In vitro antigenotoxic studies of Thai noni fruit juice (Morinda citrifolia L., Rubiacecae) against a chemotherapeutic agent, mitomycin c, in human lymphocytes

Planta Medica ◽  
2008 ◽  
Vol 74 (09) ◽  
Author(s):  
T Ratanavalachai ◽  
S Thitiorul ◽  
P Nandhasri
2017 ◽  
Vol 12 (7) ◽  
pp. 1934578X1701200
Author(s):  
Treetip Ratanavalachai ◽  
Sumon Thitiorul ◽  
Chalerm Jansom ◽  
Wantha Jenkhetkan ◽  
Arunporn Itharat

Bee pollen has been used as a food supplement and as a traditional medicine for thousands of years. Our study demonstrated that by in vitro sister chromatid exchange assay, Mimosa pudica crude bee pollen extract (0.005-5.0 μg/mL CE) from Chiangmai, Northern Thailand, increased genotoxicity in human lymphocytes at concentrations of 0.005 and 0.5 μg/mL by 20% and 24% respectively, compared to the RPMI control. Its defatted extract (DE) at 0.005-5.0 μg/mL increased the activities by 24–32% whereas the lipid extract (LE) at 0.00125 μg/mL but not at 0.0125–1.25 μg/mL increased the activities by 25%. Only CE at 5.0 μg/mL induced cytotoxicity. Pretreatments of CE, DE, and LE at 0.5, 5, and 0.00125 μg/mL induced antigenotoxicities against doxorubicin, a potent genotoxic chemotherapeutic agent by 24%, 28%, and 16%, respectively. Their protective mechanisms are feasibly involved with α-tocopherol and phenolic contents such as gallic acid and ferulic acid.


Author(s):  
Haziz Sina ◽  
Gado Dramane ◽  
Philippe Tchekounou ◽  
Mahoudo Fidèle Assogba ◽  
Kamirou Chabi-Sika ◽  
...  

2016 ◽  
Vol 2016 ◽  
pp. 1-9 ◽  
Author(s):  
Fernando Almeida-Souza ◽  
Noemi Nosomi Taniwaki ◽  
Ana Cláudia Fernandes Amaral ◽  
Celeste da Silva Freitas de Souza ◽  
Kátia da Silva Calabrese ◽  
...  

The search for new treatments against leishmaniasis has increased due to high frequency of drug resistance registered in endemics areas, side effects, and complications caused by coinfection with HIV.Morinda citrifoliaLinn., commonly known as Noni, has a rich chemical composition and various therapeutic effects have been described in the literature. Studies have shown the leishmanicidal activity ofM. citrifolia; however, its action on the parasite has not yet been elucidated. In this work, we analyzed leishmanicidal activity and ultrastructural changes inLeishmania infantumpromastigotes caused byM. citrifoliafruit juice treatment.M. citrifoliafruit extract showed a yield of 6.31% and high performance liquid chromatography identified phenolic and aromatic compounds as the major constituents. IC50values were 260.5 µg/mL for promastigotes and 201.3 µg/mL for intracellular amastigotes ofL. infantumtreated withM. citrifolia. Cytotoxicity assay with J774.G8 macrophages showed thatM. citrifoliafruit juice was not toxic up to 2 mg/mL. Transmission electron microscopy showed cytoplasmic vacuolization, lipid inclusion, increased exocytosis activity, and autophagosome-like vesicles inL. infantumpromastigotes treated withM. citrifoliafruit juice.M. citrifoliafruit juice was active againstL. infantumin thein vitromodel used here causing ultrastructural changes and has a future potential for treatment against leishmaniasis.


Mutagenesis ◽  
2013 ◽  
Vol 28 (4) ◽  
pp. 465-473 ◽  
Author(s):  
R. Scarpato ◽  
S. Castagna ◽  
R. Aliotta ◽  
A. Azzara ◽  
F. Ghetti ◽  
...  

Author(s):  
Aleksandra Marković ◽  
Jovana Tubić Vukajlović ◽  
Darko Grujičić ◽  
Marina Radović Jakovljević ◽  
Milan Stanković ◽  
...  

1997 ◽  
Vol 25 (3) ◽  
pp. 279-287 ◽  
Author(s):  
Benedikte Brogaard ◽  
Jergen Clausen

Oxidative stress is defined as an imbalance between prooxidants and antioxidants. There is a need for a simple in vitro method for evaluation of the effects of oxidative stress and the effects of antioxidants. In the present study, we used primary cultures of human lymphocytes exposed to either paraquat (PQ) or mitomycin C., two prooxidants generating two different types of free-radicals formed either by P450-reductase or by DT-diaphorase, respectively. The toxicity was measured by estimation of DT-diaphorase and glutathione peroxidase (GSH-Px) activity, and by estimation of the level of malondialdehyde (MDA) as a function of time and increasing doses of the two prooxidants. The enzyme activities were related to both total DNA content and total protein content of cellular homogenate. All estimations were made by exposing human lymphocytes to increasing concentrations (up to 100μM) of the two prooxidants. However, since cellular death occurred at concentrations above 60μM, only data for exposure to concentrations below 70μM are presented. When the enzyme activities were expressed per cellular unit (i.e. per gram DNA) 30μM mitomycin C induced a 30% increase in DT-diaphorase activity. Similarly, a dose-dependent increase (maximum 100% increase) in DT-diaphorase activity was found after exposure to PQ (up to 60μM). Similar data were obtained when data were related to the total protein. Only a minor increase (11%) in GSH-Px activity was induced by 50μM mitomycin C., whereas 20-70μM PQ induced a 41% increase in GSH-Px activity. Both prooxidants induced more than a doubling in the cellular MDA concentration. These findings demonstrate that both DT-diaphorase and GSH-Px are up-regulated during oxidative stress. However, sensitivity to prooxidant-induced stress seems to depend to some extent on the chemistry of the free-radicals generated. Thus, the single-electron pyridium cations generated by PQ seem to be more toxic than the single-electron semi-quinones generated by mitomycin C. The same cellular system was used to evaluate the effects of antioxidants. Quercetin, a naturally occuring flavone, and selenium (sodium selenite), which is an essential part of glutathione peroxidase, were selected. PQ-induced stress and exposure to 5μg/ml quercetin for 4 hours decreased the MDA level in the medium by 11% and in the cells by 33%. PQ-induced stress and exposure to 160μg/l selenium for 18 hours reduced MDA levels similarly, by 19% in the medium and 14% in the cells. Both antioxidants induced a 50% reduction in GSH-Px activity.


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