9
Views
5
CrossRef citations to date
0
Altmetric
Original Article

Extracellular Matrix of Small Round cell Tumors of Childhood: An Immunohistochemical Study of 67 Cases

, , , &
Pages 111-125 | Received 17 Jul 1993, Accepted 05 Aug 1993, Published online: 09 Jul 2009

References

  • Dickman P S, Liotta L A, Triche T J. Ewing's sarcoma. Characterization in established cultures and evidence of its histogenesis. Lab Invest 1982; 47: 375–82
  • Triche T J. Morphologic tumor markers. Semin Oncol 1987; 14: 139–72
  • Triche T J, Askin F B, Kissane J M. Neuroblastoma, Ewing's sarcoma, and the differential diagnosis of small-, round-, blue-cell tumors. Pathology of Neoplasia in Children and Adolescents, M Finegold. Saunders WB, Philadelphia 1986; 145–95
  • Stern R. Current concepts in the diagnosis of human soft tissue sarcomas. Hum Pathol 1981; 12: 777–81
  • Liotta L A, Wewer U, Rao N C, et al. Biochemical mechanisms of tumor invasion and metastasis. Adv Exp Med Biol 1988; 233: 161–9
  • Liotta L A. Mechanisms of cancer invasion and metastasis. Cancer Growth Prog 1989; 3: 58–71
  • Hunt G. The role of laminin in cancer invasion and metastasis. Exp Cell Biol 1989; 57: 165–76
  • Colombatti A, Poletti A, Bressan G M, Carbone A, Volpin D. Widespread codistribution of glycoprotein gp115 and elastin in chick eye and other tissues. Collagen Relat Res 1987; 7: 259–75
  • Garbisa S, Ballin M, Daga-Gordini D, et al. Transient expression of type IV collagenorytic metalloproteinase by human mononuclear phagocytes. J Biol Chem 1986; 261: 2369–75
  • Grigioni W F, Biagini G, Errico A D, et al. Behaviour of basement membrane antigens in gastric and colorectal cancer. Immunohistochemical study. Acta Pathol Jpn 1986; 36: 173–84
  • Campbell J H, Terranova V P. Laminin: Molecular organization and biological function. J Oral Pathol 1988; 17: 309–23
  • Martin G R, Timpl R, Kühn K. Basement membrane proteins. Molecular structure and function. Adv Protein Chem 1988; 39: 1–50
  • Timpl R, Aumailley M. Biochemistry of basement membranes. Adv Nephrol 1989; 18: 59–76
  • Yurchenco P D, Schittny J C. Molecular architecture of basement membranes. FASEB J 1990; 4: 1577–90
  • Couchman J R, Austria M R, Woods A. Fibronectin-cell interactions. J Invest Dermatol 1990; 94: 7S–14S
  • Humphries M J, Obara M, Olden K, Yamada K M. Role of fibronectin in adhesion, migration, and metastasis. Cancer Invest 1989; 7: 373–93
  • Ruoslahti E. Fibronectin and its receptors. Annu Rev Biochem 1988; 57: 375–413
  • Dedhar S, Argraves W S, Suzuki S, Ruoslahti E, Peirschbacher M D. Human osteosarcoma cells resistant to detachment by an Arg-Gly-Asp-containing peptide overproduce the fibronectin receptor. J Cell Biol 1987; 105: 1175–82
  • Reichard-Brown J L, Akeson R. Correlation of the cell phenotype of cultured cell lines with their adhesion to components of the extracellular matrix. Dev Biol 1983; 96: 304–16
  • Rauvala H. Neurite outgrowth of neuroblastoma cells: Dependence on adhesion surface-cell surface interactions. J Cell Biol 1984; 98: 1010–4
  • Tobey S L, McClelland K J, Culp L A. Neurite extension by neuroblastoma cells on substratum-bound fibronectin's cell-binding fragment but not the heparan sulfate-binding protein platelet factor-4. Exp Cell Res 1985; 158: 395–412
  • Waite K A, Mugnai G, Culp L A. A second cell-binding domain on fibronectin (RGDS-independent) for neurite extension of human neuroblastoma cells. Exp Cell Res 1987; 169: 311–27
  • Weiss R E, Reddi A H. Role of fibronectin in collagenous matrix-induced mesenchymal cell proliferation and differentiation in vivo. Exp Cell Res 1981; 133: 247–54
  • Kühl U, Timpl R, von der Mark K. Synthesis of type IV collagen and laminin in cultures of skeletal muscle cells and their assembly on the surface of myotubes. Dev Biol 1982; 93: 344–54
  • Muthukumaran N, Reddi A H. Bone matrix-induced local bone induction. Clin Orthop Relat Res 1985; 200: 159–64
  • von der Mark K, Öcalan M. Antagonistic effects of laminin and fibronectin on the expression of the myogenic phenotype. Differentiation 1989; 40: 150–7
  • Chan BM C, Matsuura N, Takada Y, Zetter B R, Hemler M E. In vitro and in vivo consequences of VLA-2 expression in rhabdomyosarcoma cells. Science 1991; 251: 1600–2
  • Miettinen M, Foidart J-M, Ekblom P. Immunohistochemical demonstration of laminin, the major glycoprotein of basement membranes, as an aid in the diagnosis of soft tissue tumors. Am J Clin Pathol 1983; 79: 306–11
  • Alitalo K, Kurkinen M, Vaheri A, Virtanen I, Rohde H, Timpl R. Basal lamina glycoproteins are produced by neuroblastoma cells. Nature 1980; 287: 465–6
  • Tsokos M, Scarpa S, Thorgeirsson U, Liotta L, Triche T. Differentiation, matrix protein synthesis and in vitro invasiveness of human neuroblastoma. (Abstract). Fed Proc 1983; 45: 525
  • Tsokos M, Ross R A, Triche T J. Neuronal schwannian and melanocytic differentiation of human neuroblastoma cells in vitro. Prog Clin Biol Res 1985; 175: 55–68
  • DeClerck Y A, Bogenmann E, Jones P A. Collagen synthesis by short-term explants of pediatric tumors. Cancer Res 1985; 45: 1229–38
  • DeClerck Y A, Lee C. Collagen biosynthesis in human neuroblastoma cell lines: Evidence for expression of glial cell properties. JNCI 1985; 75: 431–9
  • Tsokos M, Scarpa S, Ross R A, Triche T J. Differentiation of human neuroblastoma recapitulates neural crest development. Study of morphology, neurotransmitter enzymes, and extracellular matrix proteins. Am J Pathol 1987; 128: 484–96
  • Scarpa S, D'Orazi G, Modesti M, Modesti A. Ewing's sarcoma lines synthesize laminin and fibronectin. Virchows Arch [A] 1987; 410: 375–81
  • Scarpa S, Modesti A, Triche T J. Extracellular matrix synthesis by undifferentiated childhood tumor cell lines. Am J Pathol 1987; 129: 74–85
  • Siegal G P, Miller E W, Mirmiran S A, Askin F B, Liotta L A. Collagen and laminin immunoreactivity in Ewing's sarcoma: Support for an uncommitted mesenchymal cell derivation. Pediatr Pathol 1986; 5: 485–7
  • Triche T J, Askin F B, Kissane J M. Neuroblastoma, Ewing's sarcoma, and the differential diagnosis of small-, round-, blue-cell tumors. Pathology of Neoplasia in Children and Adolescents, M Finegold. Saunders WB, Philadelphia 1986; 145–95
  • Jaffe R, Santamaria M, Yunis E J, et al. The neuroectodermal tumor of bone. Am J Surg Pathol 1984; 8: 885–98
  • Yunis E J. Ewing's sarcoma and related small round cell neoplasms in children. Am J Surg Pathol 1986; 10(Suppl 1)54–62
  • Schmidt D, Herrmann C, Jürgens H, Harms D. Malignant peripheral neuroectodermal tumor and its necessary distinction from Ewing's sarcoma. A report from the Kiel Pediatric Tumor Registry. Cancer 1991; 68: 2251–9
  • Cavazzana A O, Miser J S, Jefferson J, Triche T J. Experimental evidence for a neural origin of Ewing's sarcoma of bone. Am J Pathol 1987; 127: 507–18
  • Franceschi R T, James W M, Zerlauth G. 1α,25-Dihydroxyvitamin D3 specific regulation of growth, morphology, and fibronectin in a human osteosarcoma cell line. J Cell Physiol 1985; 123: 401–9
  • Ueda Y, Nakanishi I. Immunohistochemical and biochemical studies on the collagenous proteins of human osteosarcomas. Virchows Arch [B] 1989; 58: 79–88
  • Crocker J, Overton S P, Smith P J. Type IV collagen in Hodgkin's disease. An immunohistochemical study. Am J Clin Pathol 1988; 89: 57–62
  • Karttunen T, Alavaikko M, Apaja-Sarkkinen M, Autio-Harmainen H. An immunohistochemical study of laminin type-IV collagen and type-III pN-collagen with relation to reticular fibres in Hodgkin's disease. Int J Cancer 1988; 41: 52–8
  • Reilly J T, Nash J R, Mackie M J, McVerry B A. Distribution of fibronectin and laminin in normal and pathological lymphoid tissue. J Clin Pathol 1985; 38: 849–54
  • Alitalo K, Keski-Oja J, Vaheri A. Extracellular matrix proteins characterize human tumor cell lines. Int J Cancer 1981; 27: 755–61
  • Autio-Harmainen H, Apaja-Sarkkinen M, Martikainen J, Taipale A, Rapola J. Production of basement membrane laminin and type IV collagen by tumors of striated muscle: An immunohistochemical study of rhabdomyosarcomas of different histologic types and a benign vaginal rhabdomyoma. Hum Pathol 1986; 17: 1218–24
  • Barsky S H, Siegal G P, Jannotta F, Liotta L A. Loss of basement membrane components by invasive tumors but not by their benign counterparts. Lab Invest 1983; 49: 140–7
  • Siegal G P, Barsky S H, Terranova V P, Liotta L A. Stages of neoplastic transformation of human breast tissue as monitored by dissolution of basement membrane components. Invasion Metastasis 1981; 1: 54–70
  • Borsi L, Allemanni G, Castellani P, Rosellini C, Di Vinci A, Zardi L. Structural differences in the cell binding region of human fibronectin molecules isolated from cultured normal and tumor-derived human cells. FEBS Lett 1985; 192: 71–4
  • Cavazzana A O, Schmidt D, Ninfo V, et al. Spindle cell rhabdomyosarcoma. A prognostically favorable variant of rhabdomyosarcoma. Am J Surg Pathol 1992; 16: 229–35
  • Schmidt D, Reimann O, Treuner J, Harms D. Cellular differentiation and prognosis in embryonal rhabdomyosarcoma. Virchows Arch [A] 1986; 409: 183–94
  • Dickman P S, Tsokos M, Triche T J. Rhabdomyosarcoma: Cell culture, xenografts, and animal models. Rhabdomyosarcomas and Related Tumors in Children and Adolescents, H M Maurer, F Ruymann, C Pochedly. CRC Press, Boca Raton, FL 1991; 49–88
  • Caillaud J M, Gerard-Marchant R, Marsden H B, et al. Histopathological classification of childhood rhabdomyosarcoma: A report from the International Society of Pediatric Oncology Pathology Panel. Med Pediatr Oncol 1989; 17: 391–400
  • Douglass E C, Valentine M, Etcubanas E, et al. A specific chromosomal abnormality in rhabdomyosarcoma. Cytogenet Cell Genet 1987; 45: 148–55
  • Wang-Wuu S, Soukup S, Ballard E, Gotwals B, Lampkin B. Chromosomal analysis of sixteen human rhabdomyosarcomas. Cancer Res 1988; 48: 983–7
  • Newton W A, Jr, Soule E H, Hamoudi A B, et al. Histopauthlogy of childhood sarcomas Intergroup Rhabdomyosarcoma Studies I and II: Clinicopathologic correlation. J Clin Oncol 1988; 6: 67–75
  • Hays D M, Newton W, Jr, Soule E H, et al. Mortality among children with rhabdomyosarcomas of alveolar histologic subtype. J Pediatr Surg 1983; 18: 412–7

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.