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Annals of Hepatology MORINGA OLEIFERA LEAF AQUEOUS EXTRACT IMPROVES SURVIVAL IN A LIVER CANCER MODEL ...
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Vol. 30. Issue S2.
Abstracts of the 2025 Annual Meeting of the ALEH
(September 2025)
Vol. 30. Issue S2.
Abstracts of the 2025 Annual Meeting of the ALEH
(September 2025)
#142
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MORINGA OLEIFERA LEAF AQUEOUS EXTRACT IMPROVES SURVIVAL IN A LIVER CANCER MODEL IN WISTAR RATS
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Laura Verónica Sánchez Orozco1, Jaime Sánchez Meza1, Marina Campos Valdez2, Amador Campos Valdez3, José Alfredo Rosales Domínguez1, Juliana Marisol Godínez Rubí4, Sarai Citlalic Rodríguez Reyes5, Erika Martínez López5, Carmen Magdalena Gurrola Díaz1, Adriana María Salazar Montes1, Martha Eloísa Ramos Marquez1, Guillermo Moisés Zúñiga González6, Leticia Casas Godoy3
1 Instituto de Investigación en Enfermedades Crónico Degenerativas. Centro Universitario de Ciencias de la Salud. Universidad de Guadalajara, México.
2 Instituto de Investigación en Enfermedades Crónico Degenerativas. Centro Universitario de Ciencias de la Salud. Universidad de Guadalajara, México.
3 SECIHTI—CIATEJ, México.
4 Laboratorio de Patología Diagnóstica e Inmunohistoquímica. Departamento de Morfología. Centro Universitario de Ciencias de la Salud. Universidad de Guadalajara, México.
5 Instituto de Nutrigenética y Nutrigenómica Traslacional. Centro Universitario de Ciencias de la Salud, México.
6 Laboratorio de Mutagénesis. Centro de Investigación Biomédica de Occidente. Instituto Mexicano del Seguro Social, México.
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Vol. 30. Issue S2

Abstracts of the 2025 Annual Meeting of the ALEH

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Introduction and Objectives

Moringa oleifera (moringa) extracts have hepatoprotective, antioxidant, and anticancer effects. This study aimed to determine the effect of moringa extract on an in vivo model of liver cancer.

Materials and Methods

Moringa leaves powder was simmered in water at 80ºC and its antioxidant capacity was determined using ABTS and DPPH methods. Male Wistar rats were divided in groups: control (Ctl), damage (Dmg), aqueous extract (Leaves-AqE), and 4) damage and Leaves-AqE (Dmg+Leaves-AqE). Leaves-AqE (300mg/kg i.g) was administered daily for two weeks and three times a week during 18 weeks. Since the second week, damage was induced by weekly administration of DEN and 2-AAF for 18 weeks. Serum biochemistry and gene expression were analyzed. Statistical analysis was performed using GraphPad Prism 10 (p<0.05). UDG Committees approved the protocol (Code CI-01720). The authors declare no conflicts of interest.

Results

Leaves-AqE had an antioxidant capacity slightly more than 70% in vitro. The administration of the extract led to a decrease in liver tumor development and prevented mortality by the damage treatment. Leaves-AqE did not have significant effects on serum hepatic function markers. Interestingly, CAT and SOD were low in the Dmg+Leaves-AqE group. In addition, TGFB1 showed a tendency to decrease in the Dmg+Leaves-AqE group compared to Dmg group.

Conclusions

The Leaves-AqE extract has an important antioxidant inhibitory capacity in vitro. This capacity may explain why supplementation with this extract increased survival as well as the tendency to reduce the expression of TGFB1 induced by chemical damage.

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Conflict of interest: None

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