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Biology subjects

Aburajab, R.

Publications and source records attributed to Aburajab, R..

2 recordsLinked to original sources

Custom Probe-Based Spatial Transcriptomics Enables Microbiome Detection in FFPE Colorectal Cancer Tissue

Intratumoral bacteria have emerged as functionally relevant components of the tumor microenvironment, yet the spatial relationship between these bacterial communities and host gene expression remains poorly characterized, in part due to methodological constraints. Existing spatial transcriptomics approaches for microbial detection rely on fresh frozen tissue, excluding FFPE specimens which dominate clinical archives. Here, we describe a custom probe design pipeline targeting the variable regions of bacterial 16S rRNA, compatible with the probe-based chemistry of the 10x Genomics Visium CytAssist platform, enabling spatially resolved bacterial profiling in FFPE tissue. Applied to a pilot cohort of six FFPE colorectal cancer tumor and normal adjacent tissue specimens, we show that integration of custom microbial probes into the Visium workflow preserves host transcriptomic structure, with clustering analysis recapitulating expected colonic cell type architecture. Bacterial signal was detected across all samples in a spatially patterned and focal manner, with one tumor sample exhibiting markedly elevated signal intensity and a distinct invasive distribution pattern, driven by spatially structured Bacteroides-Phocaeicola and Porphyromonas signals with divergent intratumoral trajectories. These findings establish the feasibility of probe-based spatial metatranscriptomics in FFPE tissue and provide a generalizable framework for studying host-microbiome interactions in relevant clinical samples.

cancer biology↗

Mechanistic Link Between Glyoxalase 1 Expression and Methylglyoxal-Induced Oncogenic Stress in Prostate Cancer

Prostate cancer (PCa) is the second leading cause of cancer-related death in American men, with African American/Black (AA/B) men experiencing higher incidence and mortality than European American (EA) men. Obesity, which disproportionately affects AA/B men, is linked to increased PCa mortality, potentially through metabolic dysregulation. We hypothesize that methylglyoxal (MG), a reactive byproduct of glucose, lipid, and protein metabolism that is elevated in obesity, contributes to PCa progression. MG forms covalent adducts on DNA, RNA, and protein. We found that MG-adducts are elevated in AA/B men with PCa compared to EA men with PCa, as well as men without PCa. AA/B men with PCa had a higher frequency of SNP rs1049346 in glyoxalase 1 (GLO1), the primary MG detoxification enzyme. PCa cell lines from EA (C4-2) and AA/B (MDA-PCa-2b) men showed differential rs1049346 status, with C4-2 cells heterozygous and MDA-PCa-2b cells homozygous for the variant. This was associated with altered GLO1 expression and activity, with MDA-PCa-2b cells exhibiting reduced GLO1 function and increased MG-adducts compared to C4-2 cells. MG altered DNA repair and RNA processing pathways and induced distinct metabolic shifts in MDA-PCa-2b compared to C4-2 cells, including increased glycolysis and reduced oxidative phosphorylation. Transcriptomic analysis revealed unique MG-induced stress responses including a tenfold higher induction of TXNIP in MDA-PCa-2b vs. C4-2 cells, a gene inversely linked to GLO1 expression and activity. These findings suggest that MG stress may contribute to PCa progression in AA/B men through metabolic reprogramming and impaired detoxification, offering insight into potential precision medicine applications. Statement of SignificancePatients with obesity and diabetes have an elevated risk of cancer mortality. Defining how metabolic alterations contribute to this link is critical to understanding disease progression and identifying strategies to improve outcomes.

cancer biology↗