1.Cytotoxic Activity and Structure Activity Relationship of Ceramide Analogues in Caki-2 and HL-60 Cells.
Yong Jin KIM ; Eun Ae KIM ; Uy Dong SOHN ; Chul Bu YIM ; Chaeuk IM
The Korean Journal of Physiology and Pharmacology 2010;14(6):441-447
B13, a ceramide analogue, is a ceramidase inhibitor and induces apoptosis to give potent anticancer activity. A series of thiourea B13 analogues was evaluated for their in vitro cytotoxic activities against human renal cancer Caki-2 and leukemic cancer HL-60 in the MTT assay. Some compounds (12, 15, and 16) showed stronger cytotoxicity than B13 and C6-ceramide against both tumor cell lines, and compound (12) gave the most potent activity with IC50 values of 36 and 9 microM, respectively. Molecular modeling of thiourea B13 analogues was carried out by comparative molecular field analysis (CoMFA) and comparative molecular similarity indices analysis (CoMSIA). We obtained highly reliable and predictive CoMSIA models with cross-validated q2 values of 0.707 and 0.753 and CoMSIA contour maps to show the structural requirements for potent activity. These data suggest that the amide group of B13 could be replaced by thiourea, that the stereochemistry of 1,3-propandiol may not be essential for activity and that long alkyl chains increase cytotoxicity.
Apoptosis
;
Cell Line, Tumor
;
Ceramidases
;
Ceramides
;
HL-60 Cells
;
Humans
;
Inhibitory Concentration 50
;
Kidney Neoplasms
;
Models, Molecular
;
Structure-Activity Relationship
;
Thiourea
2.Cytotoxic Activity and Quantitative Structure Activity Relationships of Arylpropyl Sulfonamides.
Yu Jin HWANG ; Sang Min PARK ; Chul Bu YIM ; Chaeuk IM
The Korean Journal of Physiology and Pharmacology 2013;17(3):237-243
B13 is a ceramide analogue and apoptosis inducer with potent cytotoxic activity. A series of arylpropyl sulfonamide analogues of B13 were evaluated for their cytotoxicity using MTT assays in prostate cancer PC-3 and leukemia HL-60 cell lines. Some compounds (4, 9, 13, 14, 15, and 20) showed stronger activities than B13 in both tumor cell lines, and compound (15) gave the most potent activity with IC50 values of 29.2 and 20.7 microM, for PC-3and HL-60 cells, respectively. Three-dimensional quantitative structure-activity relationship (3D-QSAR) analysis was performed to build highly reliable and predictive CoMSIA models with cross-validated q2 values of 0.816 and 0.702, respectively. Our results suggest that long alkyl chains and a 1R, 2R configuration of the propyl group are important for the cytotoxic activities of arylpropyl sulfonamides. Moreover, the introduction of small hydrophobic groups in the phenyl ring and sulfonamide group could increase biological activity.
Apoptosis
;
Cell Line, Tumor
;
HL-60 Cells
;
Humans
;
Inhibitory Concentration 50
;
Leukemia
;
Prostatic Neoplasms
;
Quantitative Structure-Activity Relationship
;
Sulfonamides