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E H Schacht

Showing results (1-10 of 15) with videos related to

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Medical Device Technology|December 10, 1989
Using biodegradable polymers in advanced drug delivery systemsE H Schacht
Biomaterials|January 1, 1992
Biodegradable polymers. II. Degradation characteristics of hydrolysis-sensitive poly[(organo)phosphazenes]J H Crommen, E H Schacht, E H Mense
Biomaterials|January 1, 1992
Biodegradable polymers. I. Synthesis of hydrolysis-sensitive poly[(organo)phosphazenes]J H Crommen, E H Schacht, E H Mense
The Journal of Pharmacy and Pharmacology|July 1, 1992
Di-iodo-L-tyrosine-labelled dextrans as molecular size markers of nasal absorption in the ratA N Fisher, L Illum, S S Davis, et al.
Analytical Chemistry|February 28, 2002
Flow-through cell for on-line amperometric determination of Ce(lV) during polymerization reactionsP Westbroek, Strycker J De, P Dubruel, et al.
Journal of Materials Science. Materials in Medicine|February 28, 2006
Osteoblast behaviour on in situ photopolymerizable three-dimensional scaffolds based on D, L-lactide, epsilon-caprolactone and trimethylene carbonateH A Declercq, M J Cornelissen, T L Gorskiy, et al.
Bioconjugate Chemistry|March 22, 2000
Poly(ethylene glycol) multiblock copolymer as a carrier of anti-cancer drug doxorubicinM Pechar, K Ulbrich, V Subr, et al.
Journal of Controlled Release : Official Journal of the Controlled Release Society|March 4, 2000
Poly-L-glutamic acid derivatives as vectors for gene therapyL Dekie, V Toncheva, P Dubruel, et al.
Anti-Cancer Drug Design|July 1, 1996
Polymeric prodrugs of mitomycin C designed for tumour tropism and sustained activationL W Seymour, H Soyez, A De Marre, et al.
Human Gene Therapy|November 10, 1996
Characterization of vectors for gene therapy formed by self-assembly of DNA with synthetic block co-polymersM A Wolfert, E H Schacht, V Toncheva, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Medical Device Technology|December 10, 1989
Using biodegradable polymers in advanced drug delivery systemsE H Schacht
Biomaterials|January 1, 1992
Biodegradable polymers. II. Degradation characteristics of hydrolysis-sensitive poly[(organo)phosphazenes]J H Crommen, E H Schacht, E H Mense
Biomaterials|January 1, 1992
Biodegradable polymers. I. Synthesis of hydrolysis-sensitive poly[(organo)phosphazenes]J H Crommen, E H Schacht, E H Mense
The Journal of Pharmacy and Pharmacology|July 1, 1992
Di-iodo-L-tyrosine-labelled dextrans as molecular size markers of nasal absorption in the ratA N Fisher, L Illum, S S Davis, et al.
Analytical Chemistry|February 28, 2002
Flow-through cell for on-line amperometric determination of Ce(lV) during polymerization reactionsP Westbroek, Strycker J De, P Dubruel, et al.
Journal of Materials Science. Materials in Medicine|February 28, 2006
Osteoblast behaviour on in situ photopolymerizable three-dimensional scaffolds based on D, L-lactide, epsilon-caprolactone and trimethylene carbonateH A Declercq, M J Cornelissen, T L Gorskiy, et al.
Bioconjugate Chemistry|March 22, 2000
Poly(ethylene glycol) multiblock copolymer as a carrier of anti-cancer drug doxorubicinM Pechar, K Ulbrich, V Subr, et al.
Journal of Controlled Release : Official Journal of the Controlled Release Society|March 4, 2000
Poly-L-glutamic acid derivatives as vectors for gene therapyL Dekie, V Toncheva, P Dubruel, et al.
Anti-Cancer Drug Design|July 1, 1996
Polymeric prodrugs of mitomycin C designed for tumour tropism and sustained activationL W Seymour, H Soyez, A De Marre, et al.
Human Gene Therapy|November 10, 1996
Characterization of vectors for gene therapy formed by self-assembly of DNA with synthetic block co-polymersM A Wolfert, E H Schacht, V Toncheva, et al.
Pageof 2