Highly lubricious hydrophilic coating utilizing dendrimers
The highly lubricious hydrophilic coating for a medical device comprises a mixture of colloidal aliphatic polyurethane, an aqueous dilution of PVP and specific dendrimers to enhance the physical integrity of the coating, to improve adhesion and to covalently bind or load one of a certain antithrombolitic drug or a certain antibiotic drug or other agent within the dendrimer structure.
1 . A catheter having an outer surface and said outer surface having an highly lubricious hydrophilic coating comprising: a mixture of colloidal aliphatic polyurethane, an aqueous dilution of PVP and dendrimers selected from the group consisting of: poly(amidoamine dendrimers, poly(propylene imine) dendrimers, polyether dendrimers, Phenlyacetylene dendrimers, chiral dendrimers, and tecto dendrimers, to enhance the physical integrity of the coating, to improve adhesion and to covalently bind or load an antibiotic drug or anti-thrombolytic drug selected from: tissue plasminogen activator; alteplase, recombinant; anistreplase; reteplase, recombinant; streptokinase; or urokinase within the dendrimer structure.
2 - 4 . (canceled)
5 . The catheter of claim 1 wherein said coating comprises a colloidal dispersion of an aliphatic polyurethane polymer in a solvent mixture including:
an aliphatic polyurethane polymer;
purified water;
N-methyl-2 pyrrolidone;
dendrimers;
poly (1-vinylpyrrolidone-co-2-diamethylamino ethyl methacrylate)-PVP triethylamine; and,
said antibiotic drug or anti-thrombolytic drug
6 - 9 . (canceled)
10 . A method for applying the coating of claim 1 to the catheter comprising the step of dipping the catheter into a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
11 . A method for applying the coating of claim 1 to the catheter comprising the step of airless spraying of the catheter with a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
12 . A method for applying the coating of claim 1 to the catheter comprising the step of dipping the catheter into a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
13 . The method of claim 12 further including the step of flushing a lumen of the catheter with nitrogen during the dipping process to prevent the solution from entering the catheter's lumen.
14 . A catheter coated, in a first zone where the catheter contacts blood, with a first hydrophilic coating containing an eluting anti-thrombolytic drug, and coated, in a second zone, where the catheter comes in contact with tissue, with a second hydrophilic coating containing an eluting antibiotic drug.
15 . The catheter of claim 14 wherein each hydrophilic coating comprises a mixture of colloidal aliphatic polyurethane, an aqueous dilution of PVP and dendrimers to enhance the physical integrity of the coating, to improve adhesion and to covalently bind or load with one of the anti-thrombolytic drug or the antibiotic drug.
16 . (canceled)
17 . A guidewire having an outer surface and said outer surface having an highly lubricious hydrophilic coating comprising: a mixture of colloidal aliphatic polyurethane, an aqueous dilution of PVP and dendrimers selected from the group consisting of: poly(amidoamine dendrimers, poly(propylene imine) dendrimers, polyether_dendrimers, phenlyacetylene dendrimers, chiral dendrimers, and tecto dendrimers, to enhance the physical integrity of the coating, to improve adhesion and to covalently bind or load an antibiotic drug or anti-thrombolytic drug selected from: tissue plasminogen activator: alteplase, recombinant; anistreplase; reteplase, recombinant; streptokinase; or urokinase within the dendrimer structure.
18 . The guidewire of claim 17 wherein said coating comprises a colloidal dispersion of an aliphatic polyurethane polymer in a solvent mixture including:
an aliphatic polyurethane polymer;
purified water;
N-methyl-2 pyrrolidone;
dendrimers;
poly (1-vinyl pyrrolidone-co-2-diamethylamino ethyl methacrylate)-PVP triethylamine; and,
said antibiotic drug or anti-thrombolytic drug.
19 . A method for applying the coating of claim 17 to a guidewire comprising the step of dipping the guidewire into a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
20 . A method for applying the coating of claim 17 to the guidewire comprising the step of airless spraying of the guidewire with a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
21 . A method for applying the coating of claim 18 to the guidewire comprising the step of dipping the guidewire into a solution containing the mixture of colloidal aliphatic polyurethane, the aqueous dilution of PVP and the dendrimers.
23 . A guidwire coated, in a first zone where the guidewire contacts blood, with a first hydrophilic coating containing one of an eluting anti-thrombolytic drug, and coated, in a second zone, where the guidewire comes in contact with tissue, with a second hydrophilic coating containing an eluting antibiotic drug.
24 . The guidewire of claim 23 wherein each hydrophilic coating comprises a mixture of colloidal aliphatic polyurethane, an aqueous dilution of PVP and dendrimers to enhance the physical integrity of the coating, to improve adhesion and to covalently bind or load with one of the anti-thrombolytic drug or the antibiotic drug.