Background: Desmoplastic small round cell tumor (DSRCT) is a distinctive clinicopathologic entity with an aggressive clinical course that typically involves the abdominal and/or pelvic peritoneum of young males. A population of small round blue cells and a fibroesclerotic stroma are the usual morphologic features. This tumor is characterized by a typical polyphenotypic profile with expression of epithelial, mesenchymal and neural markers. Cytogenetically, this tumor presents a unique abnormality - t(11;22)(p13;q12).
Case: A 29-year-old male without significant medical history was admitted to our institution with gastrointestinal symptomatology. The physical examination and medical imaging studies revealed an extensive soft tissue mass filling the entire peritoneal cavity/pelvis. A fine-needle aspiration (FNA) of the abdominal mass was performed. The FNA smears revealed fragments of collagenous desmoplastic stroma and clusters of loosely cohesive small round cells that showed positivity for epithelial and myogenic markers. Cytogenetic analysis demonstrated rearrangement of the genes EWSR1 and WT1, resulting from the t(11;22)(p13;q12).
Conclusion: DSRCT is an uncommon neoplasm that shares clinical and cytomorphologic features with other small round cell tumors. Therefore, a primary definitive diagnosis based on cytology specimens may be difficult but plausible and can be aided by a typical clinical presentation and ancillary immunocytochemical/cytogenetic studies.
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http://dx.doi.org/10.1159/000338523 | DOI Listing |
Comput Biol Chem
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Virology and Vaccine Research and Development Program, Department of Science and Technology-Industrial Technology Development Institute, Taguig City, Metro Manila 1631, Philippines; S&T Fellows Program, Department of Science and Technology, Taguig City, Metro Manila 1631, Philippines; Department of Biology, College of Arts and Sciences, University of the Philippines - Manila, Metro Manila 1000, Philippines. Electronic address:
Nipah virus (NiV) is a re-emerging zoonotic pathogen with a high mortality rate and no effective treatments, prompting the search for new antiviral strategies. While conventional antiviral drugs are often limited by issues such as poor specificity, off-target effects, and resistance development, nanobodies offer distinct advantages. These small, single-domain antibodies exhibit high specificity and stability, making them ideal candidates for antiviral therapy.
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