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US Patent 7553923 Medical devices and applications of polyhydroxyalkanoate polymers

Patent 7553923 was granted and assigned to Metabolix on June, 2009 by the United States Patent and Trademark Office.

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Patent
Patent

Patent attributes

Current Assignee
Metabolix
Metabolix
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
7553923
Date of Patent
June 30, 2009
Patent Application Number
11925635
Date Filed
October 26, 2007
Patent Citations Received
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US Patent 11833274 Oleophilic lubricated catheters
0
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US Patent 11998349 Devices, systems and methods for monitoring hip replacements
0
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US Patent 11944709 Self-retaining sutures of poly-4-hydroxybutyrate and copolymers thereof
0
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US Patent 12133790 Negative pressure wound closure device
0
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US Patent 12090264 Apparatuses and methods for wound therapy
0
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US Patent 11779273 Implantable reporting processor for an alert implant
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US Patent 11786126 Devices, systems and methods for using and monitoring medical devices
Patent Primary Examiner
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Terressa M. Boykin
Patent abstract

Devices formed of or including biocompatible polyhydroxyalkanoates are provided with controlled degradation rates, preferably less than one year under physiological conditions. Preferred devices include sutures, suture fasteners, meniscus repair devices, rivets, tacks, staples, screws (including interference screws), bone plates and bone plating systems, surgical mesh, repair patches, slings, cardiovascular patches, orthopedic pins (including bone filling augmentation material), adhesion barriers, stents, guided tissue repair/regeneration devices, articular cartilage repair devices, nerve guides, tendon repair devices, atrial septal defect repair devices, pericardial patches, bulking and filling agents, vein valves, bone marrow scaffolds, meniscus regeneration devices, ligament and tendon grafts, ocular cell implants, spinal fusion cages, skin substitutes, dural substitutes, bone graft substitutes, bone dowels, wound dressings, and hemostats. The polyhydroxyalkanoates can contain additives, be formed of mixtures of monomers or include pendant groups or modifications in their backbones, or can be chemically modified, all to alter the degradation rates. The polyhydroxyalkanoate compositions also provide favorable mechanical properties, biocompatibility, and degradation times within desirable time frames under physiological conditions.

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