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Synovial sarcoma mimicking desmoplastic small round-cell tumor: critical role for molecular diagnosis.

BACKGROUND: The identification of recently described nonrandom chromosomal defects specific for various small round-cell and spindle-cell sarcomas can eliminate diagnostic uncertainty arising from the clinical and histopathologic overlap of soft tissue neoplasms. METHODS: A 26-year-old man presented with bulky abdominal-pelvic disease. Immunohistochemical and molecular studies on tumor were performed. Treatment was instituted using cycles of high-dose cyclophosphamide (4,200 mg/m2) with doxorubicin (75 mg/m2). RESULTS: Clinical findings pointed to desmoplastic small round-cell tumor. The tumor was histologically undifferentiated and immunoreactive for vimentin but negative for other markers. Reverse transcriptase-polymerase chain reaction revealed the SYT/SSX2 fusion transcript of the synovial sarcoma t(X;18) chromosomal rearrangement. The high-dose chemotherapy, plus surgery, achieved a complete remission, but recurrent disease emerged 13 months from diagnosis. CONCLUSIONS: This clinically unique case of synovial sarcoma highlights how the use of now readily available molecular techniques will allow more accurate appraisals of the incidence and anatomic distribution of soft tissue neoplasms-information that bears upon pathogenesis and treatment. This case confirms the utility of high-dose alkylator-based therapy for synovial sarcoma. It also demonstrates that with nonlocalized solid tumors, the eradication of minimal residual disease remains an elusive goal. One alternative involves immunologic attack against markers derived from tumor-specific chromosomal defects such as those found in our patient.

Abdominal Neoplasms↗

[Contribution of cytogenetics to the diagnosis of Ewing's sarcoma and small round cell tumors].

The diagnosis of the so-called "small-round-cell tumours" in children and adolescents is a troublesome problem, particularly in specific forms of the disease or/and in undifferentiated cell proliferations. Under these circumstances the finding of a specific chromosomal abnormality in the tumour cells is invaluable, specially for the diagnosis of Ewing sarcoma and primitive neuroectodermal tumours as well as alveolar rhabdomyosarcoma. The use of cytogenetics, in combination with morphological and immunohistochemical studies to identify cell differentiation markers, is either the only positive diagnostic criterion, or a complementary factor in diagnosis.

Adolescent↗

TaqMan junction probes and the reverse transcriptase polymerase chain reaction: detection of alveolar rhabdomyosarcoma, synovial sarcoma, and desmoplastic small round cell tumor.

The reverse transcriptase polymerase chain reaction (RT-PCR) provides a technique to diagnose a group of sarcomas and small round cell tumors that contain specific chromosomal translocations and chimeric gene fusion products. We adapted real-time qualitative RT-PCR to utilize dual-labeled, fluorogenic, TaqMan probes, which hybridize to targets that overlap the junction of the chimeric gene fusions in alveolar rhabdomyosarcoma (ARMS), synovial sarcoma (SS), and desmoplastic small round cell tumor (DSRCT). Assays were confirmed on cell lines and tissue samples; appropriate negative amplification assays were obtained when each tumor-specific probe and primer set was used on different neoplasms and cell lines that were not expected to harbor the specific translocations and chimeric gene fusions. Although our cases are few, we speculate that as more molecular variants of ARMS, SS, and DSRCT are discovered, clinical correlations based on precise molecular features will be required and fusion site specificity will be assured by the use of junction-based TaqMan probes.

Carcinoma, Small Cell↗

Detection of fusion gene transcripts in fresh-frozen and formalin-fixed paraffin-embedded tissue sections of soft-tissue sarcomas after laser capture microdissection and rt-PCR.

The diagnosis of small round cell sarcomas is often very difficult, especially when only small biopsy specimens are available for examination. Recent studies have shown that some sarcomas have specific recurrent chromosomal translocations producing chimeric gene fusions, which can be detected by reverse transcription-polymerase chain reaction (RT-PCR), fluorescent in situ hybridization (FISH), or cytogenetic analysis. In this study, 12 cases of well-defined sarcomas including Ewings sarcoma/primitive neuroectodermal tumors (ES/PNET), synovial sarcoma (SS), alveolar rhabdomyosarcoma (ARMS), and desmoplastic small round cell tumors (DSRCT) were used to collect specific numbers of cells by laser capture microdissection (LCM), subsequently used for RT-PCR to detect specific chimeric gene transcripts. Tumor cells from fresh-frozen (FS) tissue sections and paraffin-embedded (PS) tissue sections from the same cases were compared directly to evaluate the sensitivity of FS and PS sections as the starting material for analysis. Samples were used for RNA extraction, RT-PCR analysis, and Southern hybridization with fluorescein-labeled internal probes followed by enhance chemiluminescence (ECL) detection. The fusion gene transcripts could be detected using 50 cells from FS materials in all cases and from 1 cell in 9 of 12 cases. For PS, a positive signal could be detected using 200 to 1000 cells in all cases, while weaker signals were detected using 50 cells in most cases. These results indicate that the fusion gene products from small round cell sarcomas can be detected by RT-PCR with 10 to 200 cells from FS and PS tissues. The sensitivity of RT-PCR with FS was 10- to 50-fold greater than with PS. These results also suggest that RT-PCR analysis for sarcoma fusion gene products can be successfully performed when only a few cells are available for analysis, although this is not recommended for routine clinical use.

Blotting, Southern↗

Small round blue cell sarcoma of bone mimicking atypical Ewing's sarcoma with neuroectodermal features. An analysis of five cases with immunohistochemical and electron microscopic support.

Ewing's sarcoma (ES) of bone may occasionally display rosette-like textures mimicking Homer-Wright ones, as seen in neuroectodermic neoplasms (neuroblastoma, peripheral neuroepithelioma). Of a group of 39 cases of ES, reviewed with electron microscopic study, the authors have isolated five atypical ES, which histologically also possessed neuroectodermic traces. These tumors were composed of small round blue cells with rosette-like figures and cytoplasmic glycogen. The immunohistochemical analysis showed positivity for neuron-specific enolase (NSE) as well as for HNK-1 (leu-7) monoclonal antibody. Electron microscopic examination confirmed the tumor cell as being of small round type, with a dense chromatine pattern and the presence of isolated dendritic processes, as well as synaptic-like buttons; intermediate filaments, neurotubuli, and dense-core neurosecretory granules also were seen. Moreover, in two cases basement-like condensations surrounded some cells. Scanning electron microscopic study in one case confirmed the presence of rosette-like figures and cell elongations with short dendritic projections of the cytoplasm. Clinically and radiologically these cases showed features similar to ES of bone; one case, located in the chest wall, had a local relapse after treatment, with the histologic features of a pleomorphic neuroblastoma. The authors conclude that these tumors resemble closely immature neuroepithelioma of soft tissue but, being primary to bone, are superimposable on those described as "neuroectodermal tumors of bone."

Antibodies, Monoclonal↗

Validity and reproducibility of histologic diagnosis and grading for adult soft-tissue sarcomas.

Soft-tissue sarcomas in adults show great variations in histologic type and grade. A valid and reproducible prognostication system is needed to select patients with soft-tissue sarcomas who could benefit from adjuvant chemotherapy. This study was conducted to assess the validity and reproducibility of diagnosis of the histologic type, MIB-1 grade, and mitosis grade, as well as of the 3 components of these grading systems. MIB-1 grade is a recently proposed grading system for predicting the prognosis of patients with adult soft-tissue sarcomas on the basis of 3 criteria (tumor differentiation, necrosis, and MIB-1 score) and replaces the mitotic count in the French system with MIB-1 immunohistochemical staining. Four surgical pathologists from 4 institutions who had experience in diagnostic soft-tissue tumor pathology reviewed 130 cases of soft-tissue sarcoma and independently determined histologic type and grade. The validity of histologic diagnosis was measured by sensitivity and specificity, and that of grading was measured by kappa statistics and percentage agreement with the diagnosis of the expert panel at the National Cancer Center, which was defined as a gold standard. Interobserver reproducibility was measured by kappa and by percentage agreement between the diagnoses of the 4 pathologists. The validity of the diagnosis of histologic type was high for synovial sarcoma, small round-cell sarcoma, and liposarcoma (sensitivity 89% to 100%; specificity, 98% to 100%) but low for malignant fibrous histiocytoma (MFH) and spindle-cell sarcoma (73% to 75%; 93% to 95%). For the grading, the validity of the MIB-1 grade was substantial (kappa = 0.68; agreement, 79%) and higher than that of the mitosis grade (0.54; 69%). The most valid component was tumor differentiation (kappa = 0.79), followed by tumor necrosis (0.66), MIB-1 score (0.59), and mitotic score (0.37). Interobserver reproducibility of histologic diagnosis was high for small round-cell sarcoma, synovial sarcoma, and liposarcoma (kappa = 0.92, 0.90, 0.87; percentage agreement = 99%, 97%, 96%, respectively); for grading, reproducibility was highest for tumor differentiation (0.78; 87%) and second highest for MIB-1 grade (0.68; 79%). We conclude that diagnosis of the type of soft-tissue sarcoma for synovial sarcoma, small round-cell sarcoma, and liposarcoma and the MIB-1 grading system based on tumor differentiation are highly valid and reproducible among Japanese pathologists who are familiar with the grading system, whereas re-evaluation of histologic criteria is essential for other histologic types such as MFH and spindle-cell sarcoma.

Antigens, Nuclear↗

In vitro chemosensitivity of human soft tissue sarcoma.

Chemotherapy is essential in the treatment of small round cell sarcomas. However, as yet there is no progress concerning the efficacy of chemotherapy in the treatment of other types of soft tissue tumors (STS). The Histoculture Drug Response Assay (HDRA) is an in vitro chemosensitivity test that has a high correlation with clinical response, the usefulness of which has been reported in various kinds of solid tumors. However, there has never been a report on its use in STS until now. In this study, in order to investigate the variation in chemosensitivity in STS, fresh biopsy or surgical samples of STS were tested using the HDRA method. Drug sensitivity testing by HDRA showed that two drugs, ADM and THP, had a significantly higher inhibitory rate than CDDP, IFOS, or VP-16 in the thirty-three soft tissue sarcomas tested. Depending on the morphological type, spindle cell sarcomas were sensitive to THP, which showed significantly higher inhibition rates than CDDP, IFOS, or VP-16. Small round cell sarcomas were relatively sensitive to all of the drugs tested. However the drug sensitivity of pleomorphic cell sarcoma was low except for ADM and THP, while its sensitivity to THP was higher than about 70%. However, there are numerous other soft tissue sarcomas that do not belong to these categories; drug sensitivity testing in each of them and the devising of individualized treatment strategies seems necessary to improve the therapeutic outcome.

Doxorubicin↗

Differential expression of beta 1, beta 3 and beta 4 integrins in sarcomas of the small, round, blue cell category.

Integrins are a large and complex family of membrane spanning alpha beta heterodimeric cell surface glycoproteins mediating cell/cell and cell/matrix interactions. Small, round, blue cell sarcomas (SRBCS) are a group of poorly differentiated tumours of various and in part uncertain histogenesis displaying similar cytomorphology. Among them are rhabdomyosarcomas (RMS), ganglioneuroblastomas [(G)NB], primitive peripheral neuroectodermal tumours (pPNET) and Ewing's sarcomas (ES). Thirty-two SRBCS were studied immunohistochemically for the distribution of beta 1, beta 3 and beta 4 integrins in situ. We found complex and to some extent differential patterns of beta 1, beta 3 and beta 4 integrin subunit expression in different types of SRBCS: all of the sarcomas studied were consistently beta 1+, beta 4-, alpha 2-. Four of nine RMS were completely negative for all other integrin subunits studied while one RMS was alpha 5+ throughout and three RMS were focally alpha 5+. Three RMS expressed the alpha 6 and alpha v chains. In contrast to RMS, pPNET and ES, all of which were alpha 1-, alpha 3-, (G)NB were alpha 3+ and frequently co-expressed alpha 1. The eight pPNET and seven ES studied showed a similarly restricted integrin profile that was limited to the expression of beta 1 and alpha 5 in nearly all cases. In summary, RMS were beta 1+, alpha 1-, alpha 3- and heterogeneously expressed alpha 5 and alpha 6. (G)NB were generally beta 1+, alpha 1+, alpha 3+, alpha 5-, alpha 6-. pPNET and ES were beta 1+, alpha 1-, alpha 3-, alpha 5+, alpha 6-. The data illustrate a complex expression pattern of various integrins in SRBCS, a differential expression pattern of some of the integrin subunits among different types of SRBCS and almost identical integrin profiles in pPNET and ES.

Ganglioneuroblastoma↗

Histopathology of childhood sarcomas, Intergroup Rhabdomyosarcoma Studies I and II: clinicopathologic correlation.

Histopathologic material from 1,782 patients registered in the Intergroup Rhabdomyosarcoma Study Committee (IRS)-I and -II were reviewed by the IRS Pathology Committee in order to provide a uniform approach to classification and correlate patient survival with tumor type. Categories considered eligible were the four types of rhabdomyosarcoma (RMS) (criteria of Horn and Enterline), extraosseous Ewing's tumor (EOE), and a group of somewhat variable undifferentiated sarcomas designated small round cell sarcoma, type indeterminate (STI). Tumors that were clearly sarcomas but were unclassifiable also were included (NOS). The committee diagnoses were embryonal (Emb) RMS in 877 (54%), alveolar (Alv) RMS in 343 (21%), botryoid (Botr) RMS in 88 (5%), pleomorphic (Pleo) RMS in 11 (1%), STI in 135 (8%), and EOE in 84 (5%). One in nine were mixtures of types, eg, Emb and Alv. Five percent of the sarcomas could not be classified because of inadequate material. In general, there was close agreement (94%) between the review committee and institutional pathologists in the diagnosis of RMS, but not in the specific types, particularly Alv RMS (41%) and STI (36%). This observation is important, since patients with Alv RMS and STI tumors had decreased survival compared with the other histologies. The prognosis varied by histology, with Botr having the best, Alv RMS and STI the worst, and Emb RMS and EOE an intermediate prognosis.

Age Factors↗