IP Library Granted Patent US 7,005,494
Granted Patent B2
US 7,005,494 · App. 10/692,387 · Granted Feb 28, 2006

High refractive index aromatic-based siloxane monofunctional macromonomers

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Quick Facts
Patent No.
US 7,005,494
App. No.
10/692,387
Granted
Feb 28, 2006
Kind
B2
Abstract

Optically transparent, relatively high refractive index polymeric compositions and ophthalmic devices such as intraocular lenses, corneal inlays and contact lenses made therefrom are described herein. The preferred polymeric compositions are produced through the polymerization of one or more aromatic-based siloxane macromonomers or the copolymerization of one or more aromatic-based siloxane macromonomers with one or more non-siloxy aromatic-based monomers, non-aromatic-based hydrophobic monomers or non-aromatic-based hydrophilic monomers.

Claims (71)

1. A method of producing ophthalmic devices from polymeric compositions produced through a polymerization of one or more macromonomers, said method comprising:

casting one or more polymeric compositions in the form of a rod;

lathing or machining said rod into disks; and

lathing or machining said disks into ophthalmic devices;

wherein said one or more macromonomers have a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number.

2. A method of producing ophthalmic devices from polymeric compositions produced through a polymerization of one or more macromonomers, said method comprising:

pouring one or more polymeric compositions into a mold prior to curing;

curing said one or more polymeric compositions; and

removing said one or more polymeric compositions from said mold following curing thereof;

wherein said one or more macromonomers have a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number.

3. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

casting one or more polymeric compositions in the form of a rod;

lathing or machining said rod into disks; and

lathing or machining said disks into ophthalmic devices;

wherein said one or more polymeric compositions are produced through a polymerization of one or more non-siloxy aromatic-based monomers with one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number.

4. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

casting one or more polymeric compositions in the form of a rod;

lathing or machining said rod into disks; and

lathing or machining said disks into ophthalmic devices;

wherein said polymeric compositions are produced through a polymerization of one or more non-aromatic-based hydrophobic monomers with one or mare macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer, and y is a natural number.

5. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

casting said one or mare polymeric compositions in the form of a rod;

lathing or machining said rod into disks; and

lathing or machining said disks into ophthalmic devices;

wherein said one or more polymeric compositions are produced through a polymerization of one or more non-aromatic-based hydrophilic monomers with one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer, and y is a natural number.

6. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

pouring one or more polymeric compositions into a mold prior to curing;

curing said one or more polymeric compositions; and

removing said one or more polymeric compositions from said mold following curing thereof;

wherein said one or more polymeric compositions are produced through a polymerization of one or more non-siloxy aromatic-based monomers with one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer and y is a natural number.

7. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

pouring one or more polymeric compositions into a mold prior to curing;

curing said one or more polymeric compositions; and

removing said one or more polymeric compositions from said mold following curing thereof;

wherein said one or more polymeric compositions are produced through a polymerization of one or more non-aromatic-based hydrophobic monomers with one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number.

8. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

pouring one or more polymeric compositions into a mold prior to curing;

curing said one or more polymeric compositions; and

removing said one or more polymeric compositions from said mold following curing thereof;

wherein said one or more polymeric compositions are produced through a polymerization of one or more non-aromatic-based hydrophilic monomers with one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group is selected from the group consisting of

R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer and y is a natural number.

9. The method of claim 1 , 2 , 3 , 4 , 5 , 6 , 7 , or 8 wherein said ophthalmic device is a contact lens.

10. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

casting one or more polymeric compositions in the form of a rod;

lathing or machining said rod into disks; and

lathing or machining said disks into ophthalmic devices;

wherein said one or more polymeric compositions are produced through a polymerization of a material comprising one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group comprises an aromatic group having a linking group that covalently attaches the aromatic group to a silicon atom; R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number; and wherein an attachment of the aromatic group to the silicon atom results from a hydrosilylation of an allylic functional group on the aromatic group.

11. The method of claim 10 , wherein said material further comprises a monomer selected from the group consisting of non-siloxy aromatic-based monomers, non-aromatic-based hydrophobic monomers, non-aromatic-based hydrophilic monomers, and combinations thereof.

12. A method of producing ophthalmic devices from polymeric compositions, said method comprising:

pouring one or more polymeric compositions into a mold prior to curing;

curing said one or more polymeric compositions; and

removing said one or more polymeric compositions from said mold following curing thereof;

wherein said one or more polymeric compositions are produced through a polymerization of a material comprising one or more macromonomers having a formula of

wherein the R groups are the same or different; each R group comprises an aromatic group having a linking group that covalently attaches the aromatic group to a silicon atom; R 1 is an aromatic-based substituent or an alkyl; x is a non-negative integer; and y is a natural number; and wherein an attachment of the aromatic group to the silicon atom results from a hydrosilylation of an allylic functional group on the aromatic group.

13. The method of claim 12 , wherein said material further comprises a monomer selected from the group consisting of non-siloxy aromatic-based monomers, non-aromatic-based hydrophobic monomers, non-aromatic-based hydrophilic monomers, and combinations Thereof.

Assignments (2)
RELEASE OF SECURITY INTEREST Recorded Apr 8, 2025
From: BARCLAYS BANK PLC, AS COLLATERAL AGENT
To: SOLTA MEDICAL, INC.; PRECISION DERMATOLOGY, INC.; BAUSCH HEALTH IRELAND LIMITED (F/K/A/ VALEANT PHARMACEUTICALS IRELAND LIMITED); SALIX PHARMACEUTICALS, INC.; SALIX PHARMACEUTICALS, LTD; SANTARUS, INC.; MEDICIS PHARMACEUTICAL CORPORATION; HUMAX PHARMACEUTICAL S.A.; SOLTA MEDICAL IRELAND LIMITED; BAUSCH & LOMB MEXICO, S.A. DE C.V.; BAUSCH+LOMB OPS B.V.; BAUSCH HEALTH AMERICAS, INC.; BAUSCH HEALTH COMPANIES INC.; BAUSCH HEALTH HOLDCO LIMITED; BAUSCH HEALTH MAGYARORSZAG KFT (A/K/A BAUSCH HEALTH HUNGARY LLC); BAUSCH HEALTH POLAND SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA (F/K/A VALEANT PHARMA POLAND SPOLKA Z OGRANICZONA ODPOWIEDZIALNOSCIA); BAUSCH HEALTH US, LLC; BAUSCH HEALTH, CANADA INC. / SANTE BAUSCH, CANADA INC.; ICN POLFA RZESZOW SPOLKA AKCYJNA (A/K/A ICN POLFA RZESZOW S.A.); ORAPHARMA, INC.; PRZEDSIEBIORSTWO FARMACEUTYCZNE JELFA SPOLKA AKCYJNA (A/K/A PRZEDSIEBIORSTWO FARMACEUTYCZNE JELFA S.A.); SOLTA MEDICAL DUTCH HOLDINGS B.V.; V-BAC HOLDING CORP.; VRX HOLDCO LLC; 1261229 B.C. LTD.; 1530065 B.C. LTD.
Reel/Frame 070778/0199 →
NOTICE OF SUCCESSION OF AGENCY Recorded Jan 9, 2015
From: GOLDMAN SACHS LENDING PARTNERS, LLC
To: BARCLAYS BANK PLC, AS SUCCESSOR AGENT
Reel/Frame 034749/0689 →