Biomedical Engineering Reference
In-Depth Information
Gold, E. W. (1980). An interaction of albumin
with hyaluronic acid and chondroitin sulfate: A
study of affinity chromatography and circular di-
chroism. Biopolymers 19 , 1407-1414.
Gold, E. W. (1982). Purification and properties
of hyaluronidase from human liver. Biochemical
Journal 205 , 69-74.
Gribbon, P., Heng, B. C., and Hardingham, T.
E. (1999). The molecular basis of the solution
properties of hyaluronan investigated by confo-
cal fluorescence recovery after photobleaching.
Biophysical Journal 77 , 2210-2216.
Grymonpré, K. R., Staggemeier, A. B., Dubin,
P. L., and Mattison, F. W. (2001). Identification
by integrated computer modelingand light scat-
tering studies of an electrostatic serum albumin-
hyaluronic acid binding site. Biomacromolecules
2 , 422-429.
Hardingham, T. E. and Muir, H. (1972). The spe-
cific interaction of hyaluronic acid with cartilage
proteoglycans. Biochimica Biophysica Acta 279 ,
401-405.
Hascall, V. C. and Heinegard, D. (1974). Aggre-
gation of cartilage proteoglycans: I. The role of
hyaluronic acid. Journal of Biological Chemistry
249 , 4232-4241.
Hautmann, S. H., Lokeshwar, V. B., Schroeder,
G. L., Civantos, F., Duncan, R. C., Gnann R.,
Friedrich, M. G., and Soloway, M. S. (2001). El-
evated tissue expression of hyaluronic acid and
hyaluronidase validates the HA-HAase urine
test for bladder cancer. Journal of Urology 165 ,
2068-2074.
Hofinger, E. S. A., Hoechstetter, J., Oettl, M.,
Bernhardt, G., and Buschauer, A. (2008). Isoen-
zyme-specific differences in the degradation of
hyaluronic acid by mammalian-type hyaluroni-
dases. Glycoconjugates Journal 25 , 101-109.
Hogde-Dufour, J., Noble, P. W., Horton, M. R.,
Bao, C., Wysoka, M., Burdick, M. D., Strieter, R.
M., Trinchieri, G., and Pure, E. (1997). Induction
of IL-12 and chemokines by hyaluronan requires
adhesion-dependent priming of resident but not
elicited macrophages. Journal of Immunology
159 , 2492-2500.
Hoon Han, J. and Lee, C. H. (1997). Determin-
ing isoelectric points of model proteins and
Bacillus subtilis neutral protease by the cross
partitioning using poly(ethylene glycol)/dextran
aqueous two-phase systems. Colloid Surface B:
Biointerfaces 9 , 131-137.
Isoyama, T., Thwaites, D., Selzer, M. G., Carrey,
R. I., Barbucci, R., and Lokeshwar, V. B. (2006).
Differential selectivity of hyaluronidase inhibi-
tors towards acidic and basic hyaluronidases.
Glycobiology 16 , 11-21.
Jedrzejas, M. J. and Stern, R. (2005). Structures
of vertebrate hyaluronidases and their unique en-
zymatic mechanism of hydrolysis. Proteins 61 ,
227-238.
Knudson, C. B. and Knudson, W. (1993). Hy-
aluronan-binding proteins in development, tis-
sue homeostasis and disease. FASEB Journal 7 ,
1233-1241.
Kovar, J. L., Johnson, M. A., Volcheck, W. M.,
Chen, J., and Simpson, M. A. (2006). Hyaluroni-
dase expression induces prostate tumor metas-
tasis in an orthotopic mouse model. American
Journal of Pathology 69 , 1415-1426.
Lapčik, L. Jr., Lapčik, L., De Smedt, S., Demees-
ter, J., and Chabreček, P. (1998). Hyaluronan:
preparation, structure, properties, and applica-
tions. Chemical Review 98 , 2663-2684.
Laurent, T. C. (1970). Structure of hyaluronic
acid. In Chemistry and Molecular Biology of In-
tercellular Matrix . E. A. Balazs (Ed.). Academic
Press, London, pp. 703-732.
Laurent, T. C. (1987). Biochemistry of hyaluro-
nan. Acta Otolaryngologica Supplement (Stock-
holm) 442 , 7-24.
Laurent, T. C. and Fraser, J. R. E. (1986). The
properties and turnover of hyaluronan. In Func-
tions of the Proteoglycans . D. Evered, J. Whelan
(Eds.). Ciba Foundation Symposium, Wiley,
Chichester, vol. 124, pp. 9-29.
Laurent, T. C. and Fraser, J. R. E. (1992). Hyal-
uronan. FASEB Journal 6 , 2397-2404.
Laurent, T. C. and Ogston, A. G. (1963). The
interaction between polysaccharides and other
macromolecules. 4. The osmotic pressure of
mixtures of serum albumin and hyaluronic acid.
Biochemical Journal 89 , 249-253.
Lenormand, H., Deschrevel, B., Vincent, J. C.
(2008). Electrostatic interactions between hyal-
uronan and proteins at pH 4: how do they modu-
late hyaluronidase activity. Biopolymers 89 ,
1088-1103.
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