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Biology subjects

Elbadawy, M.

Publications and source records attributed to Elbadawy, M..

2 recordsLinked to original sources

Stepwise bladder carcinogenesis reveals transcriptional reprogramming involving MMP1 and COL7A1

Bladder cancer develops through multistep molecular alterations, yet the events underlying tumor initiation and progression remain poorly understood. Here, we reconstructed stepwise bladder carcinogenesis using canine bladder organoids combined with chemical carcinogenesis and serial xenotransplantation. Carcinogen-exposed normal organoids generated benign tumors that subsequently progressed to invasive carcinomas. Despite a low tumor mutational burden and limited acquisition of cancer-associated mutations, malignant progression was accompanied by extensive transcriptional reprogramming, including enrichment of epithelial-to-mesenchymal transition programs. COL7A1 and MMP1 were progressively upregulated during progression, and knockdown of either gene suppressed organoid proliferation and invasion. These functional dependencies were reproduced in independently established spontaneous canine bladder cancer organoids, where silencing of either gene also reduced xenograft growth and mitosis-related gene programs. MMP1 knockdown decreased COL7A1 expression, suggesting a potential regulatory relationship. MMP1 was also elevated in basal/squamous human bladder cancers, and its depletion suppressed human bladder cancer cell proliferation. These findings identify transcriptional reprogramming and MMP1/COL7A1 dependencies as prominent features of malignant progression.

cancer biology↗

Frequency and Characterization of Rare Histologic Subtypes in Canine Invasive Urothelial Carcinoma

The histologic and molecular heterogeneity of human muscle-invasive bladder cancer (MIBC) is a major contributor to poor treatment outcomes. While most cases of MIBC are diagnosed as conventional urothelial carcinoma (UC), there is growing recognition of histologic subtypes and divergent differentiation within conventional UC. This is clinically significant, as some require modification of therapy and some are associated with more aggressive behavior. Spontaneously occurring UC in dogs has been shown to exhibit histologic and molecular features that closely resemble those of human MIBC. In this study, we evaluated 31 canine UC tumor samples for histologic subtypes and divergent differentiation. Slides were reviewed by a human uropathologist and three board-certified veterinary pathologists and assessed for expression of uroplakin III and E-cadherin. All tumors were classified as high-grade UC. Fifteen cases were identified as conventional UC. Among the remainder, eight displayed glandular differentiation, four were classified as sarcomatoid UC, two showed squamous differentiation, and one case each was classified as large nested and tubular and microcystic subtypes. In summary, this study found a higher frequency of certain histologic subtypes and divergent differentiation in canine UC--particularly sarcomatoid UC and UC with glandular differentiation--compared to previous reports in both canine UC and human MIBC. ConclusionThe relatively high prevalence of the sarcomatoid UC subtype in dogs observed in this study suggests that canine UC may serve as a valuable translational model for evaluating novel therapeutic agents, particularly for this rare and aggressive variant in humans.

pathology↗