Claims
- 1. An optically clear, wettable, flexible, hydrolytically stable, biologically inert, substantially siloxane-free, substantially non-swellable in ocular tear fluid, and oxygen permeable ophthalmic device fabricated from a crosslinkable polymer having units of the formula I ##STR19## wherein each b, d and f is independently 0-4; q is a number from 1 to 1000; each x, y and z is independently 0 to a number such that (x+y+z) times q =4 to 1000; each of R.sub.1 -R.sub.18 are selected from the group consisting of hydrogen, an aliphatic, aromatic or alicyclic containing radical, each optionally interrupted by a heteroatom provided no carbon atom in said unit is geminally bound to oxygen atoms; or 2 adjacent groups R.sub.1 -R.sub.18, together with the atoms to which they are attached can form a 5-8 membered ring, and R.sub.1 -R.sub.18 may be further selected from or have a substituent selected from crosslinkable moieties provided that no carbon atoms bearing geminal oxygen atoms results and the terminal oxygen within a unit of formula I may be replaced by --NR.sub.19 -- wherein R.sub.19 is hydrogen, C.sub.1-4 alkyl, or phenyl, provided that when b, d and f are all 0, at lest one of R.sub.1, R.sub.2, R.sub.5 -R.sub.8, R.sub.11 -R.sub.14, R.sub.17 and R.sub.18 in at least a portion of the units of formula I is other than hydrogen and such R.sub.1, R.sub.2, R.sub.5 -R.sub.8, R.sub.11 -R.sub.14, R.sub.17 and R.sub.18 individually or in the aggregate s sufficiently hydrophobic such that the resulting polymer is substantially non-swellable in water; said ophthalmic device having a receding contact angle with distilled water of less than 60.degree. when measured at 20.degree. C.; contains less than about 10% water; and having an oxygen permeability, Dk (.times.10.sup.-10), greater than about 7.
- 2. The device of claim 1 wherein each of R.sub.1, R.sub.2, R.sub.5 -R.sub.8, R.sub.11 -R.sub.14, R.sub.17 and R.sub.18 are independently selected from the group consisting of unsubstituted (C.sub.1 -C.sub.16) alkyl; substituted C.sub.1 -C.sub.16 alkyl; unsubstituted C.sub.2 -C.sub.16 alkenyl; and substituted C.sub.2 -C.sub.16 alkenyl; wherein the alkyl and alkenyl substituents are independently selected from C.sub.1 -C.sub.16 alkoxycarbonyl, C.sub.2 -C.sub.16 alkenyloxycarbonyl, fluoro, aryl of up to 10 carbon atoms, C.sub.1 -C.sub.8 alkoxy, C.sub.2 -C.sub.6 alkanoyloxy, aryloxy of up to 10 carbon atoms, C.sub.3 -C.sub.6 alkenoyloxy, aroyloxy of up to 11 carbon atoms, C.sub.3 -C.sub.8 cycloalkyl, C.sub.3 -C.sub.8 cycloalkyloxy, C.sub.3 -C.sub.8 cycloalkyl-carbonyloxy, C.sub.3 -C.sub.8 cycloalkoxy-carbonyl, oxyacycloalkyl of up to 7 carbon atoms, axacycloalkoxy of up to 7 carbon atoms, oxacycloalkoxy (up to 7 carbon atoms)-carbonyl, oxacycloalkyl (up to 7 carbon atoms)-carbonyloxy, and aryl (of up to 10 carbon atoms)-oxycarbonyl, each of said alkyl and alkenyl substituents being, in turn, optionally substituted by C.sub.1 -C.sub.6 alkyl, fluoro or a C.sub.1 -C.sub.6 alkoxy provided said last mentioned alkoxy is not bound to a carbon atom already singly bound to another oxygen atom; R.sub.1, R.sub.2, R.sub.5 -R.sub.8, R.sub.11 -R.sub.14, R.sub.17 and R.sub.18 being further independently selected from aryl of up to 10 carbon atoms, C.sub.3 -C.sub.8 cycloalkyl, and oxacycloalkyl of up to 7 carbon atoms, each of which may be unsubstituted or further substituted with a substituent selected from the group of substituents for said alkyl set forth above; R.sub.3, R.sub.4, R.sub.9, R.sub.10, R.sub.15 and R.sub.16 are selected from the same group set forth above for R.sub.1 ; and R.sub.3, R.sub.4, R.sub.9, R.sub.10, R.sub.15 and R.sub.16 are further independently selected from C.sub.1 -C.sub.16 alkoxycarbonyl, C.sub.2 -C.sub.16 alkanoyloxy, C.sub.2 -C.sub.16 alkenoxycarbonyl, and C.sub.3 -C.sub.16 alkanoyloxy, each of which may be further substituted by fluoro, aryl of up to 10 carbon atoms, or C.sub.1 -C.sub.16 alkoxy, and R.sub.3, R.sub.4, R.sub.9, R.sub.10, R.sub.15 and R.sub.16 are still further independently selected from aryloxy of up to 10 carbon atoms, cycloalkoxy of up to 8 carbon atoms, cycloalkyl (of up to 8 carbon atoms)-carbonyloxy, cycloalkoxy (of up to 8 carbon atoms)-carbonyl, aroyloxy of up to 11 carbon atoms, oxacycloalkoxy of up to 7 carbon atoms, oxacycloalkenoxy of up to 7 carbon atoms, oxacycloalkoxy (of up to 7 carbon atoms)-carbonyl, oxacycloalkyl (of up to 7 carbon atoms)carbonyloxy, oxacycloalkenyloxy (of up to 7 carbon atoms)-carbonyl, and aryloxy (of up to 10 carbon atoms)carbonyl, each of which may be further substituted by fluoro, C.sub.1 -C.sub.6 alkyl or C.sub.1 -C.sub.6 alkoxy, provided that any substituent having an oxygen atom as its link to the rest of the molecule may not be a substituent on the same carbon atom which is singly bonded to another oxygen atom; or 2 adjacent groups R.sub.1 -R.sub.18, together with the atoms to which they are attached may form a 5-8 membered cycloalkyl or bicycloalkyl or a 5-8 membered oxacycloalkyl provided that in said oxacycloalkyl formed by two of R.sub.1 -R.sub.18, the ring oxygen atom is not bound to a carbon which is singly bound directly to another oxygen atom; and said R.sub.1 -R.sub.18 may further be selected from or have a substituent selected from crosslinkable moieties provided that no carbon atoms bearing geminal oxygen atoms result.
- 3. The device of claim 1 wherein said crosslinkable polymer is crosslinked up to 10%.
- 4. The device of claim 3 wherein said crosslinkable polymer is crosslinked up to 5%.
- 5. The device of claim 4 wherein said crosslinkable polymer is crosslinked from about 1 to about 4%.
- 6. The device of claim 5 wherein said crosslinkable polymer is crosslinked from about 2 to about 3%.
- 7. The device of claim 1 wherein said receding contact angle is less than 40.degree..
- 8. The device of claim 7 wherein said receding contact angle is less than 25.degree..
- 9. The device of claim 8 wherein said receding contact angle is less than 15.degree..
- 10. The device of claim 8 wherein said receding contact angle is less than 10.degree..
- 11. The device of claim 1 wherein said unit of formula I is at least 25% halogen free.
- 12. The device of claim 11 wherein said unit of formula I is at least 30% halogen free.
- 13. The device of claim 12 wherein said unit of formula I is at least 40% halogen free.
- 14. The device of claim 13 wherein said unit of formula I is substantially halogen free.
- 15. The device of claim 1 wherein said oxygen permeability is greater than 15.
- 16. The device of claim 15 wherein said oxygen permeability is greater than 20.
- 17. The device of claim 16 wherein said oxygen permeability is greater than 40.
- 18. The device of claim 1 wherein each b, d and f is independently 0-3.
- 19. The device of claim 18 wherein each b, d and f is independently 0-2.
- 20. The device of claim 19 wherein each b, d and f is independently 0 or 1.
- 21. The device of claim 1 which is a contact lens.
- 22. The device of claim 1 wherein b, d and f are each 0 or 1 and R.sub.1 -R.sub.18 are independently selected from hydrogen and methyl.
- 23. An optically clear, wettable, flexible, hydrolytically stable, biologically inert, substantially siloxane free, substantially non-swellable in ocular tear fluid, and oxygen permeable ophthalmic device according to claim 1 fabricated from a crosslinked polymer of a monomer of the formula
- L'--D--[A--L--D--].sub.w A--L" (II)
- wherein
- w is 0-8;
- each D is independently --O-- or --N(R.sub.19)--;
- each R.sub.19 is independently H, C.sub.1 -C.sub.4 alkyl, or phenyl;
- each L is independently --BRB'--;
- each B and B' is independently ##STR20## wherein the carbonyl group is bound to said D or said A; each R is a divalent linking group selected from C.sub.1 -C.sub.25 aliphatic C.sub.5 -C.sub.7 membered cycloaliphatic having 5-25 carbon atoms; aralkyl or alkaryl having 7-25 carbon atoms wherein the aliphatic and alkyl groups can be optionally interrrupted by ##STR21## and the aryl and arylene groups are unsuhstituted or further substituted with a substituent selected from halogen, C.sub.1 -C.sub.4 alkyl and C.sub.1 -C.sub.12 perhaloalkyl;
- L' is selected from H, P'--R--B'-- and P'--B--R--B'-- wherein B, R and B' are as defined above and P' is H or a moiety capable of being bound to the carbonyl of ##STR22## and containing a group capable of undergoing crosslinking when coreacted with a crosslinking agent or when irradiated by actinic radiation;
- L" is selected from H, a terminal monovalent aliphatic, aromatic or cycloaliphatic group of up to 14 carbon atoms, --B--R--P' and --BRB'P' wherein B, R, B' and P' are as defined above;
- and each A is a unit of the formula I according to claim 1.
- 24. The device of claim 23 fabricated from a crosslinked polymer of a monomer of formula II which is crosslinked in the presence of up to 10% by weight of an additional vinylic comonomer selected from N-(vinyl containing moiety)-pyrrolidone and (vinyl containing ##STR23## with R being H or CH.sub.3.
- 25. The device of claim 23 wherein each b, d and f are independently 0 or 1; each R.sub.1 -R.sub.18 is independently selected from hydrogen and methyl;
- B and B' are each ##STR24## R is phenylene or D is --O--;
- L' is P'--R'--B';
- L" is --B--R'--P';
- R' is phenylene, toluylene, or -(phenyl or toluyl)-amino-carbonyloxyethyl-, the phenyl ring of said R' being bound to said B or B'
- and P' is vinyl or methacroyloxy.
Parent Case Info
This application is a continuation-in-part of Ser. No. 902,283, filed Aug. 29, 1986, now abandoned.
US Referenced Citations (9)
Non-Patent Literature Citations (4)
| Entry |
| Polym./Plast. Technol. Eng. 8(2) "Barrier Polymers" (1977), pp. 155-175. |
| Fatt, "Gas Transmission Properties of Soft Contact Lenses", Ruben; Ed; John Wiley and Sons (1978) pp. 83-110. |
| BASF Technical Data on Pluronic Polyols, pp. 1-11. |
| BASF Technical Data on Pluronic R Polyols, pp. 1-13. |
Continuation in Parts (1)
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Number |
Date |
Country |
| Parent |
902283 |
Aug 1986 |
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