EP4553545A2

Method for producing silicon hydrogel contact lenses with crosslinked hydrophilic coatings thereon

Abstract

A cost-effective method for making a silicone hydrogel contact lens has a crosslinked hydrophilic coating applied thereon. The method involves heating a silicone hydrogel contact lens in an aqueous solution in the presence of a water-soluble, highly branched, thermally- crosslinkable hydrophilic polymeric material having positively-charged azetidinium groups, and at a temperature from 40 Centigrade to 140 Centigrade for a period of time sufficient to covalently attach the thermally-crosslinkable hydrophilic polymeric material onto the surface of the silicone hydrogel contact lens through covalent linkages each formed between one azetidinium group and one of the reactive functional groups on and/or near the surface of the silicone hydrogel contact lens, thereby forming a crosslinked hydrophilic coating on the silicone hydrogel contact lens. Such method can be advantageously implemented directly in a sealed lens package during autoclave.

EP4553545A2, drawing sheet 1
Sheet 1 of 12

Term

4.8 yearsto projected expiry

Projected expiry 29 July 2031, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

17 claims: 4 independent, 13 dependent

  1. 1
    A readily-usable silicone hydrogel contact lens, comprising:a silicone hydrogel contact lens;and a crosslinked hydrophilic coating thereon, wherein the crosslinked hydrophilic coating comprises a crosslinked hydrophilic polymeric material of a water-soluble thermally-crosslinkable hydrophilic polymeric material which comprises (i) from 20% to 95%, preferably from 35% to 90%, more preferably from 50% to 85%, by weight of first polymer chains derived from an epichlorohydrin-functionalized polyamine or polyamidoamine, (ii) from 5% to 80%, preferably from 10% to 65%, even more preferably from 15% to 50%, by weight of hydrophilic moieties or second polymer chains of at least one hydrophilicity-enhancing agent, and (iii) azetidinium groups which are covalently attached to the first polymer chains, wherein the hydrophilicity-enhancing agent has at least one reactive functional group selected from the group consisting of amino group, carboxyl group, thiol group, and combination thereof, wherein the hydrophilic moieties or second polymer chains are covalently attached to the first polymer chains through one or more covalent linkages each formed between one azetitdinium group of the epichlorohydrin-functionalized polyamine or polyamidoamine and one amino, carboxyl or thiol group of the hydrophilicity-enhancing agent, wherein the crosslinked hydrophilic coating is covalently attached onto the silicone hydrogel contact lens through covalent linkages each formed between one amino or carboxyl group on and/or near the surface of the silicone hydrogel contact lens and one azetidinium group of the water-soluble thermally-crosslinkable hydrophilic polymeric material, wherein the readily-usable silicone hydrogel contact lens has an averaged water contact angle of 90 degrees or less, preferably 80 degrees or less, more preferably 70 degrees or less, even more preferably 60 degrees or less.
  2. 11
    The readily-usable silicone hydrogel contact lens of any one of claims 2 to 10, wherein the weight average molecular weight M w of the hydrophilic polymer as the hydrophilicity-enhancing agent is from 500 to 1,000,000, preferably from 1,000 to 500,000.
  3. 13
    The readily-usable silicone hydrogel contact lens of any one of claims 1 to 12, wherein the silicone hydrogel contact lens comprises a reactive base coating including amino or carboxyl groups.
  4. 17
    The readily-usable silicone hydrogel contact lens of any one of claims 1 to 16, wherein the readily usable silicone hydrogel contact lens has at least one property selected from the group consisting of:an oxygen permeability of at least 40 barrers, preferably at least 50 barrers, more preferably at least 60 barrers, even more preferably at least 70 barrers;an elastic modulus of 1.5 MPa or less, preferably 1.2 MPa or less, more preferably 1.0 or less, even more preferably from 0.3 MPa to 1.0 MPa;a water content of preferably from 18% to 70%, more preferably from 20% to 60% by weight when fully hydrated;and combinations thereof.