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Browse by: INVENTOR PATENT HOLDER PATENT NUMBER DATE
 
 
Inventor:
Philbrook; C. Michael
Address:
Boston, MA
No. of patents:
9
Patents:












Patent Number Title Of Patent Date Issued
7250177 Multiblock biodegradable hydrogels for drug delivery and tissue treatment July 31, 2007
Gel-forming macromers including at least four polymeric blocks, at least two of which are hydrophobic and at least one of which is hydrophilic, and including a crosslinkable group are provided. The macromers can be covalently crosslinked to form a gel on a tissue surface in vivo. The
7074424 Polyalkylene glycol viscosity-enhancing polymeric formulations July 11, 2006
Hyaluronic acid and polyalkylene glycol (PAG) based materials have been found to exhibit a synergistic interaction, in which the viscosity of the mixture is more than twice as high as the viscosity expected from the viscosity of the individual components. The mixture otherwise has simila
7022343 Controlled release of anti-arrhythmic agents April 4, 2006
Methods for the simple, reliable application and local controlled release of selected anti-arrhythmia drugs from a hydrogel applied to or polymerized on the tissues of the heart or its vessels, especially in conjunction with cardiac bypass or other cardiac surgery, have been develope
6923986 Multiblock biodegradable hydrogels for drug delivery and tissue treatment August 2, 2005
Gel-forming macromers including at least four polymeric blocks, at least two of which are hydrophobic and at least one of which is hydrophilic, and including a crosslinkable group are provided. The macromers can be covalently crosslinked to form a gel on a tissue surface in vivo. The gel
6639014 Multiblock biodegradable hydrogels for drug delivery and tissue treatment October 28, 2003
Gel-forming macromers including at least four polymeric blocks, at least two of which are hydrophobic and at least one of which is hydrophilic, and including a crosslinkable group are provided. The macromers can be covalently crosslinked to form a gel on a tissue surface in vivo. The gel
6410645 Multiblock biodegradable hydrogels for drug delivery and tissue treatment June 25, 2002
Gel-forming macromers including at least four polymeric blocks, at least two of which are hydrophobic and at least one of which is hydrophilic, and including a crosslinkable group are provided. The macromers can be covalently crosslinked to form a gel on a tissue surface in vivo. The gel
6201065 Multiblock biodegradable hydrogels for drug delivery and tissue treatment March 13, 2001
Gel-forming macromers including at least four polymeric blocks, at least two of which are hydrophobic and at least one of which is hydrophilic, and including a crosslinkable group are provided. The macromers can be covalently crosslinked to form a gel on a tissue surface in vivo. The gel
6162241 Hemostatic tissue sealants December 19, 2000
A method of controlling hemostasis by applying a hemostatic agent in a tissue sealant composition. The tissue sealant is a biodegradable, biocompatible synthetic polymer that may not intrinsically possess strong hemostatic properties. Inclusion of a hemostatic material in the tissue
5520923 Formulations for delivery of osteogenic proteins May 28, 1996
A formulation is disclosed comprising a pharmaceutically acceptable admixture of an osteogenic protein and a sponge of porous particulate polymer matrix. The sponge may be prepared by treating the porous particulate polymer matrix with a suitable fusing material such as ethanol and a










 
 
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