Targeted delivery of drugs for the treatment of parasitic infections
Targeting agents such as transferrin and transcobalamin can be conjugated with anti-protozoan drugs for the treatment of protozoan infections. Any suitable anti-protozoan drug can be used, preferably the drug is selected from the group consisting of apoptosis inducing compounds, cytotoxic antibiotics, alkalating agents, plant toxins, and bacterial mutant toxins. The targeting agent is preferably coupled to the antiprotozoan drug by means of glutaraldehyde.
1. A method for selectively treating a cell infected with a protozoa, comprising
administering to said cell an anti-protozoan effective amount of a conjugate containing a protozoan infected cell targeting agent and an anti-protozoan drug, wherein said anti-protozoan drug is selected from the group consisting of an apoptosis inducing compound, a cytotoxic antibiotic, an alkylating agent, a plant toxin, and a bacterial mutant toxin, and wherein said protozoan infected cell targeting agent is selected from the group consisting of transferrin and transcobalamin.
2. The method according to claim 1 , wherein said anti-protozoan drug is selected from the group consisting of doxorubicin, deferoxamine, melarsopral, eflornithine, pentamidine, quinine, mefloquine, amodiaquine, primaquine, pyrimethamine, sulfadoxine, sulfadiazine, trimethop rim, pentavalent antimony, amphotericin B, rifampin, metronidazole, ketoconazole, benznidazole, nifurtimox, suramin, ricin, and choloroquine.
3. The method according to claim 1 , wherein said protozoan infected cell targeting agent is transferrin.
4. The method according to claim 2 , wherein said protozoa is selected from the group consisting of Plasmodia species and trypanosomes.
5. A method for treating a patient infected with a protozoa, comprising administering to said patient an effective amount of a conjugate containing a protozoan infected cell targeting agent and an anti-protozoan drug, wherein said anti-protozoan drug is selected from the group consisting of an apotosis inducing compound, a cytotoxic antibiotic, an alkyating agent, a plant toxin, and a bacterial mutant toxin, and wherein said protozoan infected cell targeting agent is selected from the group consisting of transferrin and transcobalamin.
6. The method according to claim 5 , wherein said protozoa is selected from the group consisting of Plasmodia species and trypanosomes.
7. A pharmaceutical composition suitable for treating protozoan infections comprising a conjugate and a carrier, wherein said conjugate comprises a protozoan infected cell targeting agent and an anti-protozoan drug selected from the group consisting of melarsopral, eflornithine, pentamidine, quinine, mefloquine, amodiaquine, primaquine, pyrimethamine sulfadoxine, sulfadiazine, trimethoprim, pentavalent antimony, metronidazole, ketoconazole, benznidazole, nifurtimox, suramin, ricin, and choloroquine, and wherein said protozoan infected cell targeting agent is selected from the group consisting of transferrin and transcobalamin.
8. The composition according to claim 7 , further comprising an unconjugated anti-protozoan drug.
9. The composition according to claim 7 , wherein said targeting agent is transferrin.
10. A substantially homogeneous conjugate comprising a targeting agent and an anti-protozoan drug wherein said anti-protozoan drug is selected from the group consisting of melarsopral, eflornithine, pentamidine, quinine, mefloquine, amodiaquine, primaquine, pyrimethamine, sulfadoxine, sulfadiazine, trimethoprim, pentavalent antimony, metronidazole, ketoconazole, benznidazole, nifurtimox, suramin, ricin and choloroquine, and wherein said targeting agent is selected from the group consisting of transferrin and transcobalamin.
11. The conjugate according to claim 10 , wherein said targeting agent is transferrin.
12. A reagent kit for determining the susceptibility of protozoan infected cells to anti-protozoan drugs, comprising two or more conjugates each containing a protein targeting agent and an anti-protozoan drug, wherein said conjugates have different anti-protozoan drugs, and wherein at least one anti-protozoan drug is selected from the group consisting of melarsopral, eflornithine, pentamidine, quinine, mefloquine, amodiaquine, primaquine, pyrimethamine, sulfadoxine, sulfadiazine, trimethoprim, pentavalent antimony, amphotericin B, rifampin, metronidazole, ketoconazole, benznidazole, nifurtimox, suramin, ricin, and choloroquine, and wherein said protein targeting agent is selected from the group consisting of transferrin and transcobalamin.
13. A method for making a conjugate having a predetermined anti-protozoan drug: protein ratio, comprising
a) adding a solution of an anti-protozoan drug dropwise to a linker molecule solution to link each anti-protozoan drug molecule to one linker molecule in a drug/linker combination; and
b) reacting the drug/linker combination with a protein to produce a conjugate having a predetermined anti-protozoan drug: protein ratio, wherein said protein is selected from the group consisting of transferrin and transcobalamin and wherein said anti-protozoan drug is selected from the group consisting of melarsopral, eflornithine, pentamidine, quinine, mefloquine, amodiaquine, primaquine, pyrimethamine, sulfadoxine, sulfadiazine, trimethoprim, pentavalent antimony, metronidazole, ketoconazole, benznidazole, nifurtimox, suramin, ricin, choloroquine, and deferoxamine.
14. The method according to claim 13 , further comprising scavenging any excess linker.
15. The method according to claim 13 , wherein said linker is selected from the group consisting of glutaraldehyde, benzoyl hydrazone, maleinimide and N-hydroxysuccinimide.