Research Article

Mucinous carcinoma upregulates targets ‎of small ‎molecule ‎inhibitors of cancers: implications ‎for ‎targeting oncogenic mucins in the colorectal cancer microenvironment

1 Morbid Anatomy and Histopathology Department, Olabisi Onabanjo University, Sagamu ‎Campus, Hospital Road, Sagamu, Ogun State, Nigeria
2 Department of Anatomic Pathology, Federal University of Health Sciences Azare, Bauchi State, ‎Nigeria
3 Department of Medical Microbiology, Faculty of Basic Clinical Sciences, Olabisi Onabanjo ‎University, Sagamu Campus, Hospital Road, Sagamu, Ogun State, Nigeria
4 Department of Medicine, Faculty of Clinical Sciences, Olabisi Onabanjo University, Sagamu ‎Campus, Hospital ‎Road, Sagamu, Ogun State, Nigeria ‎
5 Department of Histopathology, Gombe State University, Tudun Wada, Gombe, Gombe ‎State, ‎Nigeria‎
* Corresponding author: ebili.henry@oouagoiwoye.edu.ng
Published: Aug, 2026
Pages: 219-241
Views: 9
Downloads: 7

Abstract

Background: Mucinous colorectal carcinoma (CRC) is a distinct histological subtype ‎associated with abundant extracellular mucin production, adverse clinicopathological features, ‎chemoresistance, and poor prognosis. However, the tumour microenvironment (TME) signalling ‎characteristics of mucinous CRC and its potential vulnerabilities to anti-mucin small molecule ‎inhibitors (SMIs) remain incompletely understood.‎ Objective: To investigate the signalling characteristics of mucinous CRC, interrogate the ‎relationship between mucinous histology and TME signalling pathways, and identify potential ‎anti-mucin SMIs enriched in mucinous CRC.‎ Methods: This retrospective multi-cohort study analysed clinicopathological, transcriptomic, ‎and copy number data from the TCGA, Sidra-LUMC, and CPTAC2 CRC cohorts. Gene Set ‎Enrichment Analysis, pathway ontology enrichment analysis, drug ontology enrichment ‎analysis, differential ontology enrichment analyses, and protein–protein interaction analyses ‎were performed to identify enriched signalling pathways and therapeutic targets associated with ‎mucinous histology.‎ Results: Of 984 CRC cases with histological data, 15.7% were mucinous adenocarcinomas. ‎Mucinous CRC was significantly associated with female gender, younger age, right-sided ‎tumour location, advanced pathological tumour stage, microsatellite instability, BRAF mutation ‎positivity, high tumour mutation burden, and low chromosomal instability indices. Enrichment ‎analyses demonstrated preferential activation of multiple oncogenic and TME-related pathways ‎in mucinous CRC, including PDGF, Ras, VEGF, EGF receptor, Integrin, Angiogenesis, ‎Hypoxia/HIF, and Insulin/IGF signalling pathways. Differential ontology analyses confirmed ‎preferential enrichment of Integrin and Angiogenesis signalling in mucinous CRC. Protein–‎protein interaction analyses demonstrated significant interactions between mucin genes and ‎signalling pathway components, suggesting that mucins function as hubs in TME signalling ‎networks. Importantly, mucinous CRC exhibited significant enrichment of responses to calcium ‎channel blockers, mucolytic drugs, N-glycosylation inhibitors, and Bosutinib.‎ Conclusion: Mucinous CRC demonstrates a signalling-rich TME characterized by extensive ‎mucin-associated oncogenic interactions and preferential enrichment of anti-mucin drug targets. ‎These findings support multitargeted anti-mucin therapeutic strategies in mucinous CRC.‎
How to Cite

Ebili, H., Adetona, A. E., Akintola, P. A., Ezenkwa, U. S., Adegboyejo, K. A., Ale, A. O., & Abdullahi, Y. (2026). Mucinous carcinoma upregulates targets ‎of small ‎molecule ‎inhibitors of cancers: implications ‎for ‎targeting oncogenic mucins in the colorectal cancer microenvironment. Nigerian Journal of Oncology, 2(2), 219-241.

H. Ebili, A. E. Adetona, P. A. Akintola, U. S. Ezenkwa, K. A. Adegboyejo, A. O. Ale, and Y. Abdullahi, "Mucinous carcinoma upregulates targets ‎of small ‎molecule ‎inhibitors of cancers: implications ‎for ‎targeting oncogenic mucins in the colorectal cancer microenvironment," Nigerian Journal of Oncology, vol. 2, no. 2, pp. 219-241, August 2026.

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