Claims
- 1. A composition of the general formula: ##STR19## wherein both R.sup.1 groups are the same or different and are hydrogen or a lower alkyl group, X is a lower alkyl, hydroxy, lower alkoxy, lower acyloxy, fluoro, chloro, bromo or iodo group, and R.sup.2 is hydroxy, a lower acyloxy group or halogen.
- 2. A composition according to claim 1 wherein R.sup.1 is a methyl group.
- 3. A composition according to claim 1 wherein R.sup.2 is an acyloxy group of formula ##STR20## wherein Y.sup.1, Y.sup.2, and Y.sup.3 are the same or different and are selected from the group consisting of a lower alkyl group, or hydrogen.
- 4. A composition according to claim 1 wherein X is methyl, methoxy, chloro or bromo.
- 5. A composition of the formula: ##STR21##
- 6. An antiviral composition comprising, as active ingredient, an effective antiviral amount of one or more of the compositions of claim 1 and a non-toxic pharmaceutically acceptable carrier or diluent.
- 7. An antiviral composition comprising, as active ingredient, an effective antiviral amount of one or more of the compositions of claim 3 and a non-toxic pharmaceutically acceptable carrier or diluent.
- 8. An antiviral composition comprising, as active ingredient, an effective antiviral amount of the composition of claim 5 and a non-toxic pharmaceutically acceptable carrier or diluent.
- 9. A method for inhibiting viruses in a host comprising contacting a virus with an effective antiviral amount of one or more compositions of claim 1.
- 10. A method for inhibiting viruses in a host comprising contacting a virus with an effective antiviral amount of one or more compositions of claim 3.
- 11. A method for inhibiting viruses comprising contacting a virus with an effective antiviral amount of the composition of claim 5.
- 12. An antitumor composition comprising, as active ingredient, an effective antitumor amount of one or more of the compositions of claim 1 and a non-toxic pharmaceutically acceptable carrier or diluent.
- 13. A method for inhibiting tumors in a host comprising contacting a tumor with an effective antitumor amount of one or more compositions of claim 1.
- 14. An antitumor composition effective against human lung, colon or mammary tumors comprising an effective antitumor amount of one or more compositions according to claim 1 and a non-toxic or pharmaceutically acceptable carrier or diluent.
- 15. An antitumor composition effective against animal lung, colon or mammary tumors comprising an effective antitumor amount of one or more compositions according to claim 1 and a non-toxic pharmaceutically acceptable carrier or diluent.
- 16. The method according to claim 13 wherein the tumors inhibited are selected from the group consisting of human lung, colon or mammary tumors.
- 17. The method according to claim 13 wherein the tumors inhibited are animal tumors.
- 18. A process to produce a composition according to the general formula of claim 3 ##STR22## comprising the steps of: collecting red algae;
- contacting said algae with a first organic solvent selected from the group consisting of acetone, methyl ethyl ketone, ethyl acetate and methyl isobutyl ketone to obtain a first extract comprising a hydroxy composition according to formula A: ##STR23## wherein R.sup.1 and X have the same meaning as recited in claim 3 and Y.sup.1, Y.sup.2 and Y.sup.3 are hydrogen;
- admixing said first extract with a second organic solvent selected from the group consisting of methylene chloride, chloroform, trichloroethylene and a lower alkane to produce a second extract;
- removing the second solvent extract containing a hydroxy composition according to formula A;
- isolating said hydroxy composition of formula A by chromatography;
- acetylating said hydroxy composition of formula A; and
- isolating a composition according to claim 3.
- 19. The process according to claim 18 wherein the red alga is Desmia hornemanni.
- 20. The process according to claim 18 wherein the first solvent is acetone and the second solvent is methylene chloride; the alcohol derivative is isolated by chromatography on a silica gel column by eluting with a mixture of hexane and acetone; a major fraction from the silica gel column chromatography is further separated on a thin layer chromatography grade silicon dioxide column utilizing flash chromatography to obtain said alcohol derivative and acetylating said alcohol derivative by treatment with a mixture of acetic anhydride and pyridine.
CONTINUING APPLICATION DATA
This is a continuation-in-part of U.S. patent application Ser. No. 682,278 filed December 17, 1984, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4162308 |
Calvin et al. |
Jul 1979 |
|
4162309 |
Calvin et al. |
Feb 1979 |
|
4708962 |
Higa et al. |
Nov 1987 |
|
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
682278 |
Dec 1984 |
|