Patent classifications
A61L26/0061
Compacted hemostatic cellulosic aggregates
The present invention is directed to a hemostatic material comprising a compacted, hemostatic aggregates of cellulosic fibers. In some aspects, the hemostatic material further includes additives, such as carboxymethyl cellulose (CMC) or other polysaccharides, calcium salts, anti-infective agents, hemostasis promoting agents, gelatin, collagen, or combinations thereof. In another aspect, the present invention is directed to a method of making the hemostatic materials described above by compacting a cellulosic-based material into hemostatic aggregates. In another aspect, the present invention is directed to a method of treating a wound by applying hemostatic materials described above onto and/or into the wound of a patient.
WOUND MANAGEMENT SYSTEM AND METHODS OF USING
A wound management system can comprise a surgically acceptable adhesive disposed over a wound and a surgically acceptable film repositionably disposed over the surgically acceptable adhesive, and methods of managing a wound involving the same.
HAEMOSTATIC COMPOSITIONS
A sterile, ready-to-use, flowable haemostatic composition comprises a soluble haemostatic agent comprising a plurality of carriers and a plurality of fibrinogen binding peptides immobilised to the carrier; a biocompatible liquid; and particles of biocompatible cross-linked polysaccharide suitable for use in haemostasis and which are insoluble in the biocompatible liquid. Such compositions may be used for the control of bleeding, especially in surgical procedures.
REMOVABLE FILM FORMING GEL COMPOSITIONS AND METHODS FOR THEIR APPLICATION
Film forming gel compositions, useful in creating conformable and flexible gel bandages, can be formulate from a film-forming polymer, a tackifier, and a volatile solvent. The film forming gels can also include antiseptics, cationic polymer coagulants, fillers, and other additives. The gel compositions form relatively thick films when dried on tissue, and can exhibit enhanced breathability to promote wound healing.
NANOFIBER AND MICROFIBER HYBRID AEROGELS
Hybrid aerogels comprising nanofibers and microfibers are provided as well as methods of use thereof and methods of making.
POLYMER PARTICLES
Described are polymers and methods of forming and using same.
POLYMER PARTICLES
Biodegradable, cross-linked polymer particle embolics and methods of making the same are described. The particle embolics can be used as embolization agents.
Crosslinked peptide hydrogels
The present invention relates to hydrogels comprising a plurality of amphiphilic peptides and/or peptoids capable of self-assembling into three-dimensional macromolecular nanofibrous networks, which entrap water and form said hydrogels, wherein at least a portion of said plurality of amphiphilic peptides and/or peptoids is chemically cross-linked. The present invention further relates to methods for preparing such hydrogels and to various uses of such hydrogels, e.g. as cell culture substrates, for drug and gene delivery, as wound dressing, as an implant, as an injectable agent that gels in situ, in pharmaceutical or cosmetic compositions, in regenerative medicine, in tissue engineering and tissue regeneration, or in electronic devices. It also relates to a method of tissue regeneration or tissue replacement using a hydrogel in accordance with the present invention.
HEMOSTATIC PASTE WITH LIGHT-CURABLE FEATURE
A hemostatic paste comprising a hemostatic component; and a light-curable component.
Nanobandage solution with <i>Faidherbia albida </i>nanoparticles and natural and synthetic polymers
A nanobandage solution having Faidherbia albida nanoparticles, olibanum gum, and polyvinyl alcohol and methods of making the nanobandage solution and topically applying the nanobandage to a subject in need thereof are provided.