In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain
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2021
Authors
Dukić-Stefanović, SladjanaLai, Thu Hang

Toussaint, Magali
Clauß, Oliver
Jevtić, Ivana

Penjišević, Jelena

Andrić, Deana

Ludwig, Friedrich-Alexander
Gündel, Daniel
Deuther-Conrad, Winnie
Kostić Rajačić, Slađana

Brust, Peter

Teodoro, Rodrigo

Article (Published version)

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Monoamine oxidases (MAOs) play a key role in the metabolism of major monoamine neurotransmitters. In particular, the upregulation of MAO-B in Parkinson's disease, Alzheimer's disease and cancer augmented the development of selective MAO-B inhibitors for diagnostic and therapeutic purposes, such as the anti-parkinsonian MAO-B irreversible binder L-deprenyl (Selegiline®). Herein we report on the synthesis of novel fluorinated indanone derivatives for PET imaging of MAO-B in the brain. Out of our series, the derivatives 6, 8, 9 and 13 are amongst the most affine and selective ligands for MAO-B reported so far. For the derivative 6-((3-fluorobenzyl)oxy)-2,3-dihydro-1H-inden-1-one (6) exhibiting an outstanding affinity (Ki MAO-B = 6 nM), an automated copper-mediated radiofluorination starting from the pinacol boronic ester 17 is described. An in vitro screening in different species revealed a MAO-B region-specific accumulation of [18F]6 in rats and piglets in comparison to L-[3H]deprenyl. T...he pre-clinical in vivo assessment of [18F]6 in mice demonstrated the potential of indanones to readily cross the blood–brain barrier. Nonetheless, parallel in vivo metabolism studies indicated the presence of blood–brain barrier metabolites, thus arguing for further structural modifications. With the matching analytical profiles of the radiometabolite analysis from the in vitro liver microsome studies and the in vivo evaluation, the structure's elucidation of the blood–brain barrier penetrant radiometabolites is possible and will serve as basis for the development of new indanone derivatives suitable for the PET imaging of MAO-B.
Keywords:
Copper-mediated radiofluorination / Fluorine-18 / Indanone derivatives / MAO-B / PET tracersSource:
Bioorganic and Medicinal Chemistry Letters, 2021, 48, 128254-Publisher:
- Elsevier
Funding / projects:
- Structure-activity relationship of newly synthesized biological active compound (RS-172032)
- DAAD (grant No.57391403) Bilateral project: “Development of new fluorinated radioligands for PET imaging of monoamine oxidase B (MAO-B)”.
DOI: 10.1016/j.bmcl.2021.128254
ISSN: 0960-894X
PubMed: 34256118
WoS: 000684377000020
Scopus: 2-s2.0-85110319944
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IHTMTY - JOUR AU - Dukić-Stefanović, Sladjana AU - Lai, Thu Hang AU - Toussaint, Magali AU - Clauß, Oliver AU - Jevtić, Ivana AU - Penjišević, Jelena AU - Andrić, Deana AU - Ludwig, Friedrich-Alexander AU - Gündel, Daniel AU - Deuther-Conrad, Winnie AU - Kostić Rajačić, Slađana AU - Brust, Peter AU - Teodoro, Rodrigo PY - 2021 UR - https://cer.ihtm.bg.ac.rs/handle/123456789/4756 AB - Monoamine oxidases (MAOs) play a key role in the metabolism of major monoamine neurotransmitters. In particular, the upregulation of MAO-B in Parkinson's disease, Alzheimer's disease and cancer augmented the development of selective MAO-B inhibitors for diagnostic and therapeutic purposes, such as the anti-parkinsonian MAO-B irreversible binder L-deprenyl (Selegiline®). Herein we report on the synthesis of novel fluorinated indanone derivatives for PET imaging of MAO-B in the brain. Out of our series, the derivatives 6, 8, 9 and 13 are amongst the most affine and selective ligands for MAO-B reported so far. For the derivative 6-((3-fluorobenzyl)oxy)-2,3-dihydro-1H-inden-1-one (6) exhibiting an outstanding affinity (Ki MAO-B = 6 nM), an automated copper-mediated radiofluorination starting from the pinacol boronic ester 17 is described. An in vitro screening in different species revealed a MAO-B region-specific accumulation of [18F]6 in rats and piglets in comparison to L-[3H]deprenyl. The pre-clinical in vivo assessment of [18F]6 in mice demonstrated the potential of indanones to readily cross the blood–brain barrier. Nonetheless, parallel in vivo metabolism studies indicated the presence of blood–brain barrier metabolites, thus arguing for further structural modifications. With the matching analytical profiles of the radiometabolite analysis from the in vitro liver microsome studies and the in vivo evaluation, the structure's elucidation of the blood–brain barrier penetrant radiometabolites is possible and will serve as basis for the development of new indanone derivatives suitable for the PET imaging of MAO-B. PB - Elsevier T2 - Bioorganic and Medicinal Chemistry Letters T1 - In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain VL - 48 SP - 128254 DO - 10.1016/j.bmcl.2021.128254 ER -
@article{ author = "Dukić-Stefanović, Sladjana and Lai, Thu Hang and Toussaint, Magali and Clauß, Oliver and Jevtić, Ivana and Penjišević, Jelena and Andrić, Deana and Ludwig, Friedrich-Alexander and Gündel, Daniel and Deuther-Conrad, Winnie and Kostić Rajačić, Slađana and Brust, Peter and Teodoro, Rodrigo", year = "2021", abstract = "Monoamine oxidases (MAOs) play a key role in the metabolism of major monoamine neurotransmitters. In particular, the upregulation of MAO-B in Parkinson's disease, Alzheimer's disease and cancer augmented the development of selective MAO-B inhibitors for diagnostic and therapeutic purposes, such as the anti-parkinsonian MAO-B irreversible binder L-deprenyl (Selegiline®). Herein we report on the synthesis of novel fluorinated indanone derivatives for PET imaging of MAO-B in the brain. Out of our series, the derivatives 6, 8, 9 and 13 are amongst the most affine and selective ligands for MAO-B reported so far. For the derivative 6-((3-fluorobenzyl)oxy)-2,3-dihydro-1H-inden-1-one (6) exhibiting an outstanding affinity (Ki MAO-B = 6 nM), an automated copper-mediated radiofluorination starting from the pinacol boronic ester 17 is described. An in vitro screening in different species revealed a MAO-B region-specific accumulation of [18F]6 in rats and piglets in comparison to L-[3H]deprenyl. The pre-clinical in vivo assessment of [18F]6 in mice demonstrated the potential of indanones to readily cross the blood–brain barrier. Nonetheless, parallel in vivo metabolism studies indicated the presence of blood–brain barrier metabolites, thus arguing for further structural modifications. With the matching analytical profiles of the radiometabolite analysis from the in vitro liver microsome studies and the in vivo evaluation, the structure's elucidation of the blood–brain barrier penetrant radiometabolites is possible and will serve as basis for the development of new indanone derivatives suitable for the PET imaging of MAO-B.", publisher = "Elsevier", journal = "Bioorganic and Medicinal Chemistry Letters", title = "In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain", volume = "48", pages = "128254", doi = "10.1016/j.bmcl.2021.128254" }
Dukić-Stefanović, S., Lai, T. H., Toussaint, M., Clauß, O., Jevtić, I., Penjišević, J., Andrić, D., Ludwig, F., Gündel, D., Deuther-Conrad, W., Kostić Rajačić, S., Brust, P.,& Teodoro, R.. (2021). In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain. in Bioorganic and Medicinal Chemistry Letters Elsevier., 48, 128254. https://doi.org/10.1016/j.bmcl.2021.128254
Dukić-Stefanović S, Lai TH, Toussaint M, Clauß O, Jevtić I, Penjišević J, Andrić D, Ludwig F, Gündel D, Deuther-Conrad W, Kostić Rajačić S, Brust P, Teodoro R. In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain. in Bioorganic and Medicinal Chemistry Letters. 2021;48:128254. doi:10.1016/j.bmcl.2021.128254 .
Dukić-Stefanović, Sladjana, Lai, Thu Hang, Toussaint, Magali, Clauß, Oliver, Jevtić, Ivana, Penjišević, Jelena, Andrić, Deana, Ludwig, Friedrich-Alexander, Gündel, Daniel, Deuther-Conrad, Winnie, Kostić Rajačić, Slađana, Brust, Peter, Teodoro, Rodrigo, "In vitro and in vivo evaluation of fluorinated indanone derivatives as potential positron emission tomography agents for the imaging of monoamine oxidase B in the brain" in Bioorganic and Medicinal Chemistry Letters, 48 (2021):128254, https://doi.org/10.1016/j.bmcl.2021.128254 . .