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Updated: Jun 5, 2026

Three-Dimensional (3D) Tumor Spheroid Invasion Assay
Published on: May 1, 2015
Notch3 activation promotes invasive glioma formation in a tissue site-specific manner
Tarran J Pierfelice1, Karisa C Schreck, Louis Dang
1Institute for Cell Engineering, Johns Hopkins University School of Medicine, Baltimore, Maryland, USA.
Abstract:
Although Notch signaling has been widely implicated in neoplastic growth, direct evidence for in vivo initiation of neoplasia by the pathway in murine models has been limited to tumors of lymphoid, breast, and choroid plexus cells. To examine tumorigenic potential in the eye and brain, we injected retroviruses encoding activated forms of Notch1, Notch2, or Notch3 into embryonic mice. Interestingly, the majority of animals infected with active Notch3 developed proliferative lesions comprised of pigmented ocular choroid cells, retinal and optic nerve glia, and lens epithelium. Notch3-induced lesions in the choroid, retina, and optic nerve were capable of invading adjacent tissues, suggesting that they were malignant tumors. Although Notch3 activation induced choroidal tumors in up to 67% of eyes, Notch1 or Notch2 activation never resulted in such tumors. Active forms of Notch1 and Notch2 did generate a few small proliferative glial nodules in the retina and optic nerve, whereas Notch3 was 10-fold more efficient at generating growths, many of which were large invasive gliomas. Expression of active Notch1/Notch3 chimeric receptors implicated the RBPjk-association molecule and transactivation domains of Notch3 in generating choroidal and glial tumors, respectively. In contrast to our findings in the optic nerve and retina, introduction of active Notch receptors, including Notch3, into the brain never caused glial tumors. Our results highlight the differential ability of Notch receptor paralogs to initiate malignant tumor formation, and suggest that glial precursors of the optic nerve, but not the brain, are susceptible to transformation by Notch3.
Insights
Notch3 activation initiated malignant tumors in the eye, specifically in choroidal and optic nerve glial cells, unlike Notch1 or Notch2. This highlights Notch3
Area of Science:
- Oncology
- Developmental Biology
- Neuroscience
Background:
- Notch signaling is implicated in neoplastic growth, but in vivo initiation evidence is limited.
- Previous studies focused on lymphoid, breast, and choroid plexus tumors.
Purpose of the Study:
- To investigate the tumorigenic potential of Notch signaling in the eye and brain.
- To determine the differential roles of Notch1, Notch2, and Notch3 in tumor initiation.
Main Methods:
- Injected retroviruses encoding activated Notch1, Notch2, or Notch3 into embryonic mice.
- Analyzed tumor development in ocular and neural tissues.
- Used chimeric receptors to identify critical Notch domains.
Main Results:
- Notch3 activation induced malignant choroidal and optic nerve glial tumors in mice.
- Notch3 was significantly more potent than Notch1 or Notch2 in tumor formation.
- Brain glial cells were resistant to Notch-induced tumorigenesis.
Conclusions:
- Notch3 paralog has a unique ability to initiate malignant tumor formation in ocular and optic nerve glial cells.
- Optic nerve glial precursors are susceptible to Notch3-mediated transformation, but brain glial cells are not.
- Findings reveal differential oncogenic potential among Notch receptor paralogs.
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