Effect of Roselle Flower Extract (Hibiscus sabdariffa Linn.) on Reducing Steatosis and Steatohepatitis in Vitamin B12 Deficiency Rat Model

Author:

Ujianti Irena12,Sianipar Imelda Rosalyn3,Prijanti Ani Retno4,Hasan Irsan5,Arozal Wawaimuli6,Jusuf Ahmad Aulia7,Wibowo Heri8,Prihartono Joedo9,Amani Patwa10,Santoso Dewi Irawati Soeria3

Affiliation:

1. Departement of Medical Physiology, Faculty of Medicine, Universitas Muhammadiyah Prof. Dr. Hamka, Jakarta 121130, Indonesia

2. Graduate Student in Doctoral Program in Medical Sciences, Faculty of Medicine Universitas Indonesia, Jakarta 10430, Indonesia

3. Departement of Medical Physiology, Faculty of Medicine, Universitas Indonesia, Jakarta 10430, Indonesia

4. Departement of Biochemistry and Molecular Biology, Universitas Indonesia, Jakarta 10430, Indonesia

5. Departement of Internal Medicine, Universitas Indonesia, Jakarta 10430, Indonesia

6. Departement of Pharmacology and Therapeutic, Universitas Indonesia, Jakarta 10430, Indonesia

7. Departement of Histology, Universitas Indonesia, Jakarta 10430, Indonesia

8. Departement of Parasitology, Universitas Indonesia, Jakarta 10430, Indonesia

9. Departement of Community Medicine, Universitas Indonesia, Jakarta 10320, Indonesia

10. Departement of Medical Physiology, Faculty of Medicine, Universitas Trisakti, Jakarta 11440, Indonesia

Abstract

Background and Objectives: Non-alcoholic Fatty Liver Disease (NAFLD) can occur as a result of micronutrient deficiencies. Hibiscus sabdarifa, a plant used in traditional medicine, contains ingredients that can help prevent this process. This study looked at the potency of Hibiscus sabdariffa Ethanol Extract (HSE) to prevent homocysteine-induced liver damage in animals that were deficient in vitamin B12. Materials and Methods: A comparative study of the effects of roselle extract is presented in an experimental design. Thirty Sprague–Dawley rats were divided into six groups using randomization. To demonstrate the absence of liver damage in the experimental animals under normal conditions, a control group was fed a normal diet without HSE. For the induction of liver damage in the experimental animals, the vitamin B12-restricted group was administered a vitamin B12-restricted diet. To test the effect of HSE on liver damage, the treatment group was given HSE along with a vitamin B12-restricted diet. Each group was given two treatment periods of eight and sixteen weeks. These results were compared with the results of the parameter examination between the vitamin B12 restriction group, with and without HSE, using an ANOVA statistic. The data were analyzed with licensed SPSS 20.0 software. Results: HSE significantly increased the blood levels of vitamin B12 while lowering homocysteine levels. The administration of HSE reduced liver damage based on the activity of liver function enzymes in the plasma due to a limitation of vitamin B12. HSE decreased Sterol Regulatory Element-Binding Protein-1c (SREBP1c) and Nuclear Factor Kappa B (NFkB) protein expressions in the liver tissue, but did not decrease Glucose-Regulated Protein 78 (GRP78) protein expression. Significantly, the levels of Tumor Necrosis Factor alpha (TNF-a) and IL-6 in the liver tissue were lower, while the levels of IL-10 and Nuclear factor-erythroid-2 Related Factor 2 (NRF2) were higher with HSE administration. HSE produced a better histopathological profile of the Hematoxylin and Eosin (H&E)–Masson tricrome for inflammation, fat and fibrosis in the liver. Conclusions: In this study, HSE was found to slow the development of liver damage in experimental animals that were given a vitamin B12-deficient diet.

Funder

Universitas Indonesia

Publisher

MDPI AG

Subject

General Medicine

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