Abstract:
Cross-linked compositions include a first precursor functionalized with a first reactive member and a second precursor functionalized with a second reactive member, the first and second reactive members covalently bonding with each other when exposed to UV radiation. The compositions are useful in a variety of surgical and wound treatment applications.
Abstract:
The present invention relates to A bioresorbable implant comprising: a bioresorbable porous layer including a biopolymer foam and defining first pores, a bioresorbable porous three-dimensional mesh made from a microbial cellulose and defining second pores, wherein the bioresorbable porous layer is disposed in the bioresorbable porous three-dimensional mesh. The invention also relates to a method of making a bioresorbable implant.
Abstract:
The present invention relates to a composite implant comprising: a prosthetic fabric having a first side and a second side, a non-porous film of bacterial cellulose secured to the first side of the fabric. The invention further relates to a method of making such an implant.
Abstract:
Enzymatically degradable compositions containing biocompatible polymers reactive with glycosaminoglycan compositions having a first glycosaminoglycan compound having a first degree of acetylation and a second glycosaminoglycan compound having a second degree acetylation different than the first degree of acetylation.
Abstract:
Mono- and multi-layered implants include at least one porous layer made from a freeze dried aqueous solution containing chitosan, the solution having a pH of less than about 5.
Abstract:
Cross-linked compositions include a first precursor functionalized with a first reactive member and a second precursor functionalized with a second reactive member, the first and second reactive members covalently bonding with each other when exposed to UV radiation. The compositions are useful in a variety of surgical and wound treatment applications.
Abstract:
The present disclosure relates to an apparatus and process for forming medical devices from an injectable composition. The apparatus includes a supply assembly configured to maintain and selective dispense a first precursor and a second precursor, a mixing assembly configured to mix the first and second precursors, and at least one catalyzing element including a transition metal ion to aid in the polymerization of the first and second precursors. The process includes dispensing a volume of the first precursor and a volume of the second precursor into a mixing assembly and mixing the first and second precursors. The first and second precursors each possess a core and at least one functional group known to have click reactivity with each other. The mixed precursors are contacted with a transition metal catalyst to produce a flowable composition for use as a medical device.
Abstract:
The present disclosure relates to a method of forming a medical device comprising: forming a desired shape from a polymer possessing a core and at least one functional group known to have click reactivity, whereby a medical device with an activated surface is produced.
Abstract:
Implants include a porous layer made from a composition including a compound wherein collagen is cross-linked to a glycosaminoglycan, the porous layer being optionally joined to a collagen film.
Abstract:
The present invention relates to a medical device comprising: a reinforcing member; and bacterial cellulose on at least a portion of the reinforcing member. The invention also relates to a method for making such a medical device.