• C-Fos is surface active and interacts differentially with phospholipid monolayers. Borioli, G.A., Caputto, B.L. and Maggio, B. (2001) Biochim. Biophys. Res. Comm. 280:9-13
  • Sphingolipid monolayers on the air-water interface and electrochemical behavior of the films transferred onto glassy carbon electrodes. Wilke, N., Baruzzi, A.M. and Maggio, B. (2001) Langmuir. 17:3980-3986
  • Transduction to self-assembly of molecular geometry and local interactions in mixtures of ceramides and ganglioside GM1. Carrer,D.C. and Maggio, B. (2001) Biochim.Biophys.Acta. 1514: 87-89.
  • The amphiphilic character of glycogenin. Carrizo, M.E., Miozzo, M.C., Maggio, B. and Curtino, J.A. (2001) FEBS Lett. 509:323-326.
  • Compositional domain immiscibility in whole myelin monolayers at the air-water interface and Langmuir-Blodgett films. Oliveira, R.G. and Maggio, B. (2002) Biochim Biophys Acta 1561:238-250
  • Bi-directional control of sphingomyelinase activity and surface topography in lipid monolayers. M. L.Fanani, S. Härtel, R. G. Oliveira and B. Maggio (2002) Biophysical Journal. 83: 3416-3424
  • Biochemical and structural information transduction at the mesoscopic level in bio-interfaces containing sphingolipids.B. Maggio, M. L. Fanani and R. G. Oliveira (2002) Neurochem.Research. 27:547-557
  • c-fos Is a surface pressure-dependent diverter of phospholipase activity. Borioli, G.A., Fanani, M.L., Caputto, B.L. and Maggio, B (2002) Biochim. Biophys. Res. Comm. 295:964-969.
  • Reflectance and topogaphy of Glycosphingolipid Monolayers at the air-water interface Rosetti C., Oliveira R., Maggio B. (2003) Langmuir 19 : 377-384
  • 96 Ceramide modulates the lipid membrane organization at molecular and supramolecular levels. Carrer, D.C., Härtel, S., Monaco, H.L and Maggio, B. (2003) Chem. Phys. Lipids. 122: 147-153..
  • Surface behavior, microheterogeneity and adsorption equilibrium of myelin at the air-water interface. Oliveira, R.G. and Maggio, B. (2003) Chem. Phys. Lipids. 122: 171-176
  • Interactions of chicken liver basic fatty acid-binding protein with lipid membranes. Nolan, V., Perduca, M., Monaco, H.L., Maggio, B. and Montich, G.G. (2003) Biochim. Biophys. Acta 1611:98-106.
  • Interfacial behavior of glycosphingolipids and related sphingolipids. Maggio, B., Carrer, D.C., Fanani, M.L., Oliveira, R.G. and Rosetti, C.M. (2004)Current Opinions in Colloid an Interface Science 8:448-458.
  • Surface activity and interaction of StarD7 with phospholipid monolayers. Angeletti, S., Maggio, B. and Genti-Raimondi, S. (2004) Biochem.Biophys.Res. Comm. 314:181-185.
  • Lipid composition-dependent incorporation of multiple membrane proteins into liposomes. Daghastanli, K.R.P, Fereira, R.B., Thedei, G.Jr., Maggio, B. and Ciancaglini, P. (2004) Colloids and Surfaces B: Biointerfaces. 36:127-137
  • Phospholipase activity is modulated byc-Fos through substrate expansion and hyperpolarization. (2004) Borioli, G.A., Caputto, B.L. and Maggio, B. FEBS Leters. 570:82-86
  • Favorable and unfavorable interactions of ceramide, neutral glycosphingolipids and gangliosides in mixed monolayers. Maggio. B. (2004) Chem. Phys. Lipids. 132: 209-224

  • 104 Shape transitions and lattice structuring of ceramide-enriched domains generated by sphingomyelinase in lipid monolayers. Härtel, S., Fanani, M.L. and Maggio. B. (2005) Biophys. J. 88:287-304

  • 105 The Folch-Lees proteolipid induces phase coexistence and transverse reorganization of lateral domains in myelin monolayers. Rosetti, C.M., Oliveira, R.G. and Maggio, B. (2005) Biochim. Biophys. Acta 1668: 75-86

  • 106 c-Fos and phosphatidylinositol-4-5-bisphosphate reciprocally reorganize in mixed monolayers. Borioli, G.A., Caputto, B.L. and Maggio, B. (2005) Biochim. Biophys. Acta 1668: 41-52.

  • 107 Penetration and interactions of the antimicrobial peptide, microcine J25, into uncharged phospholipid monolayers. Bellomio, A., Oliveira, R.G., Maggio, B. and Morero, R.D. (2005). J. Coll. Interf. Sci. In Press.

  • 108 Properties of galactocerebroside layers transferred to glassy carbon electrodes. Effect of an applied electric field. Wilke, N. Baruzzi, A. M., Maggio, B., Pérez, M. A. and López Teijelo, M. (2005) Colloids & Surfaces B. 41: 223-231.

  • 109 Many length scales surface fractality in monomolecular films of whole myelin lipids and proteins. Oliveira, R.G., Tanaka, M. and Maggio, B. (2005) J. Struct. Biol. 149: 158-169.

  • 110 Na,K-ATPase reconstituted in liposomes: effects of lipid composition on hydrolytic activity and enzyme orientation. de Lima Santos, H. Maggio, B. and Ciancaglini, P. (2005) Colloids & Surfaces B. 41: 239-248.

  • 111 c-Jun interacts with phospholipids and c-Fos at the interface. Del Boca, M. Caputto, B.L., Maggio, B. and Borioli, G.A. J. Coll. Interf. Sci. (2005) In Press

  • 112 Effect of molecular surface packing on the enzymatic activity modulation of an anchored protein on phospholipid Langmuir monolayers. Caseli, L., Oliveira, R.G., Masui, D.C., Furriel, R.P.M., Leone, F.A., Maggio, B. and Zaniquelli M.E.D. (2005) Langmuir. In Press

  • Borioli GA, Caputto BL, Maggio B. (2001) c-Fos is surface active and interacts differentially with phospholipid monolayers Biochem Biophys Res Commun Jan 12;280(1):9-13.

  • Borioli, GA . , Laura Fanani, Beatriz Caputto and Bruno Maggio. (2002) Fos is a surface pressure-dependent diverter of phospholipase activity. Biochem Biophys Res Commun 295: 964-969.

  • Borioli GA , Caputto BL, Maggio B. (2004) Phospholipase activity is modulated by c-Fos through substrate expansion and hyperpolarization. FEBS Lett. 570 (1-3):82-86.

  • Borioli, GA., Caputto B.L., Maggio B. (2005) c-Fos and phosphatidylinositol –4,5-biphosphate reciprocally reorganize in mixed monolayers. Biochim. Biophys. Acta. 1668(1):41-52.

  • Del Boca M., Caputto B.L., Maggio B. Borioli G.A. (2005) c-Jun interacts with phospholipids and c-Fos at the interface. J. Coll. and Int. Sci. 287(1):80-84.

  • Maggio, B., Rosetti * C.M., Borioli. * G.A, Fanani M.L., Del Boca, M. (2005). Protein-mediated surface structuring in biointerfaces. Braz. J. Med. Biol. Res. Aceptado para su publicación en 2005. Los autores indicados (*) han contribuido principalmente y de manera similar a los experimentos más recientes realizados en este trabajo.