PubMed Health⌕ Search

Biomedical subjects

Eric L Staals

Publications and source records attributed to Eric L Staals.

4 recordsLinked to original sources

Dedifferentiated parosteal osteosarcoma: the experience of the Rizzoli Institute.

BACKGROUND: Dedifferentiated parosteal osteosarcoma (DPOS) is a variant of osteosarcoma in which a high-grade sarcoma coexists with a conventional parosteal osteosarcoma (c-POS), either at presentation (synchronous type) or at the time of recurrence (metachronous type). Only approximately 60 patients have been reported in the literature. The objective of this study was to analyze the clinicopathologic and radiographic features of a relatively large number of patients with DPOS in an attempt to define further the histologic and biologic behavior of this rare entity. METHODS: In a series of 120 patients with parosteal osteosarcoma who were seen at the Rizzoli Institute from 1958 to 2000, the authors identified 29 patients who were diagnosed with DPOS. The authors reviewed the clinical and radiologic features, histologic sections, treatments, and outcomes in this group of patients with DPOS. RESULTS: Twelve patients were male, and 17 patients were female. The patients ranged in age from 15 years to 65 yrs (average, 36 years; median, 32 years). One tumor involved the scapula, one involved the ilium, and another involved the skull. All 26 of the other tumors were located in the long bones (14 in the femur, 5 in the humerus, 3 in the tibia, 3 in the fibula, and 1 in the ulna). In 18 patients, radiographic areas of lucency were seen within an otherwise sclerotic lesion. Histologically, the dedifferentiated component was high-grade osteoblastic osteosarcoma in 14 patients, fibroblastic osteosarcoma in 10 patients, giant cell-rich osteosarcoma in 3 patients, and chondroblastic osteosarcoma in 2 patients. All tumors were Stage IIB, and invasion of the medullary canal was detected in 19 patients (65%). Twenty-eight patients underwent surgery, and 18 of those patients received chemotherapy (5 patients received neoadjuvant chemotherapy, and 13 patients received adjuvant). Nine patients were dead and 20 patients were alive (average follow-up, 107 months; range, from 3 months to 36 years) at the last follow-up. Of the nine patients who died, one patient received no treatment, five patients underwent surgery (with three patients achieving adequate margins) in combination with chemotherapy, and three patients underwent surgery only (with adequate margins achieved). Of the 20 patients who remained alive, 13 patients underwent surgery (with 10 patients achieving adequate margins) in combination with chemotherapy, whereas 7 patients underwent surgery only (all with adequate margins). Seven of the nine patients who died had widespread metastases. One patient died of causes unrelated to the tumor, and another patient died shortly after undergoing resection of a lesion in the skull. CONCLUSIONS: Dedifferentiation occurred in approximately 24% of patients with c-POS. The prognosis for patients with DPOS was better than the prognosis for patients with dedifferentiated central and dedifferentiated peripheral chondrosarcoma.

Adolescent↗

Malignancy in giant cell tumor of bone.

BACKGROUND: The term malignant giant cell tumor embraces multiple entities and therefore can be confusing. The goals of the current study were to define the clinicopathologic and histologic features of malignancy in giant cell tumors and to clarify the terminology. METHODS: The authors reviewed all cases from the Rizzoli Institute (Bologna, Italy) of primary (PMGCT) and secondary (SMGCT) malignancy in giant cell tumors. PMGCT is a high-grade sarcoma that arises side by side with benign giant cell tumors. SMGCT is a high-grade sarcoma that occurs at the sites of previously treated giant cell tumors of bone. RESULTS: The authors report 5 PMGCTs and 12 SMGCTs; half of the SMGCTs were postradiation sarcomas. Patient age ranged from 20 to 68 years (median, 62 years) for PMGCT and from 30 to 77 years (median, 40 years) for SMGCT. The average latent period between diagnosis of giant cell tumor and diagnosis of SMGCT was 9 years (range, 3-15 years) for patients with postradiation SMGCT and 19 years (range, 7-28 years) for patients with SMGCT resulting from spontaneous transformation. The histologic classification of high-grade sarcomas in the PMGCT group was osteosarcoma in four cases and malignant fibrous histiocytoma in one case. In the SMGCT group, the histologic classification was osteosarcoma in nine cases, fibrosarcoma in two cases, and malignant fibrous histiocytoma in one case. The outcomes associated with all malignancies in giant cell tumors were poor, with the worst outcome associated with postradiation SMGCT. CONCLUSIONS: Malignancies in giant cell tumors of bone always are high-grade sarcomas with a poor prognosis. These lesions must be distinguished from benign giant cell tumors of bone. SMGCT usually is easy to diagnose upon malignant clinicoradiographic presentation. In contrast, PMGCT often mimics giant cell tumors both clinically and radiographically. In addition, upon histologic examination, PMGCT shows areas of conventional giant cell tumor, which can lead to difficulties in making the correct diagnosis.

Adult↗