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Updated: Jun 1, 2025

A Model for Perineural Invasion in Head and Neck Squamous Cell Carcinoma
Published on: January 5, 2017
Head and neck paraganglioma in Pacak-Zhuang syndrome
Jared S Rosenblum1, Yasemin Cole1, Danielle Dang1
1Neuro-Oncology Branch, National Cancer Institute, National Institutes of Health, Bethesda, MD, United States.
Background:
Head and neck paragangliomas (HNPGLs) are typically slow-growing, hormonally inactive tumors of parasympathetic paraganglia. Inactivation of prolyl-hydroxylase domain-containing 2 protein causing indirect gain-of-function of hypoxia-inducible factor-2α (HIF-2α), encoded by EPAS1, was recently shown to cause carotid body hyperplasia. We previously described a syndrome with multiple sympathetic paragangliomas caused by direct gain-of-function variants in EPAS1 (Pacak-Zhuang syndrome, PZS) and developed a corresponding mouse model.
Methods:
We evaluated a cohort of patients with PZS (n = 9) for HNPGL by positron emission tomography, magnetic resonance imaging, and computed tomography and measured carotid body size compared to literature reference values. Resected tumors were evaluated by histologic sectioning and staining. We evaluated the corresponding mouse model at multiple developmental stages (P8 and adult) for lesions of the head and neck by high resolution ex vivo imaging and performed immunohistochemical staining on histologic sections of the identified lesions.
Results:
hree patients had imaging consistent with HNPGL, one of which warranted resection and was confirmed on histology. Three additional patients had carotid body enlargement (Z-score > 2.0), and 3 had carotid artery malformations. We found that 9 of 10 adult variant mice had carotid body tumors and 6 of 8 had a paraganglioma on the cranio-caval vein, the murine homologue of the superior vena cava; these were also found in 4 of 5 variant mice at post-natal day 8. These tumors and the one resected from a patient were positive for tyrosine hydroxylase, synaptophysin, and chromogranin A. Brown fat in a resected patient tumor carried the EPAS1 pathogenic variant.
Conclusions:
These findings (1) suggest HNPGL as a feature of PZS and (2) show that these pathogenic variants are sufficient to cause the development of these tumors, which we believe represents a continuous spectrum of disease starting from hyperplasia.
Insights
Pacak-Zhuang syndrome (PZS) is linked to head and neck paragangliomas (HNPGLs). Genetic variants in EPAS1 cause these tumors, suggesting a spectrum of disease from hyperplasia to tumors.
Area of Science:
- Endocrinology
- Oncology
- Genetics
Background:
- Head and neck paragangliomas (HNPGLs) are rare tumors.
- EPAS1 gene variants are linked to paraganglioma development.
- Pacak-Zhuang syndrome (PZS) involves sympathetic paragangliomas due to EPAS1 gain-of-function variants.
Purpose of the Study:
- To investigate HNPGLs as a feature of PZS.
- To evaluate the role of EPAS1 variants in PZS-related tumor development.
- To characterize PZS in a patient cohort and a mouse model.
Main Methods:
- Patient cohort (n=9) evaluated for HNPGL using advanced imaging (PET, MRI, CT).
- Carotid body size measured and compared to reference values.
- Mouse model evaluated for head and neck lesions using ex vivo imaging and immunohistochemistry.
Main Results:
- Three patients showed imaging consistent with HNPGL; one confirmed by histology.
- Three patients had enlarged carotid bodies, and three had carotid artery malformations.
- Mice with EPAS1 variants developed carotid body tumors and paragangliomas, confirmed by immunohistochemistry.
Conclusions:
- HNPGLs are a potential feature of Pacak-Zhuang syndrome.
- Pathogenic EPAS1 variants are sufficient to cause PZS-related tumors.
- These findings suggest a disease spectrum from hyperplasia to paragangliomas.
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