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March 14, 2026Experimental and Molecular Pathology0 citationsOpen Access

Neuroendocrine tumour morphology and platelet derived growth factor receptor alpha expression

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ALAna Lopez-CampistrousYKYi Man KoMWMelinda Wuest

Key Points

  • This research investigates the role of PDGFRA in neuroendocrine tumours and its effects on cell behavior and growth.
  • Examined PDGFRA expression in neuroendocrine cell lines BON-1 and QGP-1.
  • Utilized xenograft models to study tumour growth and vascular characteristics.
  • Analyzed markers like CD31 and vessel density to quantify vascular nature of tumours.
  • Increased colony formation and migratory potential in cell lines with PDGFRA expression.
  • PDGFRA expression doubled the size of QGP-1 xenograft tumours, while BON-1 growth remained unchanged.
  • CD31 and vessel density increased, indicating enhanced vascular characteristics in tumours.

Abstract

The strong propensity for lymphatic and distant metastases in gastrointestinal neuroendocrine tumours (GEP-NETS) often precludes cure for many patients. Platelet derived growth factor receptor alpha (PDGFRA) is commonly overexpressed in metastatic GEP-NETs and has been targeted in clinical trials, but there have been no direct mechanistic studies of PDGFRA cell signalling in neuroendocrine tumours. To address this gap, we examined the role of this tyrosine kinase receptor in the neuroendocrine cell lines BON-1 and QGP-1. We reveal increased colony formation and migratory potential without substantially altering proliferative capacity. This phenotype, similar to that seen in other PDGFRA cell line studies, appears to be mediated through Akt and MAP kinase pathways. Interestingly, in both xenograft models we also saw how PDGFRA expression induced striking similarities to the vascular nature of NET tumours, quantified through the vascular marker CD31 and vessel density. In terms of tumour growth, the presence of PDGFRA more than doubled the size of QGP-1 xenograft tumours but did not significantly alter BON-1 growth. The divergent in vivo phenotypes observed between BON-1 and QGP-1 xenografts likely reflect intrinsic differences in MAPK pathway activation. The creation of these new cell lines will aid in further studies to understand the potential role of targeting PDGFRA as a theranostic modality for patients with neuroendocrine tumours.

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Cite This Study

Lopez-Campistrous et al. (2026) studied this question.

synapsesocial.com/papers/69b4ad7918185d8a39800c6ehttps://doi.org/10.1016/j.yexmp.2026.105037
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