A Simple Kit Formulation for Preparation and Exploratory Human Studies of a Novel 99mTc-Labeled Fibroblast Activation Protein Inhibitor Tracer for Imaging of the Fibroblast Activation Protein in Cancers.
暂无分享,去创建一个
Guoquan Li | Fei Kang | Junhong Feng | Q. Ruan | Yuhao Jiang | Junbo Zhang | S. Zong* | Qianna Wang | Jing Wang | Cheng Zhou
[1] Zuoquan Zhao,et al. Rational Design and Pharmacomodulation of Protein-Binding Theranostic Radioligands for Targeting the Fibroblast Activation Protein. , 2022, Journal of medicinal chemistry.
[2] S. Holm,et al. First-in-Human Study of [68Ga]Ga-NODAGA-E[c(RGDyK)]2 PET for Integrin αvβ3 Imaging in Patients with Breast Cancer and Neuroendocrine Neoplasms: Safety, Dosimetry and Tumor Imaging Ability , 2022, Diagnostics.
[3] R. Schibli,et al. Design and Evaluation of Novel Albumin-Binding Folate Radioconjugates: Systematic Approach of Varying the Linker Entities. , 2022, Molecular pharmaceutics.
[4] Xuran Zhang,et al. Preparation and Bioevaluation of 99mTc-Labeled FAP Inhibitors as Tumor Radiotracers to Target the Fibroblast Activation Protein. , 2021, Molecular pharmaceutics.
[5] F. Giesel,et al. Radioligands Targeting Fibroblast Activation Protein (FAP) , 2021, Cancers.
[6] K. Schäfers,et al. Translational imaging of the fibroblast activation protein (FAP) using the new ligand [68Ga]Ga-OncoFAP-DOTAGA , 2021, European Journal of Nuclear Medicine and Molecular Imaging.
[7] Zhide Guo,et al. Synthesis, Preclinical Evaluation, and a Pilot Clinical PET Imaging Study of 68Ga-Labeled FAPI Dimer , 2021, The Journal of Nuclear Medicine.
[8] Shiming Ye,et al. Preclinical evaluation and pilot clinical study of [18F]AlF-labeled FAPI-tracer for PET imaging of cancer associated fibroblasts , 2021, Acta pharmaceutica Sinica. B.
[9] Nan Li,et al. Clinical translational evaluation of Al18F-NOTA-FAPI for fibroblast activation protein-targeted tumour imaging , 2021, European Journal of Nuclear Medicine and Molecular Imaging.
[10] Xuran Zhang,et al. Preparation and Bioevaluation of Novel 99mTc-Labeled Complexes with a 2-Nitroimidazole HYNIC Derivative for Imaging Tumor Hypoxia , 2021, Pharmaceuticals.
[11] Jun Zhao,et al. Standardized uptake values of 99mTc-MDP in normal vertebrae assessed using quantitative SPECT/CT for differentiation diagnosis of benign and malignant bone lesions , 2020, BMC Medical Imaging.
[12] R. Tothill,et al. FAPI PET/CT: Will It End the Hegemony of 18F-FDG in Oncology? , 2020, The Journal of Nuclear Medicine.
[13] U. Haberkorn,et al. The Latest Developments in Imaging of Fibroblast Activation Protein , 2020, The Journal of Nuclear Medicine.
[14] Thomas Lindner,et al. Design and Development of 99mTc-Labeled FAPI Tracers for SPECT Imaging and 188Re Therapy , 2020, The Journal of Nuclear Medicine.
[15] U. Haberkorn,et al. Radiation Dosimetry and Biodistribution of 68Ga-FAPI-46 PET Imaging in Cancer Patients , 2019, The Journal of Nuclear Medicine.
[16] J. Giglio,et al. 99mTc Labelling Strategies for the Development of Potential Nitroimidazolic Hypoxia Imaging Agents , 2019, Inorganics.
[17] T. Watabe,et al. Theranostics Targeting Fibroblast Activation Protein in the Tumor Stroma: 64Cu- and 225Ac-Labeled FAPI-04 in Pancreatic Cancer Xenograft Mouse Models , 2019, The Journal of Nuclear Medicine.
[18] Thomas Lindner,et al. Development of Fibroblast Activation Protein–Targeted Radiotracers with Improved Tumor Retention , 2019, The Journal of Nuclear Medicine.
[19] Thomas Lindner,et al. Development of Quinoline-Based Theranostic Ligands for the Targeting of Fibroblast Activation Protein , 2018, The Journal of Nuclear Medicine.
[20] O. Schilling,et al. Understanding fibroblast activation protein (FAP): Substrates, activities, expression and targeting for cancer therapy , 2014, Proteomics. Clinical applications.
[21] T. Ogawa,et al. Role of stromal myofibroblasts in invasive breast cancer: stromal expression of alpha-smooth muscle actin correlates with worse clinical outcome , 2012, Breast Cancer.
[22] P. McKee,et al. Using substrate specificity of antiplasmin-cleaving enzyme for fibroblast activation protein inhibitor design. , 2009, Biochemistry.
[23] P. Tak,et al. Biodistribution and Radiation Dosimetry of 99mTc-HMPAO–Labeled Monocytes in Patients with Rheumatoid Arthritis , 2008, Journal of Nuclear Medicine.
[24] J. Parry,et al. In vitro and in vivo evaluation of 64Cu-labeled DOTA-linker-bombesin(7-14) analogues containing different amino acid linker moieties. , 2007, Bioconjugate chemistry.
[25] A. Harris,et al. A novel ternary ligand system for 99mTc-labeling of hydrazino nicotinamide-modified biologically active molecules using imine-N-containing heterocycles as coligands. , 1998, Bioconjugate chemistry.
[26] Mi-Gyeong Kim,et al. Selective Activation of Anticancer Chemotherapy by Cancer-Associated Fibroblasts in the Tumor Microenvironment , 2017, Journal of the National Cancer Institute.