Rapamycin, a potent antifungal antibiotic, was approved as immunosuppressant, and lately its derivatives have been developed into mTOR targeting anticancer drugs. Structure modification was performed at the C-42 position of rapamycin, and a novel series of rapamycin triazole hybrids (4a-d, 5a-e, 8a-e, and 9a-e) was facilely synthesized via Huisgen's reaction. The anticancer activity of these compounds was evaluated against the Caski, H1299, MGC-803, and H460 human cancer cell lines. Some of the derivatives (8a-e, 9a-e) appeared to have stronger activity than that of rapamycin; however, 4a-d and 5a-e failed to show potential anticancer activity. Compound 9e with a (2,4-dichlorophenylamino)methyl moiety on the triazole ring was the most active anticancer compound, which showed IC50 values of 6.05 (Caski), 7.89 (H1299), 25.88 (MGC-803), and 8.60 μM (H460). In addition, research on the mechanism showed that 9e was able to cause cell morphological changes and to induce apoptosis in the Caski cell line. Most importantly, 9e can decrease the phosphorylation of mTOR and of its downstream key proteins, S6 and P70S6K1, indicating that 9e can effectively inhibit the mTOR signaling pathway. Thus, it may have the potential to become a new mTOR inhibitor against various cancers.
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http://dx.doi.org/10.1002/ardp.201500457 | DOI Listing |
Drug Dev Res
May 2024
Department of Biology and Biotechnology, Faculty of Science, The Hashemite University, Zarqa, Jordan.
Current chemotherapeutic agents have several limitations, including lack of selectivity, the development of undesirable side effects, and chemoresistance. As a result, there is an unmet need for the development of novel small molecules with minimal side effects and the ability to specifically target tumor cells. A new series of 3-phenoxybenzoic acid derivatives, including 1,3,4-oxadiazole derivatives (4a-d) and benzamides derivatives (5a-e) were synthesized; their chemical structures were confirmed by Fourier-transform infrared spectroscopy, H nuclear magnetic resonance (NMR), C NMR, and mass spectra; and various physicochemical properties were determined.
View Article and Find Full Text PDFArch Pharm (Weinheim)
June 2016
Fujian Provincial Key Laboratory of Screening for Novel Microbial Products, Fujian Institute of Microbiology, Changshang District, Fuzhou, P. R. China.
Rapamycin, a potent antifungal antibiotic, was approved as immunosuppressant, and lately its derivatives have been developed into mTOR targeting anticancer drugs. Structure modification was performed at the C-42 position of rapamycin, and a novel series of rapamycin triazole hybrids (4a-d, 5a-e, 8a-e, and 9a-e) was facilely synthesized via Huisgen's reaction. The anticancer activity of these compounds was evaluated against the Caski, H1299, MGC-803, and H460 human cancer cell lines.
View Article and Find Full Text PDFEur J Med Chem
February 2006
Departamento de Antibióticos, Universidade Federal de Pernambuco, 50.670-901 Recife, PE, Brazil.
Six new 4-amino-5-cyano-2,6-diarylpyrimidines 5a-h has been synthesized in a facile manner by reacting the appropriate arylamidines 4a-d with bisnitriles 3a-e. Reduction of the nitro group of 5a-e using Pd in ethyl acetate furnished 6a-e in good yields. Reaction of 6a-e individually with phthalic anhydride yielded 7a-e in good to excellent yields.
View Article and Find Full Text PDFJ Nat Prod
December 2003
K-Laboratories for Intelligent Medical Remote Services, 2266-22 Anagahora, Shimoshidami, Moriyama-ku, Nagoya 463-0003, Japan.
A new triterpene acid, lucidenic acid P (1a), and two new triterpene acid methyl esters, methyl lucidenates P (1b) and Q (2b), were isolated and characterized from the fruiting body of the fungus Ganoderma lucidum. Their structures were elucidated on the basis of spectroscopic methods. In addition, eight known triterpene acids, lucidenic acids A (3a), C (4a), D(2) (5a), E(2) (6a), and F (7a) and ganoderic acids E (9a), F (10a), and T-Q (11a), and six known triterpene acid methyl esters, methyl lucidenates A (3b), D(2) (5b), E(2) (6b), F (7b), and L (8b) and methyl ganoderate F (10b), were isolated and identified from the fungus.
View Article and Find Full Text PDFArch Pharm (Weinheim)
January 1989
5'-O-[N-(Aminoacyl or isobutyryl)sulfamoyl]uridines 4a-e, 5a-e and 5'-O-[N-(isopropyl)sulfamoyl]cytidines 7-9 have been synthesized and tested against herpes simplex virus type 2. Condensation of 2',3'-O-isopropylidene-5'-O-sulfamoyluridine with the N-hydroxysuccinimide esters of Boc-Gly, Boc-L-Ala, Boc-D-Ala and Boc-L-Phe, gave 4a-d which, on deprotection under acidic conditions, provided 5a-d. A similar condensation of 2',3'-di-O-acetyl-5'-O-sulfamoyluridine with the N-hydroxysuccinimide ester of isobutyric acid afforded 4e which on deacylation led to 5e.
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