125 results on '"Szajek, Lawrence P"'
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2. Anatomy, Functionality, and Neuronal Connectivity with Manganese Radiotracers for Positron Emission Tomography
3. Supplemental data from Bone Marrow Cell Trafficking Analyzed by 89Zr-oxine Positron Emission Tomography in a Murine Transplantation Model
4. Tumor and organ uptake of 64Cu-labeled MORAb-009 (amatuximab), an anti-mesothelin antibody, by PET imaging and biodistribution studies
5. Improvement of CXCR4 tracer specificity for PET imaging
6. Positron Emission Tomography Imaging of Tumors Expressing the Human Chemokine Receptor CXCR4 in Mice with the Use of 64Cu-AMD3100
7. MicroPET Imaging of Integrin αvβ3 Expressing Tumors Using 89Zr-RGD Peptides
8. PET imaging of HER1-expressing xenografts in mice with 86Y-CHX-A″-DTPA-cetuximab
9. Preparation of cyclotron-produced 186Re and comparison with reactor-produced 186Re and generator-produced 188Re for the labeling of bombesin
10. Potassium radical anion salts of 2,3-bis(2-pyridyl)quinoxaline
11. Device-dependent activity estimation and decay correction of radionuclide mixtures with application to Tc-94m PET studies
12. Fluoro-, bromo-, and iodopaclitaxel derivatives: synthesis and biological evaluation
13. Supplemental Material, PDL1_supportingInfo_ejagoda_(1) - Immuno-PET Imaging of the Programmed Cell Death-1 Ligand (PD-L1) Using a Zirconium-89 Labeled Therapeutic Antibody, Avelumab
14. ImmunoPET as Stoichiometric Sensor for Glypican-3 in Models of Hepatocellular Carcinoma
15. Reply to the ‘Comment on “Investigation of Zr(iv) and 89Zr(iv) complexation with hydroxamates: progress towards designing a better chelator than desferrioxamine B for immuno-PET imaging”’ by A. Bianchi and M. Savastano, Chem. Commun., 2020, 56, D0CC01189D
16. Evaluation of [ 76Br]FBAU 3′,5′-dibenzoate as a lipophilic prodrug for brain imaging
17. Immuno-PET Imaging of the Programmed Cell Death-1 Ligand (PD-L1) Using a Zirconium-89 Labeled Therapeutic Antibody, Avelumab
18. Single Low-Dose Injection of Evans Blue Modified PSMA-617 Radioligand Therapy Eliminates Prostate-Specific Membrane Antigen Positive Tumors
19. Tumor-Shed Antigen Affects Antibody Tumor Targeting: Comparison of Two 89Zr-Labeled Antibodies Directed against Shed or Nonshed Antigens
20. Bone Marrow Cell Trafficking Analyzed by 89Zr-oxine Positron Emission Tomography in a Murine Transplantation Model
21. Improved Quantification for Tc-94m PET Imaging
22. Imaging the Met Receptor Tyrosine Kinase (Met) and Assessing Tumor Responses to a Met Tyrosine Kinase Inhibitor in Human Xenograft Mouse Models with a [(99m)Tc] (AH-113018) or Cy 5(⋆⋆) (AH-112543) Labeled Peptide
23. Imaging the Met Receptor Tyrosine Kinase (Met) and Assessing Tumor Responses to a Met Tyrosine Kinase Inhibitor in Human Xenograft Mouse Models with a [ 99m Tc] (AH-113018) or CY 5** (AH-112543) Labeled Peptide
24. 89Zr-Oxine Complex PET Cell Imaging in Monitoring Cell-based Therapies
25. PET Imaging of Tenascin-C with a Radiolabeled Single-Stranded DNA Aptamer
26. Chelator-Free 64Cu-Integrated Gold Nanomaterials for Positron Emission Tomography Imaging Guided Photothermal Cancer Therapy
27. Immuno-PET Imaging of Tumor Endothelial Marker 8 (TEM8)
28. Investigation of Zr(iv) and 89Zr(iv) complexation with hydroxamates: progress towards designing a better chelator than desferrioxamine B for immuno-PET imaging
29. [76Br]BMK-152, a nonpeptide analogue, with high affinity and low nonspecific binding for the corticotropin-releasing factor type 1 receptor
30. Positron Emission Tomography Imaging of Tumors Expressing the Human Chemokine Receptor CXCR4 in Mice with the Use of 64Cu-AMD3100
31. PET imaging of CXCR4 using copper-64 labeled peptide antagonist
32. MicroPET Imaging of Integrin αvβ3 Expressing Tumors Using 89Zr-RGD Peptides
33. Imaging the Met Receptor Tyrosine Kinase (Met) and Assessing Tumor Responses to a Met Tyrosine Kinase Inhibitor in Human Xenograft Mouse Models with a [99mTc] (AH-113018) or Cy 5** (AH-112543) Labeled Peptide.
34. Imaging the Met Receptor Tyrosine Kinase (Met) and Assessing Tumor Responses to a Met Tyrosine Kinase Inhibitor in Human Xenograft Mouse Models with a [99mTc] (AH-113018) or Cy 5** (AH-112543) Labeled Peptide.
35. Semi-remote production of [64Cu]CuCl2 and preparation of high specific activity [64Cu]Cu-ATSM for PET studies
36. Semi-remote production of Br-76 and preparation of high specific activity radiobrominated pharmaceuticals for PET studies
37. Semi-automated 86Y purification using a three-column system
38. Production and radioassay of Tc-94m for PET studies
39. Autoradiographic Visualization of Corticotropin Releasing Hormone Type 1 Receptors with a Nonpeptide Ligand: Synthesis of [76Br]MJL-1-109-2
40. The sequential syntheses of [76Br]FBAU 3′,5′‐dibenzoate and [76Br]FBAU
41. Molecular and Electronic Structure of a Reduced Schiff Base Cryptand: Characterization by X-ray Crystallography and Optical and EPR/ENDOR Spectroscopy
42. Stereodynamics and Reactivity of the Indenyliridium(I) Complex (.eta.5-C9H7)Ir(.eta.2-C8H14)(CO). Comparison with the Cyclopentadienyl Analog (.eta.5-C5H5)Ir(.eta.2-C8H14)(CO)
43. Observation of intermediates in the protonation of (.eta.5-C9H7)Ir(.eta.4-C8H12) with trifluoroacetic acid. [Erratum to document cited in CA119(19):203599a]
44. Observation of intermediates in the protonation of (.eta.5-C9H7)Ir(.eta.4-C8H12) with trifluoroacetic acid
45. [76Br]BMK-152, a nonpeptide analogue, with high affinity and low nonspecific binding for the corticotropin-releasing factor type 1 receptor.
46. Unexpected synthesis of CpIr(.eta.4-C5H6) and a proton and carbon-13 NMR comparison with its cobalt and rhodium congeners
47. Site-selective oxidative-addition reactions in a heterometallic octanuclear carbido cluster compound. A reactivity parallel with mononuclear indenyliridium complexes
48. The "indenyl effect" on ethylene rotation in iridium(I) complexes
49. Reply to the 'Comment on "Investigation of Zr(IV) and 89Zr(IV) complexation with hydroxamates: progress towards designing a better chelator than desferrioxamine B for immuno-PET imaging"' by A. Bianchi and M. Savastano, Chem. Commun., 2020, 56, D0CC01189D
50. Noninvasive Molecular Imaging to Detect Transgene Expression of Lentiviral Vector in Nonhuman Primates.
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