African Journal of Biomedical Sciences
Editor-in-Chief: Dr. Abdelmonem Awad Hegazy | ISSN: 3136-8026 | Frequency: Biannual | Publication Format: Open Access | Language: English | Indexing/Listing :

Current Issue of African Journal of Biomedical Sciences

Volume 2, Issue 2, July 2026
Research Paper

Spatial transcriptomic deconvolution of tumour microenvironment heterogeneity in triple-negative breast carcinoma

| Open Access

Michael Anderson1* and Emeka Nwosu1

Afj.Bio.Med.Sci. 2(2) (2026) 39-47, DOI: https://doi.org/10.62587/AFJBMS.2.2.2026.39-47
Received: 30/01/2026|Accepted: 27/05/2026|Published: 25/07/2026

Abstract

Objective: This study investigated spatial heterogeneity and immune organization in triple-negative breast carcinoma using single-cell-referenced spatial transcriptomic deconvolution. Methods: In tumour samples profiled by both single-cell RNA sequencing and spatial transcriptomics, each spatial spot was deconvolved by non-negative least squares against the single-cell reference, and the recovered composition was analysed by spatial autocorrelation, niche clustering and co-localization. Results: Deconvolution accurately recovered major tumour and stromal populations, with correlations of 0.981 for malignant cells and 0.952 for cancer-associated fibroblasts. All evaluated cell types exhibited significant spatial autocorrelation. Malignant cells showed the strongest clustering (Moran’s I = 0.927), followed by B cells (I = 0.911), endothelial cells (I = 0.869), and cancer-associated fibroblasts (I = 0.817). Five spatial niches were identified, representing distinct malignant, stromal, lymphoid, vascular, and peritumoural compartments. CD8 T-cell abundance was lowest within the malignant core (8.1%), peaked at the peritumoural margin (14.1%), and declined toward the tissue periphery (3.5%). Conclusion: The triple-negative breast tumour microenvironment displayed pronounced spatial organization, characterized by distinct cellular niches and preferential accumulation of cytotoxic T-cells at the peritumoural interface rather than within malignant regions.


Keywords: Triple-negative breast cancer, Spatial transcriptomics, Single-cell RNA sequencing, Deconvolution, Tumour microenvironment, Immune exclusion, Cancer associated fibroblasts, Spatial niches

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