Claims
- 1. A binding molecule-multienzyme complexes comprising:
a binding effector molecule, and a therapeutic effector molecule, and a joining component, wherein said component is a liposome and said binding effector molecule and said therapeutic effector molecule are functionally attached to the surface of said liposome.
- 2. The binding molecule-multienzyme complexes according to claim 1, wherein said binding effector molecule is a protein.
- 3. The binding molecule-multienzyme complexes according to claim 2, wherein said binding effector molecule is selected from the group consisting of antibodies and receptor ligands.
- 4. The binding molecule-multienzyme complexes according to claim 3, wherein said binding effector molecule is CD4.
- 5. The binding molecule-multienzyme complexes according to claim 1, where said therapeutic effector molecule is a protein.
- 6. The binding molecule-multienzyme complexes according to claim 5, wherein said therapeutic effector molecule is an enzyme.
- 7. The binding molecule-multienzyme complexes according to claim 6, wherein said enzyme is selected from the group consisting of proteinases, lipase, esterases, and toxins.
- 8. A binding molecule-multienzyme complex adapted for genetic manipulation complex comprising a binding molecule-multienzyme complex accordng to claim 1 and a genetic manipulation complex, said genetic manipulation complex comprising a polynucleotide for genetic manipulation comprising a polynulcotide sequence of interest and a DNA binding protein binding site, a DNA binding protein bound to said DNA protein binding site, motor protein, wherein said motor protein is conjugated to said polynucleotide, and wherein said liposome comprise at least one binding effectorconjugated to the surface of said liposome.
- 9. A binding molecule-multienzyme complex adapted for genetic manipulation complex according to claim 8, wherein said liposome further comprises a prophospholipase.
- 10. A binding molecule-multienzyme complex adapted for genetic manipulation complex according to claim 8, wherein said prophospholipase is prophospholipase A2.
- 11. A binding molecule-multienzyme complex adapted for genetic manipulation complex according to claim 9, wherein a nuclear receptor binding protein is conjugated to said polynulceotide.
- 12. A binding molecule-multienzyme complex adapted for genetic manipulation complex according to claim 9, wherein said polynucleotide encodes a therapeutic polypeptide.
- 13. A method of gentically modifying a cell of interest in a mammal, said method comprsing the step of adminstering a binding molecule-multienzyme complex adapted for genetic manipulation complex according to claim 1.
- 14. A method of genetically modifying a cell according to claim 13, wherein said liposome further comprises a prophospholipase.
- 15. A method of genetically modifying a cell according to claim 13, wherein said prophospholipase is prophospholipase A2.
- 16. A method of genetically modifying a cell according to claim 14, wherein a nuclear receptor binding protein is conjugated to said polynulceotide.
- 17. A method of genetically modifying a cell according to claim 14, wherein said polynucleotide encodes a therapeutic polypeptide.
RELATED APPLICATIONS
[0001] This application is related to copending U.S. applications Ser. No. 08/332,514 filed Oct. 31, 1994, and 08/424,874 filed Apr. 19, 1995, which are hereby incorporated by reference.
Divisions (1)
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Number |
Date |
Country |
Parent |
09407705 |
Sep 1999 |
US |
Child |
10105211 |
Mar 2002 |
US |
Continuations (3)
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Number |
Date |
Country |
Parent |
08627695 |
Mar 1996 |
US |
Child |
09407705 |
Sep 1999 |
US |
Parent |
08424874 |
Apr 1995 |
US |
Child |
08627695 |
Mar 1996 |
US |
Parent |
08332514 |
Oct 1994 |
US |
Child |
08424874 |
Apr 1995 |
US |