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Loss of Methylthioadenosine Phosphorylase (MTAP) Expression: A Potentially Useful Tool for Distinguishing Sarcomatoid Urothelial Carcinoma From Inflammatory Myofibroblastic Tumor.

Inflammatory myofibroblastic tumor (IMT) and sarcomatoid urothelial carcinoma (SarUC) can have striking histologic overlap but have significantly different prognoses and clinical management paradigms. Loss of methylthioadenosine phosphorylase (MTAP) protein expression by immunohistochemistry (IHC) serves as a useful surrogate for homozygous 9p21 deletion, a recurrent genomic alteration in urothelial carcinoma (UC). We analyzed MTAP expression by IHC in 65 SarUCs and 27 urinary tract IMTs to evaluate its utility in navigating this challenging differential diagnosis. Overall, MTAP loss was significantly more frequent in SarUC (55%) compared with IMT (4%) (P < .0001). Among 46 biphasic SarUCs with independently evaluable epithelial and mesenchymal components, divergent expression patterns were frequent. The most common pattern was retention of MTAP staining in both epithelial and mesenchymal components (19/46; 41% of cases), followed by selective retention of MTAP in the epithelial component and loss in the mesenchymal component (16/46; 35% of cases). MTAP loss was observed in both the epithelial and mesenchymal components in 11 out of 46 (24%) SarUC cases. None of the 46 biphasic SarUC cases showed selective MTAP loss in the epithelial component but retention in the mesenchymal component. MTAP IHC was also particularly valuable in assessing clonal relationships in 2 challenging biphasic cases in which the differential diagnosis included a collision between a noninvasive low-grade papillary UC and an IMT versus a subtle IMT-like SarUC arising in association with an overlying noninvasive low-grade papillary UC. Next-generation sequencing on a subset of cases (n = 11) was useful for confirming 9p deletion in cases with MTAP loss by IHC, and for demonstrating molecular hallmarks of urothelial neoplasia thereby providing additional diagnostic support for morphologically challenging SarUC cases with IMT-like morphology. Therefore, MTAP IHC can be useful in evaluating spindle cell lesions of the urinary tract, as loss is significantly more common in SarUC than in IMT, and enriched in the mesenchymal component of biphasic SarUC. However, MTAP loss can be seen in both entities, and the diagnosis of IMT-like spindle cell tumors in the urinary tract requires careful integration of morphologic, immunohistochemical, and molecular data.

Humans

Small cell bladder carcinoma with a high tumor mutational burden responding to sequential cisplatin-etoposide and pembrolizumab: a case report.

Small cell carcinoma of the urinary bladder (SCCB) is a rare and aggressive malignancy with limited treatment options and a poor prognosis. We present the case of a 63-year-old man who was initially diagnosed to have non-metastatic high-grade non-muscle invasive urothelial carcinoma with sarcomatoid subtype and later developed bone metastases. A bone biopsy confirmed small cell carcinoma, and retrospective review of the original tumor revealed mixed histology comprising small cell, sarcomatoid-like, and conventional urothelial carcinoma components. The patient was treated with six cycles of cisplatin and etoposide, during which genomic profiling identified a high tumor mutational burden (22 mutations/megabase). Based on this finding, pembrolizumab was administered sequentially as monotherapy. The patient achieved a complete response that lasted for more than 1 year, but subsequently developed lymph node metastases and recurrences in bone. This case highlights the role of genomic profiling test for clinical decision-making as tumor mutational burden predicts the efficacy of immune checkpoint inhibitor therapy in SCCB. This case also underscores the urgent need for novel treatment approaches for SCCB.

Case report

Induction and characterization of neoplastic bladder tumors in a transgenic porcine model.

BACKGROUND: Large animal models of bladder cancer are lacking. OBJECTIVE: This study aimed to develop and characterize a transgenic porcine model of bladder cancer (BC) using Oncopigs expressing Cre-inducible KRASG12D and TP53R167H mutations. METHODS: Eleven female Oncopigs underwent tumor induction via three cystoscopic inoculation procedures: Procedure I (N&#x2009;=&#x2009;3, 1 inoculation/pig), chemical dissolution of the glycosaminoglycan layer with N-Dodecyl-&#x3b2;-d-Maltoside DDM followed by adenoviral Cre-recombinase (AdCre) instillation; Procedure II (N&#x2009;=&#x2009;4, 3 inoculation/pig), mechanical mucosal denudation followed by AdCre instillation; and Procedure III (N&#x2009;=&#x2009;4, 3 inoculation/pig), cystoscopy-guided submucosal injection of AdCre. Animals were clinically monitored throughout follow-up (14-28 days). Tumor development was assessed on cystoscopy and ultrasonography, and pathologically, immunohistochemically (IHC), and genomically characterized. RESULTS: All pigs remained clinically healthy. Tumors developed at 59% (16/27) of inoculation sites: nine (33%) were neoplastic and seven (26%) were inflammatory. Procedure I achieved 100% neoplastic tumors and produced both non-muscle invasive (71%) and muscle-invasive (29%) tumors. Procedure II achieved 50% neoplastic tumors, all of which were muscle invasive (100%). Procedure III generated only inflammatory tumors. Histologically, neoplastic tumors were pathologically interpreted as urothelial cell carcinomas with sarcomatoid differentiation, with IHC confirming the presence of both epithelioid and sarcomatoid features with abundant mixed leukocytic infiltrates. Genomic analyses verified Cre-induced alterations alongside other mutations seen in human BC. CONCLUSIONS: We herein demonstrate an efficient and reproducible method for developing autochthonous neoplastic bladder tumors in Oncopigs that resemble human bladder cancer of varying stages. This large animal model facilitates the evaluation of novel surgical and intravesical therapies in BC.

bladder cancer