Literature DB >> 19734846

Dedifferentiated peripheral chondrosarcomas: regulation of EXT-downstream molecules and differentiation-related genes.

Leida B Rozeman1, Inge H Briaire de Bruijn, Patrizia Bacchini, Eric L Staals, Franco Bertoni, Judith V M G Bovée, Pancras Cw Hogendoorn.   

Abstract

Dedifferentiated peripheral chondrosarcoma is a rare subtype of chondrosarcoma arising superimposed on the cartilage cap of a preexisting osteochondroma. It consists of two clearly defined components, a low-grade malignant, well-differentiated cartilage component and a high-grade non-cartilaginous sarcoma. Signaling pathways having a role in normal cartilage development were analyzed in these tumors, and compared with available data of other cartilaginous tumors. Sixteen well-characterized dedifferentiated peripheral chondrosarcomas were immunohistochemically analyzed for parathyroid hormone-like hormone (PTHLH)-BCL-2, fibroblastic growth factor (FGF), and transforming growth factor-beta signaling molecules, as well as matrix molecules and p53, comparing the chondrogenic component of dedifferentiated peripheral chondrosarcomas with the anaplastic component and with previously published data obtained from conventional grade I and II secondary peripheral chondrosarcomas. Results were correlated with clinical outcome. In the anaplastic component, various lines of differentiation could be found (collagen I (6/16), CD31 (1/16), smooth muscle actin (12/16), muscle-specific actin (12/16) and desmin (2/9)). Compared with the anaplastic component, the chondrogenic component of dedifferentiated peripheral chondrosarcomas shows more often expression of cyclin D1 (P=0.05), p53 (P=0.008), plasminogen activator inhibitor 1 (PAI-1) (P=0.005), and CD44 (P=0.030). Compared with secondary peripheral chondrosarcomas, more samples were positive in the chondrogenic component of dedifferentiated peripheral chondrosarcomas for FGF signaling (FGF receptor 3 P=0.000; bFGF P=0.003) and CD44 (P=0.000). Lower expression of BCL-2 (P=0.025) and absence of CD44v3 (P=0.000), a splice variant of CD44, was observed in the chondrogenic component of dedifferentiated peripheral chondrosarcomas compared with secondary peripheral chondrosarcomas. With regard to clinical data, PAI-1 expression in the chondrogenic component of dedifferentiated peripheral chondrosarcomas correlated with better survival (P=0.019). In conclusion, in the chondrogenic component of dedifferentiated peripheral chondrosarcomas, FGF signaling pathway is active, whereas PTHLH signaling seems to be low/downregulated. Interestingly, although the chondrogenic component of dedifferentiated peripheral chondrosarcoma is CD44+/CD44v3-, secondary peripheral chondrosarcomas is CD44-/CD44v3+, which suggest different splicing (preference). The prognostic value of PAI-1 in dedifferentiated peripheral chondrosarcomas might also be of interest for the more common dedifferentiated central chondrosarcomas.

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Year:  2009        PMID: 19734846     DOI: 10.1038/modpathol.2009.120

Source DB:  PubMed          Journal:  Mod Pathol        ISSN: 0893-3952            Impact factor:   7.842


  12 in total

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Journal:  Clin Cases Miner Bone Metab       Date:  2016-10-05

2.  Dedifferentiated peripheral chondrosarcoma: a clinicopathologic, immunohistochemical, and molecular analysis of four cases.

Authors:  Alessandro Franchi; Gianna Baroni; Iacopo Sardi; Laura Giunti; Rodolfo Capanna; Domenico Campanacci
Journal:  Virchows Arch       Date:  2012-02-16       Impact factor: 4.064

3.  Somatic mosaic IDH1 and IDH2 mutations are associated with enchondroma and spindle cell hemangioma in Ollier disease and Maffucci syndrome.

Authors:  Twinkal C Pansuriya; Ronald van Eijk; Pio d'Adamo; Maayke A J H van Ruler; Marieke L Kuijjer; Jan Oosting; Anne-Marie Cleton-Jansen; Jolieke G van Oosterwijk; Sofie L J Verbeke; Daniëlle Meijer; Tom van Wezel; Karolin H Nord; Luca Sangiorgi; Berkin Toker; Bernadette Liegl-Atzwanger; Mikel San-Julian; Raf Sciot; Nisha Limaye; Lars-Gunnar Kindblom; Soeren Daugaard; Catherine Godfraind; Laurence M Boon; Miikka Vikkula; Kyle C Kurek; Karoly Szuhai; Pim J French; Judith V M G Bovée
Journal:  Nat Genet       Date:  2011-11-06       Impact factor: 41.307

4.  Chondrosarcoma: with updates on molecular genetics.

Authors:  Mi-Jung Kim; Kyung-Ja Cho; Alberto G Ayala; Jae Y Ro
Journal:  Sarcoma       Date:  2011-02-15

5.  Proximal epithelioid sarcomatous dedifferentiation in secondary chondrosarcoma in a known case of multiple osteochondromatosis.

Authors:  Biswajit Dey; Mangesh Chikhale; Prita Pradhan; Adarsh Barwad; Bhawana Ashok Badhe
Journal:  J Lab Physicians       Date:  2017 Jul-Sep

Review 6.  Biomarkers of Osteosarcoma, Chondrosarcoma, and Ewing Sarcoma.

Authors:  Francesco R Evola; Luciano Costarella; Vito Pavone; Giuseppe Caff; Luca Cannavò; Andrea Sessa; Sergio Avondo; Giuseppe Sessa
Journal:  Front Pharmacol       Date:  2017-04-07       Impact factor: 5.810

Review 7.  Hereditary Multiple Exostoses: Current Insights.

Authors:  Antonio D'Arienzo; Lorenzo Andreani; Federico Sacchetti; Simone Colangeli; Rodolfo Capanna
Journal:  Orthop Res Rev       Date:  2019-12-13

Review 8.  Immunotherapy for Chordoma and Chondrosarcoma: Current Evidence.

Authors:  Jeffrey I Traylor; Mark N Pernik; Aaron R Plitt; Michael Lim; Tomas Garzon-Muvdi
Journal:  Cancers (Basel)       Date:  2021-05-17       Impact factor: 6.639

9.  The molecular pathogenesis of dedifferentiated chondrosarcoma.

Authors:  Akio Sakamoto
Journal:  Indian J Orthop       Date:  2014-05       Impact factor: 1.251

10.  Hereditary multiple exostoses complicated with lung cancer with cough as the first symptom: a case report.

Authors:  Xinyu Jia; Ye Liu; Chaojie Wu; Zhenzhen Wu; Ningfei Ji; Mao Huang
Journal:  Transl Cancer Res       Date:  2020-04       Impact factor: 1.241

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