GLYCOPHOSPHOLIPID POLYMERIC NETWORK AND USE THEREOF
A biomedical device having a coating on a surface thereof, where the coating includes a glycophospholipid polymer which is a reaction product of one or more glycosaminoglycans and one or more phospholipids.
1 . A method of preparing a package comprising a storable, sterile ophthalmic device, the method comprising:
(a) immersing an ophthalmic device in an aqueous packaging solution comprising a glycophospholipid polymer comprising a reaction product of one or more glycosaminoglycans and one or more phospholipids, wherein the aqueous packaging solution has an osmolality of at least about 200 mOsm/kg and a pH in a range of about 6 to about 9;
(b) packaging the aqueous packaging solution and the ophthalmic device in a manner preventing contamination of the ophthalmic device by microorganisms; and
(c) sterilizing the packaged solution and the ophthalmic device.
2 . The method according to claim 1 , wherein the one or more glycosaminoglycans are selected from the group consisting of chondroitin, chondroitin sulfate, dermatan, dermatan sulfate, heparin, heparan sulfate, hyaluronan, and hyaluronic acid or a salt thereof.
3 . The method according to claim 1 , wherein the one or more phospholipids are selected from the group consisting of phosphorylcholine-containing phospholipid, a phosphorylhistidine-containing phospholipid, a phosphorylproline-containing phospholipid, a phosphorylserine-containing phospholipid, α-phosphatidylcholine, α-phosphatidylethanolamine, α-phosphatidyl-L-serine, α-phosphatidylinositol, α-phosphatidic acid, α-phosphatidyl-DL-glycerol, α-lysophosphatidylcholine, sphingomyelin, and cardiolipin.
4 . The method according to claim 1 , wherein the one or more glycosaminoglycans are hyaluronic acid or a salt thereof and the one or more phospholipids comprise a phosphorylhistidine-containing phospholipid.
5 . The method according to claim 1 , wherein the one or more glycosaminoglycans are hyaluronic acid or a salt thereof and the one or more phospholipids comprise a phosphorylcholine-containing phospholipid.
6 . The method according to claim 1 , wherein the one or more phospholipids are a phosphorylcholine-containing phospholipid comprising a zwitterionic group represented by the following structure:
wherein n is an integer of 1 to 5 and R′, R″ and R′″ independently of each other are a C 1 to C 8 alkyl group, a C 1 to C 8 hydroxyalkyl group or a hetero atom-containing group.
7 . The method according to claim 1 , wherein the one or more glycosaminoglycans are hyaluronic acid or a salt thereof and the one or more phospholipids comprise a phosphorylcholine-containing phospholipid comprising a zwitterionic group represented by the following structure:
wherein n is an integer of 1 to 5 and R′, R″ and R′″ independently of each other are a C 1 to C 8 alkyl group, a C 1 to C 8 hydroxyalkyl group or a hetero atom-containing group.
8 . The method according to claim 1 , wherein the reaction product of the one or more glycosaminoglycans and the one or more phospholipids further comprises one or more first crosslinking agents comprising a bi- or polyfunctional crosslinking agent comprising two or more functional groups capable of reacting with functional groups of the one or more glycosaminoglycans and the one or more phospholipids.
9 . The method according to claim 8 , wherein the reaction product comprises the one or more glycosaminoglycans having one or more reactive functionality groups, one or more phospholipids having one or more reactive functionality groups and one or more first crosslinking agents, wherein the one or more first crosslinking agents comprise a bi- or polyfunctional crosslinking agent comprising two or more functional groups that are complementary to the one or more reactive functionality groups of the one or more glycosaminoglycans and the one or more phospholipids; wherein a bond between at least one of the two or more functional groups of the bi- or polyfunctional crosslinking agent and at least one of the one or more reactive functionality groups of the one or more glycosaminoglycans is an ether bond.
10 . The method according to claim 9 , wherein one of the two or more functional groups of the bi- or polyfunctional crosslinking agent is an epoxide functional group and a bond between the epoxide functional group of the bi- or polyfunctional crosslinking agent and at least one of the one or more reactive functionality groups of the one or more glycosaminoglycans is an ether bond.
11 . The method according to claim 10 , wherein the epoxide functional group is a glycidyl ether functional group.
12 . The method according to claim 8 , wherein one or more additional glycosaminoglycans are crosslinked with the reaction product with one or more second crosslinking agents.
13 . The method according to claim 1 , wherein the glycophospholipid polymer is present in the aqueous packaging solution from about 0.01% w/w to about 20% w/w.
14 . The method according to claim 1 , wherein the glycophospholipid polymer is present in the aqueous packaging solution from about 0.02% w/w to about 0.1% w/w.
15 . The method according to claim 1 , wherein the ophthalmic device is a contact lens.
16 . The method according to claim 1 , wherein the ophthalmic device is an intraocular lens.
17 . The method according to claim 1 , wherein the ophthalmic device is a silicone hydrogel.
18 . The method according to claim 1 , wherein the ophthalmic device is a contact lens which is a polymerization product of a monomeric mixture comprising one or more hydrophilic monomers.
19 . The method according to claim 18 , wherein the monomeric mixture further comprises one or more silicone-containing monomers.
20 . The method according to claim 1 , wherein the sterilizing the packaged solution and the ophthalmic device comprises autoclaving the packaged solution and the ophthalmic device.