Oral Oncology
Volume 40, Issue 1 , Pages 36-42 , January 2004

The effect of laminin and its peptide SIKVAV on a human salivary gland myoepithelioma cell line

  • A.C.T Capuano

      Affiliations

    • Department of Oral Pathology, School of Dentistry, University of São Paulo, São Paulo SP 05508-900, Brazil
  • ,
  • R.G Jaeger

      Affiliations

    • Department of Histology and Embryology, Institute of Biomedical Sciences, University of São Paulo, São Paulo SP 05508-900, Brazil
    • Corresponding Author InformationCorresponding author. Tel.: +55-11-3091-7742; fax: +55-11-3091-7402

Received 6 May 2003 ,Accepted 27 May 2003.

References 

  1. Sciubba JJ, Brannon RB. Myoepithelioma of salivary glands: report of 23 cases. Cancer. 1982;49:562–572
  2. Sciubba JJ, Goldstein BH. Myoepithelioma. Review of the literature and report of a case with ultrastructural confirmation. Oral Surg. 1976;42:328–338
  3. Seifert G, Sobin LH. The World Health Organization's histological classification of salivary gland tumors. A commentary on the second edition. Cancer. 1992;70:379–385
  4. Simpson RHW, Jones H, Beasley P. Benign myoepithelioma of the salivary glands: a true entity?. Histopathology. 1995;27:1–9
  5. Takai Y, Dardick I, Mackay A, Burford-Mason A, Mori M. Diagnostic criteria for neoplastic myoepithelial cells in pleomorphic adenomas and myoepitheliomas. Immunocytochemical detection of muscle-specific actin, cytokeratin 14, vimentin, and glial fibrillary acidic protein. Oral Surg Oral Med Oral Pathol. 1995;79:330–341
  6. Dardick I, Thomas MJ, Van Nostrand AWP. Myoepithelioma. New concepts of histology and classification: a light and electron microscopic study. Ultrastruct Pathol. 1989;13:187–224
  7. Barnes L, Appel BN, Perez H, El-Attar AM. Myoepitheliomas of the head and neck: case report and review. J Surg Oncol. 1985;28:21–28
  8. Dardick I. Myoepithelioma: definitions and diagnostic criteria. Ultrastruct Pathol. 1995;19:335–345
  9. Azuma M, Sato M. Morphogenesis of normal human salivary gland cells in vitro. Histol Histopathol. 1994;9:781–790
  10. Burford-Mason AP, Dardick I, MacKay A. Collagen gel cultures of normal salivary gland: conditions for continued proliferation and maintenance of major cell phenotypes in vitro. Laryngoscope. 1994;104:335–340
  11. França CM, Jaeger MMM, Jaeger RG, Araújo NS. The role of basement membrane proteins on the expression of neural cell adhesion molecule (N-CAM) in an adenoid cystic carcinoma cell line. Oral Oncol. 2000;36:248–252
  12. França CM, Jaeger RG, Freitas VM, Araújo NS, Jaeger MMM. Effect of N-CAM on in vitro invasion of human adenoid cystic carcinoma cells. Oral Oncol. 2001;37:638–642
  13. Freitas VM, Jaeger RG. The effect of laminin and its peptide SIKVAV on a human salivary gland adenoid cystic carcinoma cell line. Virchows Archiv. 2002;441:569–576
  14. Fujita Y, Yoshida T, Sakakura Y, Sakakura T. Reconstruction of pleomorphic adenoma of the salivary glands in three-dimensional collagen gel matrix culture. Virchows Arch. 1999;434:137–143
  15. Jaeger MMM, Araújo VC, Kachar B, Jaeger RG. The effect of spatial arrangement of the basement membrane on cultured pleomorphic adenoma cells. Study by immunocytochemistry, electron and confocal microscopy. Virchows Archiv. 1997;430:467–477
  16. Jaeger RG, de Oliveira PT, Jaeger MMM, de Araújo VC. Expression of smooth-muscle actin in cultured cells from human plasmacytoid myoepithelioma. Oral Surg Oral Med Oral Pathol Oral Radiol Endod. 1997;84:663–667
  17. De Oliveira PT, Jaeger MMM, Miyagi SPH, Jaeger RG. The effect of a reconstituted basement membrane (Matrigel) on a human salivary gland myoepithelioma cell line. Virchows Arch. 2001;439:571–578
  18. Yang J, Flynn D, Larson L, Hamamoto S. Growth in primary culture of mouse submandibular epithelial cells embedded in collagen gels. In Vitro Cell Dev Biol Anim. 1982;18:435–442
  19. Yang J, Larson L, Nandi S. Three-dimensional growth and morphogenesis of mouse submandibular epithelial cells in serum-free primary culture. Exp Cell Res. 1982;137:481–485
  20. Colognato H, Yurchenco PD. Form and function: The laminin family of heterotrimers. Dev Dyn. 2000;218:213–234
  21. Kibbey MC, Grant DS, Kleinman H. Role of SIKVAV site on laminin in promotion of angiogenesis and tumor growth: an in vivo Matrigel model. J Natl Canc Inst. 1993;84:1633–1638
  22. Malinda KM, Kleinman H. The laminins. Int. J. Biochem Cell Biol. 1996;28:957–959
  23. Royce LS, Martin GR, Kleinmann HK. Induction of an invasive phenotype in benign tumor cells with laminin A-chain syntetic peptide. Invasion Metastasis. 1992;12:149–155
  24. Kutlesa S, Siler U, Speiser A, Wessel JT, Virtanen I, Rousselle P, et al.  Developmentally regulated interactions of human thymocytes with different laminin isoforms. Immunology. 2002;105:407–418
  25. Hynes RO. Integrins: versatility, modulation, and signaling in cell adhesion. Cell. 1992;69:11–25
  26. Mercurio AM. Laminin receptors: achieving specificity through cooperation. Trends Cell Biol. 1995;5:419–423
  27. Buchner A, David R, Hansen LS. “Hyaline cells” in pleomorphic adenoma of salivary gland origin. Oral Surg. Oral Med. Oral Pathol. 1981;52:506–512
  28. Franquemont DW, Mills SE. Plasmacytoid monomorphic adenoma of salivary glands. Absence of myogenous differentiation and comparison to spindle cell myoepithelioma. Am. J. Surg. Pathol. 1993;17:146–153
  29. Lam RMY. An electron microscopic histochemical study of the histogenesis of major salivary gland pleomorphic adenoma. Ultrastruct Pathol. 1985;8:207–223
  30. Takai Y, Mori M, Dardick I, MacKay A, Leung R, Wattimena D, et al.  Myofilament localization and immunoelectron microscopic detection of muscle-specific actin in neoplastic myoepithelial cells in pleomorphic adenomas and myoepitheliomas. Ultrastruct Pathol. 1994;18:575–591

PII: S1368-8375(03)00130-1

doi: 10.1016/S1368-8375(03)00130-1

Oral Oncology
Volume 40, Issue 1 , Pages 36-42 , January 2004