Claims
- 1. A diblock copolymer comprising a hydrophilic block and a hydrophobic block, said hydrophilic block comprising a polyethylene oxide polymer, said hydrophobic block comprising a polycaprolactone polymer, said polycaprolactone polymer comprising a number of caprolactone monomers selected from 5 to 150, said polyethylene oxide polymer comprising a number of ethylene oxide monomers selected from 20 to 100, wherein said diblock copolymers are assembled in a suitable aqueous medium such that said hydrophobic blocks define a core of said micellar system and said hydrophilic blocks define a shell surrounding said core.
- 2. The diblock copolymer micellar system according to claim 1, wherein said number of caprolactone monomers is 20 and said number of ethylene oxide monomers is 44; wherein said diblock copolymers are assembled in a suitable aqueous medium such that said hydrophobic blocks define a core of said micellar system and said hydrophilic blocks define a shell surrounding said core.
- 3. A diblock copolymer comprising a hydrophilic block and a hydrophobic block, said hydrophilic block comprising a polyethylene oxide polymer, said hydrophobic block comprising a polycaprolactone polymer, said polycaprolactone polymer comprising 20 caprolactone monomers, said polyethylene oxide polymer comprising 44 ethylene oxide monomers, wherein said diblock copolymers are assembled in a suitable aqueous medium such that said hydrophobic blocks define a core of said micellar system and said hydrophilic blocks define a shell surrounding said core.
- 4. A diblock copolymer micellar system according to claim 1, wherein said micellar system has a diameter varying essentially from about 10 nanometers to about 100 nanometers.
- 5. A diblock copolymer micellar system according to claim 2, wherein said micellar system has a diameter varying essentially from about 10 nanometers to about 100 nanometers.
- 6. A diblock copolymer micellar system according to anyone of claim 2, wherein said micellar system contains a biologically active agent into said core.
- 7. A diblock copolymer micellar system according to claim 3, wherein said biologically active agent is lipophilic.
- 8. A diblock copolymer micellar system according to claim 4, wherein said biologically active agent comprises a neuroactive agent.
- 9. A diblock copolymer micellar system according to claim 5, wherein said neuroactive agent is a neurotrophic agent selected from the group consisting of FK506 and L-685,818.
- 10. A diblock copolymer micellar system according to claim 6, wherein said neuroactive agent consists of L-685,818.
- 11. A composition comprising a population of micellar systems according to claim 3 in combination with a suitable pharmaceutical carrier.
- 12. A composition comprising a population of micellar systems according to claim 7 in combination with a suitable pharmaceutical carrier.
- 13. A composition according to claim 7, wherein said copolymers are present in a solution in an amount of about 1 percent by weight.
- 14. A delivery system for delivering a biologically active agent in situ in a patient, the delivery system comprising a population of micellar systems according to claim 1.
- 15. A delivery system according to claim 11, wherein said in situ delivery is to the central nervous system of said patient.
- 16. A method for preparing a population of micellar systems according to claim 1 which comprises the steps of:
a) dissolving said copolymers in a suitable organic solvant solution; and b) adding water in a dropwise fashion to said solution to form said micellar systems.
Parent Case Info
[0001] This application is a divisional application of application Ser. No. 09/563,380, filed May 3, 2000 claiming priority of application Ser. No. 60/132,683, filed May 5, 1999.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60132683 |
May 1999 |
US |
Divisions (1)
|
Number |
Date |
Country |
Parent |
09563380 |
May 2000 |
US |
Child |
10179336 |
Jun 2002 |
US |