ASCL1/NEUROD1/POU2F3/YAP1的分析为嗅觉神经母细胞瘤的诊断和鼻窦簇状细胞样癌的鉴定提供了新的见解。

IF 7.1 1区 医学 Q1 PATHOLOGY Modern Pathology Pub Date : 2024-11-28 DOI:10.1016/j.modpat.2024.100674
Christopher A Febres-Aldana, Mahmoud M Elsayad, Maelle Saliba, Umesh Bhanot, Peter Ntiamoah, Anjanie Takeyama, Bibianna M Purgina, Paula A Rodriguez-Urrego, Zlatko Marusic, Antonia Jakovcevic, Deborah J Chute, Lara A Dunn, Ian Ganly, Marc A Cohen, David G Pfister, Ronald A Ghossein, Marina K Baine, Natasha Rekhtman, Snjezana Dogan
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引用次数: 0

摘要

鼻小圆上皮/神经上皮恶性肿瘤的诊断和治疗取决于常规神经内分泌标志物(cNEM)的表达,如synaptophysin、chromogranin-A、INSM1和CD56/NCAM1。然而,由于重叠的组织学和免疫组织化学特征,这些肿瘤的诊断仍然具有挑战性。转录调节因子ASLC1、NEUROD1、POU2F3和YAP1是用于小细胞肺癌(SCLC)亚型分型的新型NEM (nNEM)。在此,我们评估了nNEM在76例鼻窦恶性肿瘤中的免疫表达,包括27例嗅觉神经母细胞瘤(ONB)、14例小细胞(SCNEC)和2例大细胞神经内分泌癌(LCNEC)、12例鼻窦未分化癌(SNUC)、7例嗅觉癌(OC)、11例SWI/ snf缺陷癌和3例神经内分泌肿瘤(NET)。我们将nNEM表达与神经内分泌分化程度联系起来,通过平均cNEM表达(ne -高:h评分≥150,ne -低:h评分)来定义
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Analysis of ASCL1/NEUROD1/POU2F3/YAP1 Yields Novel Insights for the Diagnosis of Olfactory Neuroblastoma and Identifies Sinonasal Tuft Cell-Like Carcinoma.

The diagnosis and treatment of sinonasal small round epithelial/neuroepithelial malignancies depend on the expression of conventional neuroendocrine markers (NEMs), such as synaptophysin, chromogranin A, INSM1, and CD56/NCAM1. However, these tumors remain diagnostically challenging because of overlapping histologic and immunohistochemical features. The transcriptional regulators ASCL1, NEUROD1, POU2F3, and YAP1 are novel NEM (nNEM) used for the subtyping of small-cell lung cancer (SCLC). Here, we assessed the immunoexpression of nNEM in 76 sinonasal malignancies, including 27 olfactory neuroblastomas (ONB), 14 small-cell neuroendocrine carcinomas (SCNEC), 2 large-cell neuroendocrine carcinomas, 12 sinonasal undifferentiated carcinomas (SNUC), 7 olfactory carcinomas (OC), 11 SWI/SNF-deficient carcinomas, and 3 neuroendocrine tumors. We correlated nNEM expression with the extent of neuroendocrine (NE) differentiation, as defined by averaged conventional NEM expression (NE-high: H-score, ≥150; NE-low: H-score, <150). Dominant NE subtypes were defined by the nNEM with the highest H-score. Coexpression of 2 nNEM with <100 H-score difference defined a codominant NE subtype. NE differentiation positively correlated with NEUROD1 and negatively with YAP1 expression (P < .0001). ONB were NE-high (96%), and all were NEUROD1-dominant/POU2F3-negative/ASCL1-negative (low)/YAP1-negative (low). In contrast to ONB, all OC were NE-low, mostly (71%) codominant subtypes, NEUROD1-low (negative) (100%, P = .0001), and YAP1 high (71%; P = .0001). Most notably, all SNUC were POU2F3-(co)dominant/NEUROD1-negative irrespective of the IDH2 mutations. Sinonasal tumors with high POU2F3 expression showed enrichment for "tuft cell carcinoma" and tuft cell signatures (P = .009). Similar to SCLC, SCNEC was heterogeneous in terms of nNEM expression comprising several molecular subtypes, including ASCL1-(co)dominant (43%) cases. All SWI/SNF-deficient carcinomas were consistently ASCL1/NEUROD1/POU2F3-negative and YAP1-positive. ASCL1/NEUROD1/POU2F3/YAP1 are useful markers in the differential diagnosis of ONB, SNUC, OC, and SWI/SNF-deficient carcinomas. Subsets of SNUC and large-cell neuroendocrine carcinomas may represent tuft cell-like carcinomas, suggesting that the tuft cell could be explored as the cell of origin for these tumors. The therapeutic vulnerabilities associated with POU2F3 expression in SCLC suggest that a similar approach might be considered for POU2F3-positive carcinomas of the sinonasal tract. Given their diagnostic and possible therapeutic relevance, nNEM have the potential to transform the way we approach the diagnosis and management of sinonasal small round epithelial/neuroepithelial malignancies.

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来源期刊
Modern Pathology
Modern Pathology 医学-病理学
CiteScore
14.30
自引率
2.70%
发文量
174
审稿时长
18 days
期刊介绍: Modern Pathology, an international journal under the ownership of The United States & Canadian Academy of Pathology (USCAP), serves as an authoritative platform for publishing top-tier clinical and translational research studies in pathology. Original manuscripts are the primary focus of Modern Pathology, complemented by impactful editorials, reviews, and practice guidelines covering all facets of precision diagnostics in human pathology. The journal's scope includes advancements in molecular diagnostics and genomic classifications of diseases, breakthroughs in immune-oncology, computational science, applied bioinformatics, and digital pathology.
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