequencing of invasive and non-invasive retinoblastomas.
- Analysis of ACVR1C and its related signaling molecules in retinoblastoma cell lines.
- Pharmacological inhibition and genetic knockdown of ACVR1C and SMAD2/3.
- Orthotopic zebrafish model of retinoblastoma to assess therapeutic efficacy.
Main Results:
- Increased ACVR1C mRNA levels and decreased expression of its negative modulators (DACT2, LEFTY2) in invasive retinoblastomas.
- ACVR1C and its ligands are expressed in retinoblastoma cells, activating SMAD2 signaling.
- Inhibition of ACVR1C signaling suppressed retinoblastoma invasion, growth, and survival, reducing mesenchymal markers.
- SMAD2 knockdown mimicked these inhibitory effects, while SMAD3 knockdown did not.
- Pharmacological inhibition and ACVR1C knockdown significantly reduced tumor spread in a zebrafish model.
Conclusions:
- The ACVR1C/SMAD2 pathway plays a critical role in promoting retinoblastoma invasion and growth.
- Targeting ACVR1C signaling presents a promising therapeutic strategy for aggressive and metastatic retinoblastoma.
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