Claims
- 1. A method for preparing a technetium-99m labeled peptide for imaging target sites within a mammalian body by directly labeling a homogeneous preparation of a peptide, wherein the peptide comprises between 5 and 40 amino acid residues and contains 2 cysteine residues capable of forming a disulfide bond, the method comprising reacting the peptide with technetium-99m under reducing conditions.
- 2. A method for preparing a technetium-99m labeled peptide for imaging target sites within a mammalian body by directly labeling a homogeneous preparation of a peptide that binds to the somatostatin receptor and comprises between 5 and 40 amino acid residues and contains 2 cysteine residues capable of forming a disulfide bond, the method comprising reacting the peptide with technetium-99m under reducing conditions.
- 3. The method of claim 1, wherein said reducing conditions comprise reacting the reagent in the presence of a stannous ion or a solid phase reducing agent.
- 4. A method for directly labeling a reagent for preparing a technetium-99m labeled peptide for imaging target sites within a mammalian body, the reagent comprising a homogeneous preparation of a peptide wherein the peptide comprises between 5 and 40 amino acid residues and at least 2 cysteine residues capable of forming a disulfide bond, the method comprising:
- (a) reacting the peptide under reducing conditions to produce a reduced-thiol peptide; and
- b) reacting the reduced-thiol peptide with a prereduced technetium-99m complex.
- 5. A method for preparing a technetium-99m labeled peptide for imaging target sites within a mammalian body by directly labeling a homogeneous preparation of a peptide that binds to the somatostatin receptor and comprises between 5 and 40 amino acid residues and contains 2 cysteine residues capable of forming a disulfide bond, the method comprising:.
- (a) reacting the peptide under reducing conditions to produce a reduced-thiol peptide; and
- (b) reacting the reduced-thiol peptide with a prereduced technetium-99m complex.
- 6. A kit for preparing a radiopharmaceutical preparation, said kit comprising a sealed vial containing a predetermined quantity of a reagent for preparing a technetium-99m labeled peptide for imaging target sites within a mammalian body, the reagent comprising a homogeneous preparation of a peptide wherein the peptide comprises between 5 and 40 amino acid residues and at least 2 cysteine residues capable of forming a disulfide bond, wherein the reagent is directly labeled with technetium-99m by reaction with technetium99m under reducing conditions, and a sufficient amount of a reducing agent to label said compound with technetium-99m.
- 7. A kit for preparing a radiopharmaceutical preparation for imaging target sites within a mammalian body, the radiopharmaceutical preparation comprising a technetium-99m labeled peptide, said kit comprising a sealed vial containing a predetermined quantity of a homogeneous preparation of a peptide that binds to the somatostatin receptor and comprises between 5 and 40 amino acid residues and contains 2 cysteine residues that form a disulfide or wherein the disulfide is reduced to the sulfhydryl form, the kit further comprising a sufficient amount of a reducing agent to label said peptide with technetium-99m, wherein the peptide is directly labeled with technetium-99m by reaction with technetium-99m under reducing conditions.
- 8. The method of claim 2, wherein the peptide is somatostatin or a derivative or analog thereof.
- 9. The method of claim 5, wherein the peptide is somatostatin or a derivative or analog thereof.
- 10. The kit according to claim 7 wherein the peptide is somatostatin or a derivative or analog thereof.
Parent Case Info
This is divisional application of U.S. patent application Ser. No. 07/757,470, filed Sep. 10, 1991, now U.S. Pat. No. 5,225,180, issued Jul. 6, 1993.
US Referenced Citations (18)
Foreign Referenced Citations (1)
Number |
Date |
Country |
135160 |
Mar 1985 |
EPX |
Divisions (1)
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Number |
Date |
Country |
Parent |
757470 |
Sep 1991 |
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