| Literature DB >> 24815070 |
Bing Cun Cui1, Il Yoon2, Jia Zhu Li3, Woo Kyoung Lee4, Young Key Shim5.
Abstract
A series of novel purpurinimides with long wavelength absorption were designed and synthesized to develop novel and potential photosensitizers. These compounds were investigated through reduction, oxidation, rearrangement reaction and amidation reactions ofEntities:
Mesh:
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Year: 2014 PMID: 24815070 PMCID: PMC4057721 DOI: 10.3390/ijms15058091
Source DB: PubMed Journal: Int J Mol Sci ISSN: 1422-0067 Impact factor: 5.923
Scheme 1.Synthesis of purpurin-18-N-aminoimides. Reagents and conditions. (a) 5% H2SO4/methanol, room temperature (rt); (b) (i) Zn(OAc)2/methanol, (ii) H2, Pd/C, tetrahydrofuran (THF), (iii) trifluoroacetic acid (TFA); (c) KOH/1-propanol/air, rt; (d) corresponding amine, toluene, reflux; and (e) Ti(NO3)3/methanol, rt.
Figure 1.The comparative 1H NMR spectra (CDCl3, 500 Hz) in the region of δ 4.0–10.0 ppm of purpurinimides 4a, 4e, 7a and 7e.
Figure 2.Electronic absorption spectra of purpurinimides for (a) 3, 4a–4e; and (b) 6, 7a–7e in CH2Cl2.
Absorption properties of the purpurinimides (3, 4a–4e, 6, 7a–7e) in CH2Cl2.
| Compound | Absorption λmax (nm) (log ɛ) | |||
|---|---|---|---|---|
|
| ||||
| Soret | ΔSoret (Δɛ) | Qy | ΔQy (Δɛ) | |
| 410.8 (0.91) | 0 | 686.7 (0.31) | 0 | |
| 417.3 (0.92) | 6.5 (0.01) | 695.8 (0.29) | 9.1 (−0.02) | |
| 417.4 (0.93) | 6.6 (0.02) | 696.4 (0.28) | 9.7 (−0.03) | |
| 418.3 (0.91) | 7.5 (0) | 697.5 (0.27) | 10.8 (−0.04) | |
| 417.3 (0.91) | 6.5 (0) | 694.9 (0.26) | 8.2 (−0.05) | |
| 417.4 (0.92) | 6.6 (0.01) | 695.2 (0.25) | 8.5 (−0.06) | |
| 411.5 (1.16) | 0 | 690.3 (0.33) | 0 | |
| 417.4 (1.19) | 5.9 (0.03) | 700.1 (0.36) | 9.8 (0.03) | |
| 417.2 (1.19) | 5.7 (0.03) | 699.6 (0.31) | 9.3 (−0.02) | |
| 418.1 (1.21) | 6.6 (0.05) | 703.6 (0.35) | 13.3 (0.02) | |
| 417.5 (1.21) | 6.0 (0.05) | 698.9 (0.35) | 8.6 (0.02) | |
| 417.4 (1.17) | 5.9 (0.01) | 698.8 (0.37) | 8.5 (0.04) | |
ΔSoret, ΔQy and Δɛ represent the change of the Soret band, Qy band and absorbance intensity, respectively, between the substituted purpurinimides and corresponding starting materials.
Figure 3.Fluorescence spectra of purpurinimides 4a–4c and 7a–7c (1.0 × 10−4 M) in dimethylsulfoxide (DMSO).
Figure 4.Comparative in vitro dark cytotoxicity and phototoxicity results for 4a–4c and 7a–7c at various drug doses (1–20 μM) against A549 cell lines by MTT (3-(4,5-dimethylthiazole-2-yl)-2,5-biphenyl tetrazolium bromide) assay at 12 h incubation after photoirradiation (670–710 nm, total light dose 2 J/cm2 for 15 min); (a) 4a–4c; and (b) 7a–7c. The data are expressed as mean of three experiments.
IC50 values of the purpurinimides against A549 cell lines at 12 h incubation time after photoirradiation.
| Compound | 4a | 4b | 4c | 7a | 7b | 7c |
|---|---|---|---|---|---|---|
| IC50
| 0.28 | 0.37 | 0.40 | 0.95 | 1.27 | 0.70 |
IC50 presents the half maximal (50%) inhibitory concentration of the compound.
Figure 5.Comparative absorbance decay (%) of 1,3-diphenylisobenzofuran (DPBF) (50 μM in DMSO) at 418 nm after photoirradiation (total light dose 2 J/cm2, irradiation time 15 min) in the absence (control) and presence of 1 μM of MB (methylene blue), 4a–4c and 7a–7c. The data are expressed as mean of three experiments.
Hydrophobicity parameters (log P) of the purpurinimides calculated by means of computer software ACD/Labs (version 12.01).
| Compound | Log |
|---|---|
| 6.94 ± 1.62 | |
| 8.00 ± 1.62 | |
| 7.32 ± 1.62 | |
| 6.89 ± 1.63 | |
| 6.88 ± 1.62 | |
| 5.80 ± 1.64 | |
| 6.87 ± 1.64 | |
| 6.19 ± 1.64 | |
| 5.76 ± 1.65 | |
| 5.75 ± 1.64 |