Biomedical Engineering Reference
In-Depth Information
performance of siloxane-polyurethane coatings prepared from poly(dimethylsiloxane)(PDMS)
macromers. Biofouling 26:961-972
39. Swain G, Schultz MP (1996) The testing and evaluation of non-toxic antifouling coatings.
Biofouling 10:187-197
40. Swain G, Anil A, Baier RE, Chia F, Conte E, Cook A, Hadfield M, Haslbeck E, Holm E et al
(2000) Biofouling and barnacle adhesion data for fouling-release coatings subjected to static
immersion at seven marine sites. Biofouling 16:331-344
41. Wendt DE, Kowalke GL, Kim J, Singer IL (2006) Factors that influence elastomeric coating
performance: the effect of coating thickness on basal plate morphology, growth and critical
removal stress of the barnacle Balanus amphitrite . Biofouling 22:1-9
42. Berglin M, Gatenholm P (2003) The barnacle adhesive plaque: morphological and chemical
differences as a response to substrate properties. Colloids Surf B 28:107-117
43. Wiegemann M, Watermann B (2003) Peculiarities of barnacle adhesive cured on non-stick
surfaces. J Adhesion Sci Technol 14:1957-1977
44. Ramsay DB, Dickinson GH, Orihuela B, Rittschof D, Wahl KJ (2008) Base plate mechanics of
the barnacle Balanus Amphitrite . Biofouling 24:109-118
45. Naldrett MJ (1993) The importance of sulphur cross-links and hydrophobic interactions in the
polymerization of barnacle cement. J Mar Bio Ass UK 73:689-702
46. Kamino K, Odo S, Maruyama T (1996) Cement proteins of the acorn barnacle, Megabalanus
rosa . Biol Bull 190:403-409
47. Kamino K, Nakano M, Kanai S (2012) Significance of the conformation of building blocks in
curing of barnacle underwater adhesive. FEBS J 279:1750-1760
48. Sullan RMA, Gunari N, Tanur AE, Chan Y, Dickinson GH, Orihuela B, Rittschoff D, Walker
GC (2009) Nanoscale structures and mechanics of barnacle cement. Biofouling 25:263-275
49. Barlow DE, Dickinson GH, Orihuela B, Kulp JL III, Rittschof D, Wahl KJ (2010) Characteri-
zation of the adhesive plaque of the barnacle Balanus amhpitrite: amyloid-like nanofibrils are a
major component. Langmuir 26:6549-6556
50. Raman S, Kumar R (2011) Interfacial morphology and nanomechanics of cement of the
barnacle, Amphibalanus reticulatus on metallic and non-metalic substrata. Biofouling
27:569-577
51. Kamino K, Inoue K, Maruyama T, Takamatsu N, Harayama S, Shizuri Y (2000) Barnacle
cement proteins:
importance of disulfide bonds in their
insolubility. J Biol Chem
275:27360-27365
52. Kamino K (2001) Novel barnacle underwater adhesive protein is a charged amino acid-rich
protein constituted by a Cys-rich repetitive sequence. Biochem J 356:503-507
53. Urushida Y, Nakano M, Matsuda S, Inoue N, Kanai S, Kitamura N, Nishino T, Kamino K
(2007) Identification and functional characterization of a novel barnacle cement protein. FEBS
J 274:4336-4346
54. Nakano M, Kamino K Amyloid-like structure in barnacle cement. Unpublished
55. Dickinson G, Vega IE, Wahl KJ, Orihuela B, Beyley V, Rodriguez EN, Everett RK,
Bonaventura J, Rittschof D (2009) Barnacle cement: a polymerization model based on
evolutionary concepts. J Exp Biol 212:3499-3510
56. Kamino K (2010) Absence of cross-linking via trans-glutaminase in the barnacle cement and
redefinition of the cement. Biofouling 26:755-760
57. Mori Y, Urushida Y, Nakano M, Uchiyama S, Kamino K (2007) Calcite-specific coupling
protein in barnacle underwater cement. FEBS J 274:6436-6446
58. Suzuki R, Mori Y, Kamino K, Yamazaki T (2006) 3D-structure of barnacle cement protein,
Mrcp-20k. Pept Sci 2005:257-258
59. Urushida Y, Mori Y, Sano K, Kotera M, Hirose Y, Kanai S, Inoue N, Shimoura Y, Shiba K,
Nishino T, Nakasuga A, Shen J-R, Kamino K Identification and characterization of a multi-
surface coupling protein in barnacle underwater cement. Unpublished
60. Jensen RA, Morse DE (1988) The bioadhesive of Phragmatopoma californica tubes: a silk-
like cement containing-DOPA. J Comp Physiol B 158:317-324
Search WWH ::




Custom Search