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Giant Cell Tumor (giant + cell_tumor)
Selected AbstractsRANK Expression as a Cell Surface Marker of Human Osteoclast Precursors in Peripheral Blood, Bone Marrow, and Giant Cell Tumors of BoneJOURNAL OF BONE AND MINERAL RESEARCH, Issue 9 2006Gerald J Atkins Abstract RANK expression in vivo on hematopoietic subsets including pre-osteoclasts, identified by monoclonal antibodies, has not been described. We describe the lineages that express RANK in bone marrow, peripheral blood, and GCTs. We show that CD14+RANKhigh cells constitute a circulating pre-osteoclast pool. Introduction: The expression of RANK by subsets of hematopoietic cells has not been adequately studied in humans. While attributed to the monocytoid lineage, the phenotype of the pre-osteoclast (pre-OC) with respect to RANK expression in vivo remains unclear. We tested monoclonal antibodies (MAbs) raised against the extracellular domain of recombinant human RANK for reactivity with normal peripheral blood (PB) and bone marrow (BM) mononuclear cells (PBMNCs and BMMNCs, respectively). We also tested reactivity with giant cell tumor cells (GCT), a confirmed source of pre-OC and mature OCs. Materials and Methods: Human PBMNCs, BMMNCs, and GCT cells were analyzed for reactivity with anti-RANK MAbs by flow cytometry in combination with hematopoietic lineage restricted markers. GCTs were also analyzed by immunofluorescence. CD14+ monocytoid cells were sorted by fluorescence-activated cell sorting (FACS) based on their relative RANK expression and cultured under OC-forming conditions. Results: RANK+ cells were detected similarly by three independent anti-RANK MAbs. One MAb (80736) immunoprecipitated RANK,RANKL complexes from surface-biotinylated GCT lysates. Using dual-color flow cytometry, RANK was detected on CD14+ (monocytoid), CD19+ (B-lymphoid), CD56+ (NK cell), and glycophorin A+ erythroid progenitors. Minor populations of both CD3+ T lymphocytes and BM CD34+ hematopoietic progenitors also expressed cell surface RANK. In GCTs, RANK expression was identified on mononuclear CD45+CD14+,V,3+c-Fms+ cells, likely to be committed pre-OC, and on multinucleated CD45+,V,3+TRACP+ OCs. Importantly, sorted CD14+RANKhigh PBMNCs treated with recombinant RANKL and macrophage-colony stimulating factor (M-CSF) gave rise to approximately twice the number of osteoclasts than RANKmid or RANKlow cells. Conclusions: These results suggest that committed monocytoid RANK+ pre-OCs are represented in the marrow and circulate in the periphery, forming a pool of cells capable of responding rapidly to RANKL. The ability to reliably detect committed pre-OC in peripheral blood could have important clinical applications in the management of diseases characterized by abnormal osteoclastic activity. [source] Cytodiagnosis of benign fibrous histiocytoma of rib and diagnostic dilemma: A case reportDIAGNOSTIC CYTOPATHOLOGY, Issue 6 2010Santosh Kumar Mondal M.D. Abstract Benign fibrous histiocytoma (BFH) of bone is rare in occurrence, and rib is an unusual site. There are limited case reports of this entity in the literature, and cytodiagnosis of this tumor is not described. A 24-year-old man presented with a firm mass and pain in the right lateral chest wall. Radiological investigations (plain radiograph and computed tomography) revealed a lytic bone lesion involving the 5th rib. Radiologically, giant cell tumor (GCT), BFH, and plasmacytoma were suspected. In fine-needle aspiration cytology (FNAC), admixture of benign stromal cells and scattered osteoclast type giant cells were found in the smears. Differential diagnoses of BFH, GCT (non-epiphyseal type), fibrous dysplasia, and aneurysmal bone cyst were made on cytology. Subsequent histologic examination confirmed the diagnosis of BFH. Cytologic diagnosis of BFH of rib is difficult as this tumor may mimic other giant cell containing tumors of bone in FNAC. The final diagnosis should always be made after correlation with histological, radiological, and clinical features. Diagn. Cytopathol. 2010. © 2009 Wiley-Liss, Inc. [source] Fine-needle aspiration of brown tumor of bone: Cytologic features with radiologic and histologic correlationDIAGNOSTIC CYTOPATHOLOGY, Issue 2 2009Ph.D., Sasha Pavlovic M.D. Abstract We report the case of a 40-year-old man with tertiary hyperparathyroidism due to end stage renal disease who initially presented with acute-onset paraplegia, elevated serum parathyroid hormone, and multiple bone abnormalities, including a large extradural intraspinal mass seen by magnetic resonance imaging. In contrast with imaging features, fine-needle aspiration cytology showed numerous benign-appearing multinucleated osteoclast-type giant cells that are the characteristics of either brown tumor or benign giant cell tumor of bone. Sheets of mononuclear spindled stromal cells were also noted. A core-needle biopsy confirmed the diagnostic features of brown tumor of hyperparathyroidism. Diagn. Cytopathol. 2009. © 2008 Wiley-Liss, Inc. [source] Endoscopic ultrasound-guided fine-needle aspiration of undifferentiated carcinoma with osteoclast-like giant cells of the pancreas: A report of 2 cases with literature reviewDIAGNOSTIC CYTOPATHOLOGY, Issue 9 2007Shefali Chopra M.D. Abstract Undifferentiated carcinoma with osteoclast-like giant cells of the pancreas is rare. Histologically it mimics the giant cell tumor of the bone and may be associated with a ductal adenocarcinoma. We recently encountered two such cases, both of which were biopsied by EUS-guided FNA. Abundant multinucleated osteoclast-like giant cells and many uniform mononuclear cells were present in case 1 so that the diagnosis was made. In case 2, many mononuclear tumor cells with vacuolated and basophilic cytoplasm were present, and rare osteoclast-like giant cells were seen. A diagnosis of adenocarcinoma was made. In both cases, no conspicuous nuclear pleomorphism was noted in the mononuclear cells or the multinucleated giant cells. The histology of case 2 revealed a pure undifferentiated carcinoma with osteoclast-like giant cells. In addition, a liver biopsy revealed globular amyloidosis. To our knowledge, this is the first report of pancreatic undifferentiated carcinoma with osteoclast-like giant cells sampled by EUS-guided FNA and the first case of hepatic globular amyloidosis associated with this tumor. Diagn. Cytopathol. 2007;35:601-606. © 2007 Wiley-Liss, Inc. [source] Genomic instability in giant cell tumor of bone.GENES, CHROMOSOMES AND CANCER, Issue 6 2009A study of 52 cases using DNA ploidy, array-CGH analysis, relocalization FISH Genetic instability in relation to clinical behavior was studied in 52 cases of giant cell tumor of bone (GCTB). Ploidy was determined in the mononuclear cell population by using native cell smears and image cytometry. A relocalization technique allowed fluorescent in situ hybridization (FISH) analysis of CD68-negative neoplastic cells for numerical changes of chromosomes X, 3, 4, 6, 11, and telomeric association on 11p. Genome-wide alterations were tested using array comparative genomic hybridization (array-CGH) on magnetically separated CD68-negative tumor cells. CTNNB1, TP53, and BCL2 protein expression was also analyzed in formol-paraffin sections to see if their pathways are involved in the development of chromosomal instability. CD68-positive histiocytes showed no significant numerical chromosome and telomeric alterations. Based on ploidy values and clinical outcome, we could distinguish five groups as follows: diploid nonrecurrent (n = 20), tetraploid nonrecurrent (n = 6), diploid recurrent (n = 5), tetraploid and/or aneuploid recurrent (n = 14), and malignant cases (n = 7). Random individual-cell aneusomy was significantly (P < 0.001) more frequent in the recurrent groups (36.01 ± 11.94%) than in the benign nonrecurrent cases (10.65 ± 3.66%). The diploid recurrent group showed significantly (P < 0.001) increased balanced aneusomy compared with the diploid nonrecurrent group and the tetraploid nonrecurrent group represented eusomic polysomy. Array-CGH and FISH showed clonal aberrations almost exclusively in the malignant group. None of the protein markers tested showed significant correlation with elevated aneuploidy/polysomy (P = 0.56). Our results show that ploidy determination combined with FISH analysis may help predicting recurrence potential of GCTB and suggest that chromosomal abnormalities superimposed on telomeric associations could be responsible for an aggressive clinical course. © 2009 Wiley-Liss,Inc. [source] Simvastatin: a novel adjuvant for giant cell tumorINTERNATIONAL JOURNAL OF RHEUMATIC DISEASES, Issue 1 2008Hamid NAMAZI No abstract is available for this article. [source] Evidence for Increased Clinical Severity of Familial and Sporadic Paget's Disease of Bone in Campania, Southern Italy,JOURNAL OF BONE AND MINERAL RESEARCH, Issue 12 2006Domenico Rendina Abstract The analysis of 236 Italian patients with Paget's bone disease showed higher clinical severity and greater frequency of neoplastic degeneration among patients who live or descend from individuals living in the Campania region (southern Italy). A prevalent involvement of the spine and the skull, the sites preferentially involved in giant cell tumors complicating Paget's disease, was also shown in familial cases from this geographical region. Introduction: The Campania region in southern Italy has been recently indicated as a high prevalence area for Paget's disease of bone (PDB), and most pagetic families with multiple occurrence of neoplasms in affected members were from this geographical region. Materials and Methods: We evaluated the PDB epidemiological characteristics in 125 patients from Campania in comparison with 111 patients from other Italian regions. Twenty-three patients from Campania and 26 patients from other Italian areas had at least one first-degree relative affected by PDB (familial cases). The remaining patients made up the sporadic cases. Results: Among subjects from Campania, the patients in the familial group tended to come from larger families and showed at diagnosis higher serum total alkaline phosphatase, larger extension of disease, and earlier mean age with respect to patients with PDB of the sporadic group. The skull, spine, and humerus were the sites preferentially involved in the familial cases. In contrast, no such differences were observed between familial and sporadic PDB cases among patients from the other geographical areas, except for a lower age at diagnosis. An increased PDB clinical severity was finally observed in the PDB cohort from Campania in comparison with patients from other Italian regions. Neoplastic degeneration of pagetic bones (osteosarcoma and giant cell tumor) was exclusively observed in patients with polyostotic PDB from Campania. Conclusions: We showed a higher clinical severity of PDB with occurrence of neoplastic degeneration in the high prevalence area of Campania, with its maximum expression in cases with familial disease. This peculiar pattern might be traced to genetic predisposition and/or to the abnormal impact of a still undefined environmental trigger. [source] High-pressure paint-gun injury of the finger simulating giant cell tumor of tendon sheathJOURNAL OF CUTANEOUS PATHOLOGY, Issue 2 2005Catherine M. Stefanato At this pressure, paint will penetrate the skin and spread quickly through fascial planes and tendon sheaths. The present case is that of a lesion from the finger of a 35-year-old white male in whom a history was initially unavailable. Histologic examination revealed diffuse fibrohistiocytic proliferation and giant cells, with numerous darkly pigmented, uniformly small-sized particles throughout the lesion. The initial impression was that of a giant cell tumor of tendon sheath. However, the pigment particles were negative for Perls stain, and polariscopic examination revealed clear refractile fragments. These findings raised the possibility that the lesion was the result of a traumatic event. On further inquiry, it was revealed that the patient had sustained a high-pressure paint-gun injury 1 year earlier. The simulation, histopathologically, of a giant cell tumor of tendon sheath by a high-pressure paint-gun injury has not, to our knowledge, been reported previously, nor has the histologic finding of small, uniformly sized pigment particles and polarizable refractile fragments in this particular type of injury. [source] Cytological properties of stromal cells derived from giant cell tumor of bone (GCTSC) which can induce osteoclast formation of human blood monocytes without cell to cell contactJOURNAL OF ORTHOPAEDIC RESEARCH, Issue 5 2005Makoto Nishimura Abstract When human blood monocytes were cocultured with stromal cells derived from human giant cell tumor of bone (GCTSC) and a Millipore filter (0.4 ,m) was interposed between monocytes and GCTSC, multinucleated giant cell formation of monocytes was induced. The multinucleated giant cells have characters as osteoclast-like cells, indicating that a soluble osteoclast-inducing factor(s) is secreted from GCTSC expressing RANK, RANKL/ODF/OPGL and TACE mRNA. Furthermore, OCIF/OPG inhibited GCTSC-induced osteoclastogenesis, showing that the RANK,RANKL system is involved in GCTSC-induced osteoclastogenesis and that soluble form of ODF/RANKL induces osteoclasts from monocytes. GCTSC expressed the cytokine mRNAs such as M-CSF, GM-CSF, IL-3, IL-4, IL-6, and IFN-, mRNAs. None of IL-1r,, IL-1,, IL-1,, IL-2, IL-4, IL-10, IL-18, TNF-,, GCSF and IFN-, could be detected in all culture media. A significant amount of IL-6 could be detected in the culture media of all GCTSC. IL-8 was found in the culture media of two GCTSC and two osteosarcoma-derived cells. M-CSF was detected in all culture media. GCTSC express CaSR, and stimulation of GCTSC with either extracellular Ca2+ or neomycin, agonist of CaSR, augumented the expression of RANKL. Some lines of GCTSC expressed alkaline phosphatase, osteocalcin and Cbfa1, suggesting that GCTSC are intimately related to osteoblastic lineage. © 2005 Orthopaedic Research Society. Published by Elsevier Ltd. All rights reserved. [source] Diffuse-type giant cell tumor/pigmented villonodular synovitis arising in the sacrum: Malignant formPATHOLOGY INTERNATIONAL, Issue 9 2007Yoshinao Oda Diffuse-type giant cell tumor (GCT)/pigmented villonodular synovitis (PVNS) in the axial skeleton or spine is rare. Herein is reported a case of diffuse-type GCT/PVNS involving the sacrum and the fifth lumbar vertebra, in which the patient developed regional lymph node swelling after recurrence. The recurrent tumor was found to have atypical histological features such as spindle cell morphology, cytological atypia and high mitotic rate, which are compatible with the diagnostic criteria of secondary malignant diffuse-type GCT/PVNS. Although the nodal lesions were not sampled histologically, the clinical and histological features indicate that the current case is an example of malignant diffuse-type GCT/PVNS. This case is considered to be the first case of malignant diffuse-type GCT/PVNS in the spine, because no such lesions have been previously reported in the axial skeleton or spine. Careful surveillance should be required for diffuse-type GCT/PVNS arising at unusual site. [source] Primary giant cell tumor of soft tissues similar to bone giant cell tumor: A case report and literature reviewPATHOLOGY INTERNATIONAL, Issue 1 2001José L. Rodríguez-Peralto In this report we describe a primary giant cell tumor (GCT) of soft tissues located in the left dorsal wrist of a 52-year-old man. Plain radiographs did not reveal any lesion in his carpal or hand bones. Although the tumor was clinically considered a ganglion initially, the microscopic features were identical to those found in classic GCT of bone. Light microscopy showed a lesion composed of a homogeneously mixed proliferation of spindle and polygonal mononucleated stromal cells and evenly distributed multinucleated, osteoclast-like giant cells. Whereas most bone tumors have an extraosseous counterpart, only 13 cases of GCT in soft tissues had been published until 1998. Moreover, 64 new cases have been reported in three series. Nevertheless, most major reviews and textbooks do not consider this tumor as a specific entity and regard it as a low grade variant of malignant GCT of soft tissue. We describe the clinical, histologic, and immunohistochemical features of this rare benign neoplasm emphasizing the differential diagnosis with its malignant soft tissue counterpart, an ominous tumor. [source] Evidence for Increased Clinical Severity of Familial and Sporadic Paget's Disease of Bone in Campania, Southern Italy,JOURNAL OF BONE AND MINERAL RESEARCH, Issue 12 2006Domenico Rendina Abstract The analysis of 236 Italian patients with Paget's bone disease showed higher clinical severity and greater frequency of neoplastic degeneration among patients who live or descend from individuals living in the Campania region (southern Italy). A prevalent involvement of the spine and the skull, the sites preferentially involved in giant cell tumors complicating Paget's disease, was also shown in familial cases from this geographical region. Introduction: The Campania region in southern Italy has been recently indicated as a high prevalence area for Paget's disease of bone (PDB), and most pagetic families with multiple occurrence of neoplasms in affected members were from this geographical region. Materials and Methods: We evaluated the PDB epidemiological characteristics in 125 patients from Campania in comparison with 111 patients from other Italian regions. Twenty-three patients from Campania and 26 patients from other Italian areas had at least one first-degree relative affected by PDB (familial cases). The remaining patients made up the sporadic cases. Results: Among subjects from Campania, the patients in the familial group tended to come from larger families and showed at diagnosis higher serum total alkaline phosphatase, larger extension of disease, and earlier mean age with respect to patients with PDB of the sporadic group. The skull, spine, and humerus were the sites preferentially involved in the familial cases. In contrast, no such differences were observed between familial and sporadic PDB cases among patients from the other geographical areas, except for a lower age at diagnosis. An increased PDB clinical severity was finally observed in the PDB cohort from Campania in comparison with patients from other Italian regions. Neoplastic degeneration of pagetic bones (osteosarcoma and giant cell tumor) was exclusively observed in patients with polyostotic PDB from Campania. Conclusions: We showed a higher clinical severity of PDB with occurrence of neoplastic degeneration in the high prevalence area of Campania, with its maximum expression in cases with familial disease. This peculiar pattern might be traced to genetic predisposition and/or to the abnormal impact of a still undefined environmental trigger. [source] |