研究目的
To explore [11C]NMS-E973 as a PET tracer for in vivo visualisation of HSP90 and as a potential tool for in vivo quantification of occupancy of HSP90 inhibitors.
研究成果
[11C]NMS-E973 is an effective PET tracer for in vivo visualisation of tumour HSP90 expression and can potentially quantify HSP90 occupancy, aiding in optimising HSP90 inhibitor treatments. Further clinical translation is needed to fully realise its utility.
研究不足
Hepatobiliary and renal clearance of [11C]NMS-E973 may limit detection of abdominal tumours; low SUV values in tumours; short half-life of carbon-11 restricts studies requiring steady-state conditions; difficulty in visualising HSP90 in abdominal regions due to excretion pathways.
1:Experimental Design and Method Selection:
The study involved biochemical characterization of HSP90 expression in cell lines and xenograft tissues, in vitro testing of NMS-E973 for HSP90 inhibitory activity, evaluation of HSP90-specific binding using autoradiography and cell binding studies, and in vivo μPET imaging in a B
2:F10 melanoma mouse model. Sample Selection and Data Sources:
Established cancer cell lines (MCF-7, PC-3, B
3:F10, OVCAR-3, BT-474, MDA-MB-415) and xenograft tumour tissues (BF10, LNCaP, PC3, SKOV-3) were used. Animal models included female C57BL/6 mice, Wistar rats, and NMRI-mice. List of Experimental Equipment and Materials:
HPLC systems (LaChrom Elite, Dionex Ultimate 3000), gamma counters (Wallac 1480 Wizard), mass spectrometer (MaXis impact), NMR spectrometer (Bruker AVANCE 400 MHz), cryotome (Shandon cryotome FSE), μPET scanner (FOCUS? 220), and various reagents and inhibitors (e.g., NMS-E973, PU-H71, Ganetespib).
4:Experimental Procedures and Operational Workflow:
Radiosynthesis of [11C]NMS-E973, biodistribution studies, plasma radiometabolite analysis, in vitro and ex vivo autoradiography, cell binding assays, and μPET imaging with blocking studies using HSP90 inhibitors.
5:Data Analysis Methods:
Statistical analysis using ANOVA with post hoc tests, high-content imaging analysis, and quantification of radioactivity and binding using software like GraphPad Prism, PMOD, and Optiquant.
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HPLC system
LaChrom Elite
Hitachi
Analysis of chemical and radiochemical purity
-
LC system
Dionex Ultimate 3000
Thermo Fisher Scientific
Elucidation of intermediate reaction products
-
Mass spectrometer
MaXis impact
Bruker
High-resolution mass spectrometry
-
NMR spectrometer
Bruker AVANCE 400 MHz
Bruker
Nuclear magnetic resonance analysis
-
Cryotome
Shandon cryotome FSE
Thermo Fisher
Obtaining tissue sections
-
μPET scanner
FOCUS? 220
Concorde Microsystems
Whole-body PET imaging
-
Phosphor storage screen
super-resolution screen
Perkin Elmer
Autoradiography imaging
-
Gamma counter
Wallac 1480 Wizard
Wallac
Quantification of radioactivity in biological samples
-
Cyclotron
Cyclone 18/9
IBA Louvain-la-Neuve
Production of carbon-11
-
Automated counting device
NucleoCounter? NC-200?
Chemometec
Counting number of cells
-
IN Cell Analyser
2000
GE Healthcare
High-content imaging analysis
-
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