Synthesis and Antiproliferative Activity of Triphenylphosphonium Derivatives of Natural Allylpolyalkoxybenzenes
2022-01-24
SCID: 54.1/4kvs4q27
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MTT and Click-iT-EdU assaysallylpolyalkoxybenzenesantiproliferative activitylinker length (propyl linker)triphenylphosphonium (TPP) conjugates
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Abstract (AI)
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.
Key Findings
1
Addition of a polyalkoxybenzene moiety to TPP conjugates significantly potentiated inhibition of cell growth and de novo DNA synthesis in multiple human cancer cell lines (HCT-116, A375, PC-3, T-47D).
2
Identified a three-carbon (propyl) linker as favorable for selective cancer cell growth inhibition.
3
Propyl-TPP salt alone is cytotoxic at low micromolar concentrations.
4
Synthesized TPP-conjugated derivatives of natural allylpolyalkoxybenzenes using aliphatic linkers of 3, 6, 7, and 8 atoms.
5
TPP–polyalkoxybenzene conjugates that inhibited human cancer cells did not produce developmental abnormalities in a sea urchin embryo model.
Research Object
Triphenylphosphonium (TPP) conjugates of natural allylpolyalkoxybenzenes (with aliphatic linkers of 3, 6, 7, and 8 atoms) and related allylbenzenes/alkyl-TPP salts evaluated in biological assays
Research Subject
Antiproliferative activity and effects on de novo DNA synthesis (cytotoxicity, cancer cell growth inhibition, and linker-length and pharmacophore contributions) of these TPP–allylpolyalkoxybenzene conjugates across human cancer cell lines and in a sea urchin embryo model
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2022-01-24
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