Open Access
Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish
Тип публикации: Journal Article
Дата публикации: 2024-07-03
SCImago Q1
WOS Q2
БС1
SJR: 0.805
CiteScore: 7.8
Impact factor: 5.2
ISSN: 24701343
PubMed ID:
39035947
Краткое описание
Phenothiazines (PTZ) are antipsychotics known to modulate a variety of neurotransmitter activities that include dopaminergic and cholinergic signaling and have been identified as potential anticancer agents in vitro. However, it is important to also test whether a highly cytotoxic, repurposed, or novel PTZ has low toxicity and neuromodulatory activity in vivo using vertebrate model organisms, such as zebrafish. In this study, we synthesized novel phenothiazines and screened them in vitro in liver cancer and in vivo in zebrafish embryos/larvae. The syntheses of several intermediate PTZ 10-yl acyl chlorides were followed by elemental analysis and determination of 1H NMR and 13C NMR mass (ESI+) spectra of a large number of novel PTZ 10-carboxamides. Cytotoxicities of 28 PTZ derivatives (1–28) screened against Hep3B and SkHep1 liver cancer cell lines revealed five intermediate and five novel leads along with trifluoperazine (TFP), prochlorperazine (PCP), and perphenazine, which are relatively more cytotoxic than the basic PTZ core. Overall, the derivatives were more cytotoxic to Hep3B than SkHep1 cells. Moreover, in silico target screening identified cholinesterases as some of the commonest targets of the screened phenothiazines. Interestingly, molecular docking studies with acetylcholinesterase (AChE) and butyrylcholinesterase proteins showed that the most cytotoxic compounds 1, 3, PCP, and TFP behaved similar to Huprin W in their amino acid interactions with the AChE protein. The highly cytotoxic intermediate PTZ derivative 1 exhibited a relatively lower toxicity profile than those of 2 and 3 during the zebrafish development. It also modulated in vivo the cholinesterase activity in a dose-dependent manner while significantly increasing the total cholinesterase activity and/or ACHE mRNA levels, independent of the liver cancer cell type. Our screen also identified novel phenothiazines, i.e., 8 and 10, with significant cytotoxic and cholinesterase modulatory effects in liver cancer cells; yet both compounds had low levels of toxicity in zebrafish. Moreover, they modulated the cholinesterase activity or expression of ACHE in a cancer cell line-specific manner, and compound 10 significantly inhibited the cholinesterase activity in zebrafish. Accordingly, using a successful combination of in silico, in vitro, and in vivo approaches, we identified several lead anticancer and cholinesterase modulatory PTZ derivatives for future research.
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Murat Kisla M. et al. Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish // ACS Omega. 2024. Vol. 9. No. 28. pp. 30594-30614.
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Murat Kisla M., Yaman M., Zengin-Karadayi F., Korkmaz B., Korkmaz B., Bayazeid O., Kumar A., Peravali R., Gunes D., Güneş D., Tiryaki R. S., Gelinci E., Cakan-Akdogan G., Ates-Alagoz Z., KONU O. Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish // ACS Omega. 2024. Vol. 9. No. 28. pp. 30594-30614.
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TY - JOUR
DO - 10.1021/acsomega.3c06532
UR - https://pubs.acs.org/doi/10.1021/acsomega.3c06532
TI - Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish
T2 - ACS Omega
AU - Murat Kisla, Mehmet
AU - Yaman, Murat
AU - Zengin-Karadayi, Fikriye
AU - Korkmaz, Busra
AU - Korkmaz, Büşra
AU - Bayazeid, Omer
AU - Kumar, Amrish
AU - Peravali, Ravindra
AU - Gunes, Damla
AU - Güneş, Damla
AU - Tiryaki, Rafed Said
AU - Gelinci, Emine
AU - Cakan-Akdogan, Gulcin
AU - Ates-Alagoz, Zeynep
AU - KONU, OZLEN
PY - 2024
DA - 2024/07/03
PB - American Chemical Society (ACS)
SP - 30594-30614
IS - 28
VL - 9
PMID - 39035947
SN - 2470-1343
ER -
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@article{2024_Murat Kisla,
author = {Mehmet Murat Kisla and Murat Yaman and Fikriye Zengin-Karadayi and Busra Korkmaz and Büşra Korkmaz and Omer Bayazeid and Amrish Kumar and Ravindra Peravali and Damla Gunes and Damla Güneş and Rafed Said Tiryaki and Emine Gelinci and Gulcin Cakan-Akdogan and Zeynep Ates-Alagoz and OZLEN KONU},
title = {Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish},
journal = {ACS Omega},
year = {2024},
volume = {9},
publisher = {American Chemical Society (ACS)},
month = {jul},
url = {https://pubs.acs.org/doi/10.1021/acsomega.3c06532},
number = {28},
pages = {30594--30614},
doi = {10.1021/acsomega.3c06532}
}
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Murat Kisla, Mehmet, et al. “Synthesis and Structure of Novel Phenothiazine Derivatives, and Compound Prioritization via In Silico Target Search and Screening for Cytotoxic and Cholinesterase Modulatory Activities in Liver Cancer Cells and In Vivo in Zebrafish.” ACS Omega, vol. 9, no. 28, Jul. 2024, pp. 30594-30614. https://pubs.acs.org/doi/10.1021/acsomega.3c06532.
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