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001-es BibID:BIBFORM117439
035-os BibID:(Scopus)85186741089
Első szerző:Képes Zita (orvos)
Cím:Concomitant [18F]F-FAZA and [18F]F-FDG Imaging of Gynecological Cancer Xenografts : insight Into Tumor Hypoxia / Zita Kepes, Eva Hegedus, Tamas Sass, Csaba Csikos, Judit P. Szabo, Viktoria Szugyiczki, István Hajdu, Istvan Kertesz, Gabor Opposits, Jozsef Imrek, Laszlo Balkay, Ferenc Krisztián Kalman, Gyorgy Trencsenyi
Dátum:2024
ISSN:0258-851X
Megjegyzések:Background/Aim: Herein we assessed the feasibility of imaging protocols using both hypoxia-specific [18F]F-FAZA and [18F]F-FDG in bypassing the limitations derived from the non-specific findings of [18F]F-FDG PET imaging of tumor-related hypoxia. Materials and Methods: CoCl2-generated hypoxia was induced in multidrug resistant (Pgp+) or sensitive (Pgp-) human ovarian (Pgp- A2780, Pgp+ A2780AD), and cervix carcinoma (Pgp- KB-3-1, Pgp+ KB-V-1) cell lines to establish corresponding tumor-bearing mouse models. Prior to [18F]F-FDG/[18F]F-FAZA-based MiniPET imaging, in vitro [18F]F-FDG uptake measurements and western blotting were used to verify the presence of hypoxia. Results: Elevated GLUT-1, and hexokinase enzyme-II expression driven by CoCl2-induced activation of hypoxia-inducible factor-1? explains enhanced cellular [18F]F-FDG accumulation. No difference was observed in the [18F]F-FAZA accretion of Pgp+ and Pgptumors. Tumor-to-muscle ratios for [18F]F-FAZA measured at 110-120 min postinjection (6.2?0.1) provided the best contrasted images for the delineation of PET-oxic and PEThypoxic intratumor regions. Although all tumors exhibited heterogenous uptake of both radiopharmaceuticals, greater differences for [18F]F-FAZA between the tracer avid and non-accumulating regions indicate its superiority over [18F]F-FDG. Spatial correlation between [18F]F-FGD and [18F]F-FAZA scans confirms that hypoxia mostly occurs in regions with highly active glucose metabolism. Conclusion: The addition of [18F]F-FAZA PET to [18F]F-FGD imaging may add clinical value in determining hypoxic sub-regions.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Cervix xenotransplants
[18F]F-FAZA
[18F]F-FDG
GLUT-1 transporter
hexokinase enzyme-II
hypoxia-inducible factor-1
hypoxia
preclinical
positron emission tomography (PET)
ovarian xenotransplants
Megjelenés:In Vivo. - 38 : 2 (2024), p. 574-586. -
További szerzők:Hegedűs Éva (1978-) (biofizikus) Sass Tamás (1989-) (sebész szakorvos) Csíkos Csaba Péli-Szabó Judit (1977-) (vegyész) Szugyiczki Viktória Hajdu István (1981-) (vegyész) Kertész István (1966-) (vegyész) Opposits Gábor (1974-) (fizikus, szoftver fejlesztő) Imrek József (1980-) Balkay László (1963-) (biofizikus) Kálmán Ferenc K. (1978-) (vegyész) Trencsényi György (1978-) (biológus, biokémikus, molekuláris biológus)
Pályázati támogatás:Hungarian National Research, Development and Innovation Office (FK-134551 project)
Egyéb
Internet cím:DOI
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2.

001-es BibID:BIBFORM117056
035-os BibID:(WoS)001179422300020 (Scopus)85186740428
Első szerző:Képes Zita (orvos)
Cím:In Vivo Evaluation of Brain [18F]F-FDG Uptake Pattern Under Different Anaesthesia Protocols / Zita Kepes, Viktória Arato, Csaba Csikos, Eva Hegedus, Regina Esze, Tamas Nagy, Istvan Joszai, Miklos Emri, Istvan Kertesz, Gyorgy Trencsenyi
Dátum:2024
ISSN:0258-851X
Megjegyzések:Background/Aim: Since the use of anaesthetics has the drawback of altering radiotracer distribution, preclinical positron emission tomography (PET) imaging findings of anaesthetised animals must be carefully handled. This study aimed at assessing the cerebral [18F]F-FDG uptake pattern in healthy Wistar rats under four different anaesthesia protocols using microPET/magnetic resonance imaging (MRI) examinations. Materials and Methods: Post -injection of 15 +/- 1.2 MBq of [18F]F-FDG, either while awake or during the isoflurane-induced incubation phase was applied. Prior to microPET/MRI imaging, one group of the rats was subjected to forane-only anaesthesia while the other group was anaesthetised with the co -administration of forane and dexmedetomidine/Dexdor (R). Results: While as for the whole brain it was the addition of dexmedetomidine/Dexdor (R) to the anaesthesia protocol that generated the differences between the radiotracer concentrations of the investigated groups, regarding the cortex, the [18F]F-FDG accumulation was rather affected by the way of incubation. To ensure the most consistent and highest uptake, forane-induced anaesthesia coupled with an awake uptake condition seemed to be most suitable method of anaesthetisation for cerebral metabolic assessment. Diminished whole brain and cortical tracer accumulation detected upon dexmedetomidine/Dexdor (R) administration highlights the significance of the mechanism of action of different anaesthetics on radiotracer pharmacokinetics. Conclusion: Overall, the standardization of PET protocols is of utmost importance to avoid the confounding factors derived from anaesthesia.
Tárgyszavak:Orvostudományok Klinikai orvostudományok idegen nyelvű folyóiratközlemény külföldi lapban
folyóiratcikk
Anaesthesia
brain
dexmedetomidine
2-deoxy-2-[18F]fluoro-D-glucose: [18F]F-FDG
isoflurane
micro positron emission tomography/magnetic resonance imaging (microPET/MRI)
Megjelenés:In Vivo. - 38 : 2 (2024), p. 587-597. -
További szerzők:Arató Viktória Zsófia (1989-) (gyógyszerész) Csíkos Csaba Hegedűs Éva (1978-) (biofizikus) Esze Regina Nagy Tamás (1977-) (vegyész, orvosi laboratóriumi analitikus) Jószai István (1978-) (vegyész) Emri Miklós (1962-) (fizikus) Kertész István (1966-) (vegyész) Trencsényi György (1978-) (biológus, biokémikus, molekuláris biológus)
Internet cím:DOI
Intézményi repozitóriumban (DEA) tárolt változat
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