Open Access
Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes
Dmitry V Tsyganov
1
,
Alexander V. Samet
1
,
Eugenia A Silyanova
1
,
Vladimir I Ushkarov
1
,
Alexander E Varakutin
1
,
Natalia B Chernysheva
1
,
Roman N Chuprov Netochin
2
,
Andrey A Khomutov
2
,
Anna S Volkova
2
,
Sergey Leonov
2
,
Marina Semenova
3
,
Victor Semenov
1
Publication type: Journal Article
Publication date: 2022-01-24
scimago Q1
wos Q2
SJR: 0.773
CiteScore: 7.1
Impact factor: 4.3
ISSN: 24701343
PubMed ID:
35128247
General Chemistry
General Chemical Engineering
Abstract
Derivatives of natural allylpolyalkoxybenzenes conjugated to triphenylphosphonium (TPP) cations by aliphatic linkers of three, six, seven, and eight atoms were synthesized to examine the role of the polyalkoxybenzene pharmacophore, TPP fragment, and linker length in antiproliferative activities. The key synthetic procedures included (i) hydroboration-oxidation of apiol, dillapiol, myristicin, and allyltetramethoxybenzene; (ii) acylation of polyalkoxybenzyl alcohols or amines; and (iii) condensation of polyalkoxybenzaldehydes followed by hydrogenation and cyclopropyl-homoallyl rearrangement. The targeted TPP conjugates as well as the starting allylbenzenes, the corresponding alkylpolyalkoxybenzenes, and the respective alkyl-TPP salts were evaluated for cytotoxicity in a panel of human cancer cell lines using MTT and Click-iT-EdU assays and in a sea urchin embryo model. The linker of three carbon atoms was identified as favorable for selective cancer cell growth inhibition. Although the propyl-TPP salt was cytotoxic at low micromolar concentrations, the introduction of a polyalkoxybenzene moiety significantly potentiated inhibition of both cell growth and de novo DNA synthesis in several human cancer cell lines, HST-116 colon cancer, A375 melanoma, PC-3 prostate cancer, and T-47D breast carcinoma cells, while it failed to produce any developmental abnormalities in the sea urchin embryos.
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14
Total citations:
14
Citations from 2025:
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(14.29%)
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Tsyganov D. V. et al. Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes // ACS Omega. 2022. Vol. 7. No. 4. pp. 3369-3383.
GOST all authors (up to 50)
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Tsyganov D. V., Samet A. V., Silyanova E. A., Ushkarov V. I., Varakutin A. E., Chernysheva N. B., Chuprov Netochin R. N., Khomutov A. A., Volkova A. S., Leonov S., Semenova M., Semenov V. Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes // ACS Omega. 2022. Vol. 7. No. 4. pp. 3369-3383.
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RIS
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TY - JOUR
DO - 10.1021/acsomega.1c05515
UR - https://doi.org/10.1021/acsomega.1c05515
TI - Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes
T2 - ACS Omega
AU - Tsyganov, Dmitry V
AU - Samet, Alexander V.
AU - Silyanova, Eugenia A
AU - Ushkarov, Vladimir I
AU - Varakutin, Alexander E
AU - Chernysheva, Natalia B
AU - Chuprov Netochin, Roman N
AU - Khomutov, Andrey A
AU - Volkova, Anna S
AU - Leonov, Sergey
AU - Semenova, Marina
AU - Semenov, Victor
PY - 2022
DA - 2022/01/24
PB - American Chemical Society (ACS)
SP - 3369-3383
IS - 4
VL - 7
PMID - 35128247
SN - 2470-1343
ER -
Cite this
BibTex (up to 50 authors)
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@article{2022_Tsyganov,
author = {Dmitry V Tsyganov and Alexander V. Samet and Eugenia A Silyanova and Vladimir I Ushkarov and Alexander E Varakutin and Natalia B Chernysheva and Roman N Chuprov Netochin and Andrey A Khomutov and Anna S Volkova and Sergey Leonov and Marina Semenova and Victor Semenov},
title = {Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes},
journal = {ACS Omega},
year = {2022},
volume = {7},
publisher = {American Chemical Society (ACS)},
month = {jan},
url = {https://doi.org/10.1021/acsomega.1c05515},
number = {4},
pages = {3369--3383},
doi = {10.1021/acsomega.1c05515}
}
Cite this
MLA
Copy
Tsyganov, Dmitry V., et al. “Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes.” ACS Omega, vol. 7, no. 4, Jan. 2022, pp. 3369-3383. https://doi.org/10.1021/acsomega.1c05515.