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Design, synthesis and biological evaluation of a new series of arylidene indanones as small molecules for targeted therapy of non-small cell lung carcinoma and prostate cancer
被引:10
作者:
Altintop, Mehlika Dilek
[1
]
Ozdemir, Ahmet
[1
]
Temel, Halide Edip
[2
]
Cevizlidere, Bahar Demir
[3
,4
]
Sever, Belgin
[1
]
Kaplancikli, Zafer Asim
[1
]
Ciftci, Gulsen Akalin
[2
,5
]
机构:
[1] Anadolu Univ, Fac Pharm, Dept Pharmaceut Chem, TR-26470 Eskisehir, Turkey
[2] Anadolu Univ, Dept Biochem, Fac Pharm, TR-26470 Eskisehir, Turkey
[3] Eskisehir Osmangazi Univ, Cellular Therapy & Stem Cell Prod Applicat & Res, TR-26480 Eskisehir, Turkey
[4] Eskisehir Osmangazi Univ, Inst Hlth Sci, Dept Stem Cell, TR-26480 Eskisehir, Turkey
[5] Anadolu Univ, Grad Sch Hlth Sci, TR-26470 Eskisehir, Turkey
关键词:
Apoptosis;
Arylidene indanones;
Cathepsins;
Non -small cell lung carcinoma;
Prostate cancer;
CATHEPSIN-D;
ANTICANCER ACTIVITY;
CHALCONE DERIVATIVES;
CYSTEINE CATHEPSINS;
APOPTOSIS;
CALCIUM;
MITOCHONDRIA;
PROGRESSION;
METASTASIS;
MANAGEMENT;
D O I:
10.1016/j.ejmech.2022.114851
中图分类号:
R914 [药物化学];
学科分类号:
100701 ;
摘要:
In an attempt to identify small molecules for targeted therapy of non-small cell lung carcinoma (NSCLC) and prostate cancer (PCa), new arylidene indanones (1-10) were synthesized via the Claisen-Schmidt condensation of 5,6-methylenedioxy-1-indanone with p-substituted benzaldehyde. Compounds 1-10 were assessed for their cytotoxic effects on human lung adenocarcinoma (A549) and human pancreatic ductal carcinoma (PANC-1) cells as well as human normal lung fibroblast (CCD-19Lu) and human normal pancreatic ductal epithelial (hTERT-HPNE) cells. Among them, compounds 2, 4 and 10 were more effective on A549 and PANC-1 cells than cisplatin. Compounds 1 and 9 also showed more potent cytotoxic activity towards PANC-1 cells than cisplatin. In vitro assays were performed to assess their effects on DNA synthesis, apoptosis, caspase-3, mitochondrial membrane potential, intracellular calcium levels, morphological changes in cancer cells. Furthermore, all compounds were investigated for their inhibitory effects on cathepsin L (CatL) and cathepsin D (CatD). Compounds 2 and 4 exerted potent anti-NSCLC action through caspase-independent apoptosis induced by an increase in intracellular calcium level and correspondingly the disruption of the Delta psi m. These compounds also caused apoptotic morphological alterations in A549 cells. Compound 4 also inhibited both cathepsins but its inhibitory potency on CatL was more significant. Based on in vitro mechanistic assays, compound 4 was identified as a promising anticancer agent for targeted therapy of NSCLC. On the other hand, the marked anti-PCa activity of compound 1 mediated by apoptotic cell death is also noteworthy, but further enzymatic assays are required to elucidate its main mechanism of action.
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