Biomedical Engineering Reference
In-Depth Information
technique: application to the isolation
and purification of trypsin from bovine
pancreas. Ann. N.Y. Acad. Sci. 369:
257-263.
Schneider, R. S., Lidquist, P., Wong,
E. T., Rubenstein, K. E., and Ullman, E.
F. (1973). Homogeneous enzyme
immunoassay for opiates in urine. Clin.
Chem. 19: 821-825.
Shimizu, T., Yamato, M., Kikuchi,
A., and Okano, T. (2003). Cell sheet
engineering for myocardial tissue
reconstruction. Biomaterials 24:
2309-2316.
Shimoboji, T., Ding, Z., Stayton, P. S., and
Hoffman, A. S. (2001). Mechanistic
investigation of smart polymer-protein
conjugates. Bioconj. Chem. 12:
314-319.
Shimoboji, T., Ding, Z. L., Stayton, P. S.,
and Hoffman, A. S. (2002a).
Photoswitching of ligand association
with a photoresponsive polymer-
protein conjugate. Bioconj. Chem. 13:
915-919.
Shimoboji, T., Larenas, E., Fowler, T.,
Kulkarni, S., Hoffman, A. S., and
Stayton, P. S. (2002b). Photoresponsive
polymer-enzyme switches. Proc. Natl.
Acad. Sci. USA 99: 16592-16596.
Shimoboji, T., Larenas, E., Fowler,
T., Hoffman, A. S., and Stayton, P. S.
(2003). Temperature-induced switching
of enzyme activity with smart polymer-
enzyme conjugates. Bioconj. Chem. 14:
517-525.
Shoemaker, S., Hoffman, A. S., and Priest,
J. H. (1987). Synthesis of vinyl
monomer-enzyme conjugates. Appl.
Biochem. Biotechnol. 15: 11.
Stayton, P. S., Hoffman, A. S., Murthy,
N., Lackey, C., Cheung, C., Tan, P.,
Klumb, L. A., Chilkoti, A., Wilbur, F. S.,
and Press, O. W. (2000). Molecular
engineering of proteins and polymers for
targeting and intracellular delivery of
therapeutics. J. Contr. Rel. 65:
203-220.
Stayton, P. S., Shimoboji, T., Long,
C., Chilkoti, A., Chen, G., Harris, J. M.,
and Hoffman, A. S. (1995). Control of
protein-ligand recognition using
a stimuli-responsive polymer. Nature
378: 472-474.
Takei, Y. G., Aoki, T., Sanui, K., Ogata,
N., Okano, T., and Sakurai, Y. (1993a).
Temperature-responsive bioconjugates.
1. Synthesis of temperature-responsive
oligomers with reactive end groups and
their coupling to biomolecules. Bioconj.
Chem. 4: 42-46.
Takei, Y. G., Aoki, T., Sanui, K., Ogata,
N., Okano, T., and Sakurai, Y. (1993b).
Temperature-responsive bioconjugates.
2. Molecular design for temperature-
modulated bioseparations. Bioconj.
Chem. 4: 341-346.
Takei, Y. G., Matsukata, M., Aoki,
T., Sanui, K., Ogata, N., Kikuchi,
A., Sakurai, Y., and Okano, T. (1994a).
Temperature-responsive bioconjugates.
3. Antibody-poly( N -isopropylacryla-
mide) conjugates for temperature-
modulated precipitations and affinity
bioseparations. Bioconj. Chem. 5:
577-582.
Takei, Y. G., Aoki, T., Sanui, K., Ogata,
N., Sakurai, Y., and Okano, T. (1994b).
Dynamic contact angle measurements
of temperature-responsive properties
for PNIPAAm grafted surfaces.
Macromolecules 27: 6163-6166.
Tanaka, T. (1981). Gels. Sci. Am. 244: 124.
Taniguchi, M., Kobayashi, M., and Fujii, M.
(1989). Properties of a reversible
soluble-insoluble cellulase and its
application to repeated hydrolysis of
crystalline cellulose. Biotechnol. Bioeng.
34: 1092-1097.
Taniguchi, M., Hoshino, K., Watanabe,
K., Sugai, K., and Fujii, M. (1992).
Production of soluble sugar from
cellulosic materials by repeated use of
a reversibly soluble-autoprecipitating
cellulase. Biotechnol. Bioeng. 39:
287-292.
Tirrell, D. (1987). Macromolecular
switches for bilayer membranes.
J. Contr. Rel. 6: 15-21.
Uenoyama, S., and Hoffman, A. S. (1988).
Synthesis and characterization of AAm/
NIPAAm grafts on silicone rubber
substrates. Radiat. Phys. Chem. 32:
605-608.
Vernon, B., Kim, S. W., and Bae, Y. H.
(2000). Thermoreversible copolymer
gels for extracellular matrix. J. Biomed.
Mater. Res. 51: 69-79.
Wu. X. S., Hoffman, A. S., and Yager, P.
(1992). Conjugation of
phosphatidylethanolamine to
poly(NIPAAm) for potential use in
liposomal drug delivery systems.
Polymer 33: 4659-4662.
Wu, X. S., Hoffman, A. S., and Yager, P.
(1993). Synthesis of and insulin release
from erodible polyNIPAAm-
phospholipid composites. J. Intell.
Mater. Syst. Struct. 4: 202-209.
Yamato, M., and Okano, T. (2001). Cell
sheet engineering for regenerative
medicine. Macromol. Chem. Symp.
14(2): 21-29.
Yamato, M., Kwon, O. H., Hirose,
M., Kikuchi, A., and Okano, T. (2001).
Novel patterned cell co-culture utilizing
thermally responsive grafted polymer
surfaces. J. Biomed. Mater. Res. 55:
137-140.
Yang, H. J., Cole, C. A., Monji, N., and
Hoffman, A. S. (1990). Preparation of
a thermally phase-separating copolymer
with a controlled number of active ester
groups per polymer chain. J. Polymer
Sci. A., Polymer Chem. 28: 219-226.
Yoshida, R., Uchida, K., Kaneko, Y., Sakai,
K., Kikuchi, A., Sakurai, Y., and Okano,
T. (1995). Comb-type grafted hydrogels
with rapid de-swelling response to
temperature changes. Nature 374:
240-242.
Yoshida, T., Aoyagi, T., Kokufuta, E., and
Okano, T. (2003). Newly designed
hydrogel with both sensitive
thermoresponse and biodegradability.
J. Polymer Sci. A: Polymer Chem. 41:
779-787.
Zareie, H. M., Bulmus, V., Gunning, P. A.,
Hoffman, A. S., Piskin, E., and Morris,
V. J. (2000). Investigation of a pH- and
temperature-sensitive polymer by
AFM. Polymer 41: 6723-6727.
Zhong, Z., Dijkstra, P. J., Feijen, J., Kwon,
Y.-Mi., Bae, Y. H., and Kim, S. W.
(2002). Synthesis and aqueous phase
behavior of thermoresponsive
biodegradable poly( D , L -3-methyl
glycolide)-b-poly(ethylene glycol)-b-
poly( D , L -3-methyl glycolide) triblock
copolymers. Macromol. Chem. Phys.
203: 1797-1803.
Search WWH ::




Custom Search