| Literature DB >> 25750499 |
Beata Morak-Młodawska1, Krystian Pluta1, Michał Zimecki2, Małgorzata Jeleń1, Jolanta Artym2, Maja Kocięba2.
Abstract
A new type of tricyclic azaphenothiazines-1,8-diazaphenothiazines-was obtained in the reaction of 2,3- and 3,4-disubstituted pyridines. The reaction ran as the Smiles rearrangement. The 1,8-diazaphenothiazine system was determined using NOE experiment and 2D NMR spectra (COSY, HSQC, HMBC). 10H-1,8-diazaphenothiazine was transformed into 10-derivatives with alkyl, aminoalkyl, amidoalkyl, sulfonamidoalkyl, and nitrogen half-mustard groups. The compounds were tested for their effects on phytohemagglutinin A-induced proliferative response of human peripheral blood mononuclear cells (PBMC) and lipopolysaccharide-induced tumor necrosis factor alpha production by human whole blood cultures. The compounds exhibited differential, dose-dependent inhibitory activities in these tests. All the compounds were low toxic against PBMC. The compounds showing the highest antiproliferative activity strongly inhibited the growth of leukemia L-1210 and colon cancer SW-948 cell lines, similarly as cisplatin, a reference drug.Entities:
Keywords: Anticancer activity; Antiproliferative activity; Diazaphenothiazines; Phenothiazines; Thiazine ring formation
Year: 2014 PMID: 25750499 PMCID: PMC4344556 DOI: 10.1007/s00044-014-1220-9
Source DB: PubMed Journal: Med Chem Res ISSN: 1054-2523 Impact factor: 1.965
Scheme 1Synthesis if 10H-diazaphenothiazine 3 from disubstituted pyridines 2 and 3 and dipyridyl sulfide 5
Scheme 2The NMR experiments for compound 7: a NOE and COSY, b HSQC and HMBC
Scheme 3Synthesis of 10-dialkylaminoalkyl-1,8-diazaphenothiazines 7–19
Scheme 4Synthesis of 10-phthalimidopropyl-1,8-diazaphenothiazine 20 and transformations to the acetamidopropyl, methanesulfonamidopropyl, and chloroethylureidopropyl derivatives 22–24
Activities of 10-substituted 1,8-diazaphenothiazines in selected immunological assays
| No. | Cytotoxicity against PBMC | Inhibition of PHA-induced PBMC proliferation | TNF-α inhibition | |||
|---|---|---|---|---|---|---|
| 10 µg/ml | 50 µg/ml | 1 µg/ml | 10 µg/ml | 50 µg/ml | 5 µg/ml | |
|
| 6.7 | 21.4 | 5.0 | 74.4 | 78.6 | 50.4 |
|
| 0.8 | 1.7 | 9.6 | 22.9 | 45.6 | 76.4 |
|
| −0.3 | −6.0 | 19.0 | 26.0 | 55.6 | 89.3 |
|
| −1.1 | 8.8 | 9.3 | 24.4 | 41.2 | 87.4 |
|
| 2.0 | 2.6 | 13.6 | 26.8 | 45.5 | 85.9 |
|
| 6.6 | 8.1 | 4.1 | 5.2 | 26.2 | 54.8 |
|
| −3.6 | 15.0 | 5.7 | 20.9 | 81.1 | 86.7 |
|
| −0.7 | 11.9 | 1.4 | 19.2 | 59.4 | 89.1 |
|
| 1.3 | 12.1 | −6.8 | −5.4 | 59.6 | 75.0 |
|
| 0.9 | 10.0 | −0.9 | −2.9 | 47.0 | 85.6 |
|
| 1.5 | 7.3 | −0.9 | −0.5 | 18.0 | 47.6 |
|
| −1.4 | 18.7 | −3.4 | 5.1 | 67.4 | 73.1 |
|
| −4.5 | 4.8 | −0.9 | 7.0 | 18.2 | 46.1 |
|
| −2.0 | −0.1 | 3.6 | 12.5 | 42.2 | 76.0 |
|
| −5.0 | 6.7 | 8.9 | 16.2 | 62.5 | 5.8 |
|
| −0.9 | 12.5 | 9.4 | 19.3 | 50.2 | 48.6 |
|
| −1.6 | 4.5 | 8.4 | 12.4 | 46.8 | 7.3 |
The table shows the degree of cytotoxicity against PBMC, effects on PHA-induced proliferative response of human PBMC and LPS-induced TNF-α production by these cells. The results are given in percentage inhibition as compared with appropriate DMSO controls. Positive values denote inhibition, negative stimulation
Fig. 1The anticancer activities of selected compounds at concentrations of 0.1–50 µg/ml. L-1210 and SW-948 cell lines were used in the study. The results are presented as the mean optical density ± SE (*versus DMSO; #versus Control, p < 0.001)
Anticancer activity (IC50) of selected compounds 4 and 13 and cisplatin as a reference drug against cancer lines SW-948 and L-1210
| Compound | IC50 (μg/ml) | |
|---|---|---|
| SW-948 | L-1210 | |
|
| 5.47 | 7.41 |
|
| 14.95 | 6.03 |
|
| 5.52 | 2.13 |