Patent classifications
A61L27/02
Medical Implants And Methods Of Manufacture
Anti-biofilm osseointegrating and/or tissue-integrating implantable biomaterial devices that optionally can elute therapeutic ions such as magnesium, silver, copper and/or zinc. In certain embodiments, the devices are engineered to produce structures suitable as implants having a relatively high surface population of zeolite. Methods of producing the devices are also disclosed.
METHODS AND FORMULATIONS FOR TRANSDERMAL ADMINISTRATION OF DERMAL CONTOURING AGENTS
Disclosed herein is a pre-treatment and/or treatment formulation for transdermal delivery of a dermal pre-treatment agent and/or one or more dermal contouring agents through the skin of a subject, wherein the pre-treatment formulation comprises: a) a buffering agent comprising at least one carbonate salt, lysine, tris, a phosphate buffer and/or 2-imidazole-1-yl-3-ethoxycarbonylpropionic acid (IEPA), or a combination thereof in an amount between about 0.05-60% w/w; and b) a pre-treatment penetrant portion in an amount between about 40 to 99.95% w/w, and wherein the treatment formulation comprises: a) one or more acylating agents in an amount between about 0.25-25% w/w; and b) a treatment penetrant portion in an amount between about 40 to 75% w/w and methods for transdermal delivery of the pretreatment and/or treatment formulation through the skin of a subject.
Synergistic antibacterial activity of medium polarity oils in combination with antibacterial agents on bacterial biofilms
The compositions of the present invention comprise at least one medium polarity oil and at least one antibacterial agent, the combination of which produces a synergistic antibacterial effect against bacterial biofilms. Methods are disclosed for the reduction of bacteria in and/or elimination of bacterial biofilms on biological and non-biological surfaces, as well as methods for the treatment of wounds, skin lesions, mucous membrane lesions, and other biological surfaces infected or contaminated with bacterial biofilms.
SYNERGISTIC ANTIBACTERIAL ACTIVITY OF MEDIUM POLARITY OILS IN COMBINATION WITH ANTIBACTERIAL AGENTS ON BACTERIAL BIOFILMS
The compositions of the present invention comprise at least one medium polarity oil and at least one antibacterial agent, the combination of which produces a synergistic antibacterial effect against bacterial biofilms. Methods are disclosed for the reduction of bacteria in and/or elimination of bacterial biofilms on biological and non-biological surfaces, as well as methods for the treatment of wounds, skin lesions, mucous membrane lesions, and other biological surfaces infected or contaminated with bacterial biofilms.
Bijels And Methods Of Making The Same
A method of making a bijel includes dispersing surface-active nanoparticles in a ternary liquid mixture. The ternary liquid mixture includes a hydrophilic liquid, a hydrophobic liquid, and a solvent. The ternary liquid mixture is contacted with water. A bijel includes a stable mixture of two immiscible liquids separated by an interfacial layer of colloidal particles. The bijel has temperature-independent stability, and the domain sizes are below one micrometer.
HYDROGELS AND METHOD OF MAKING THE SAME
The present disclosure relates to hydrogels and their use for repairing or supplementing body tissue. The hydrogels are capable of safe injection into patients through fine gauge needles and are suitable for repairing, supplementing, or replacing the nucleus pulposus of an intervertebral disc. Methods of manufacturing and methods of using the hydrogels of the present disclosure to repair or replace tissues are also disclosed.
Scaffolds for neural tissue and uses thereof
The present invention provides tissue scaffolds, methods of generating such scaffolds, and methods of use of such scaffolds to generate aligned and functional neural tissues for use in methods including regenerative medicine, wound repair and transplantation.
Scaffolds for neural tissue and uses thereof
The present invention provides tissue scaffolds, methods of generating such scaffolds, and methods of use of such scaffolds to generate aligned and functional neural tissues for use in methods including regenerative medicine, wound repair and transplantation.
Improved Bone Implant Matrix Comprising Proline-Rich Peptide And Method Of Preparing The Same
The present invention deals with a bone implant matrix comprising a base matrix selected from the group comprising: —acellularized or acellularized non-demineralised bone matrix of any source, —matrix of natural mineral sources, —synthetic bioceramics matrix, or combinations of the above, wherein the surface of said base matrix is coated with an statistically homo-geneous composition which is a reinforcing mixture containing at least a bio-degradable polyester or co-polymer thereof, at least a gelatine or hydrolysed gelatine and at least an artificial Proline-Rich Peptide.
IMPLANT MATERIAL CONTAINING SURFACE-TREATED AROMATIC POLYETHER KETONE AND MANUFACTURING METHOD THEREFOR
The present invention addresses the problem of providing, by a method in which an expensive manufacturing apparatus is not required, an implant material having osteoconductivity superior to that of an implant material containing an aromatic polyether ketone. The present invention pertains to: said method including immersing an aromatic polyether ketone in a strong base solution in the absence of a calcium ion, and immersing an aromatic polyether ketone, which is obtained by the immersing, in a liquid containing a phosphorus-containing compound; and an implant material obtained by said method.