Synthesis, antioxidant and antitumoral activity of new 5′-arylchalcogenyl-3′-N-(E)-feruloyl-3′, 5′-dideoxy-amino-thymidine (AFAT) derivatives

被引:4
作者
Leal, Julliano G. [1 ]
Piccoli, Bruna Candia [2 ]
Oliveira, Claudia Sirlene [2 ]
da Silva, Fernanda D'Avila [2 ]
Omage, Folorunsho Bright [2 ]
da Rocha, Joao Batista Teixeira [2 ]
Sonego, Mariana Souza [3 ]
Segatto, Natalia Vieira [3 ]
Seixas, Fabiana Kommling [3 ]
Collares, Tiago Veiras [3 ]
da Silva, Rafael Santos [1 ]
Sarturi, Joelma Menegazzi [1 ]
Dornelles, Luciano [1 ]
Faustino, Maria Amparo F. [4 ]
Rodrigues, Oscar E. D. [1 ]
机构
[1] Univ Fed Santa Maria, Dept Chem, LabSelen NanoBio, BR-97105900 Santa Maria, RS, Brazil
[2] Univ Fed Santa Maria, Dept Biochem & Mol Biol, Santa Maria, RS, Brazil
[3] Univ Fed Pelotas, Technol Dev Ctr, Canc Biotechnol Lab, Pelotas, RS, Brazil
[4] Univ Aveiro, Dept Chem, LAQV REQUIMTE, P-3810193 Aveiro, Portugal
关键词
D O I
10.1039/d2nj03487e
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The synthesis of a new class of 5 '-arylchalcogenyl-3 '-N-(E)-feruloyl-3 '-amino-3 '-deoxythymidine (AFAT) derivatives is disclosed. The compounds were obtained in good yields by an amidation reaction employing soft conditions. Both antitumoral activity against bladder carcinoma cells T24 and the antioxidant effect of the new derivatives were assessed. The results obtained demonstrated a notable inhibition of TBARS production and the DPPH scavenging activity compared with the commercial standards or the precursor building blocks. Additionally, the tellurium AFAT derivatives showed prominent antiproliferative activities. The in vivo studies revealed that the mice group treated with AFAT derivatives kept a normal healthy condition after 1 week of treatment and no kidney or liver toxicity was observed in the in vivo biochemical assays. The in silico evaluation corroborated the experimental results and demonstrated a prominent ability of these compounds to be employed as multitarget drugs.
引用
收藏
页码:22306 / 22313
页数:8
相关论文
共 57 条
[1]  
Adeyemi O. S., 2019, OPEN BIOCH J, V13, P13, DOI [10.2174, DOI 10.2174/1874091X01913010013]
[2]   Protective effects of ferulic acid and related polyphenols against glyoxal- or methylglyoxal-induced cytotoxicity and oxidative stress in isolated rat hepatocytes [J].
Al Maruf, Abdullah ;
Lip, HoYin ;
Wong, Horace ;
O'Brien, Peter J. .
CHEMICO-BIOLOGICAL INTERACTIONS, 2015, 234 :96-104
[3]   Antioxidative potential of ferulic acid phenoxyl radical [J].
Amic, Ana ;
Markovic, Zoran ;
Markovic, Jasmina M. Dimitric ;
Milenkovic, Dejan ;
Stepanic, Visnja .
PHYTOCHEMISTRY, 2020, 170
[4]   Antioxidant effects of phenolic rye (Secale cereale L.) extracts, monomeric hydroxycinnamates, and ferulic acid dehydrodimers on human low-density lipoproteins [J].
Andreasen, MF ;
Landbo, AK ;
Christensen, LP ;
Hansen, Å ;
Meyer, AS .
JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2001, 49 (08) :4090-4096
[5]   Effects of alkylthio groups on phase transitions of organic molecules and liquid crystals: a comparative study with alkyl and alkoxy groups [J].
Arakawa, Yuki ;
Ishida, Yuko ;
Shiba, Takuma ;
Igawa, Kazunobu ;
Sasaki, Shunsuke ;
Tsuji, Hideto .
CRYSTENGCOMM, 2022, 24 (10) :1877-1890
[6]  
Barth Hlasiwetz., 1866, Liebigs Annalen der Chem, V138, P61
[7]   CLADRIBINE (2-CHLORODEOXYADENOSINE) [J].
BEUTLER, E .
LANCET, 1992, 340 (8825) :952-956
[8]  
Bianchi M. de L. P., 1999, Revista de Nutricao, V12, P123, DOI 10.1590/S1415-52731999000200001
[9]   Neuropharmacology of Organoselenium Compounds in Mental Disorders and Degenerative Diseases [J].
Birmann, Paloma T. ;
Casaril, Angela M. ;
Abenante, Laura ;
Penteado, Filipe ;
Bruning, Cesar A. ;
Savegnago, Lucielli ;
Lenardao, Eder J. .
CURRENT MEDICINAL CHEMISTRY, 2023, 30 (21) :2357-2395
[10]   Synthesis of new chiral aliphatic amino diselenides and their application as catalysts for the enantioselective addition of diethylzinc to aldehydes [J].
Braga, AL ;
Paixao, MW ;
LUdtke, DS ;
Silveira, CC ;
Rodrigues, OED .
ORGANIC LETTERS, 2003, 5 (15) :2635-2638