Abstract:
In some aspects of the present invention, coatings are provided which provide lubricity as well as additional functionality. Further aspects of the invention pertain to medical devices having such coatings and methods of forming such coatings.
Abstract:
In one embodiment, an implant includes a body member, a first arm member and a second arm member. The body member is formed of a first material and has a first side portion and a second side portion. The body member has a first stiffness and includes multiple apertures through the body member. The first arm member is formed of a second material and is coupled to and extends from the body member. The second arm member is formed of the second material and is coupled to and extends from the body member. The first arm member and the second arm member have a second stiffness, the second stiffness being more than the first stiffness.
Abstract:
Methods of treating tissue of a patient, e.g., tissue of an organ such that the bladder, are described. The methods may comprise inserting a medical device within the bladder; and injecting a composition to separate a first layer of tissue from a second layer of tissue. The composition may comprise at least one polysaccharide compound having a concentration ranging from approximately 0.05% to approximately 25% by weight, with respect to the total weight of the composition. The composition may at least partially separate the first layer of tissue from the second layer of tissue. At least one of the first layer of tissue or the second layer of tissue may be a detrusor muscle tissue.
Abstract:
A lubricious coating for use on an implantable medical device includes a heterochelic component, a homotelechelic polymer and biocompatible initiator. Methods of forming such lubricious coatings are also provided.
Abstract:
In one embodiment, an implant includes a body member, a first arm member and a second arm member. The body member is formed of a first material and has a first side portion and a second side portion. The body member has a first stiffness and includes multiple apertures through the body member. The first arm member is formed of a second material and is coupled to and extends from the body member. The second arm member is formed of the second material and is coupled to and extends from the body member. The first arm member and the second arm member have a second stiffness, the second stiffness being more than the first stiffness.
Abstract:
According to some aspects, the present disclosure pertains to methods of forming dimethyl 5-tert-butylisophthalate which comprise comprising converting 5-tert-butylisophthalic acid into dimethyl 5-tert-butylisophthalate in synthesis procedures that comprises methanol and a dehydrating agent as chemical reagents. In other aspects, the present disclosure pertains to methods of forming 5-tert-butyl-1,3-bis(1-methoxy-1-methylethyl)benzene that comprise deprotonating 5-tert-butyl-1,3-bis(1-hydroxy-1-methylethyl)benzene with a Brønsted-Lowry superbase and methylating the deprotonated 5-tert-butyl-1,3-bis(1-hydroxy-1-methylethyl)benzene to form the 5-tert-butyl-1,3-bis(1-methoxy-1-methylethyl)benzene.