The Effect of Black Rice Extract on Lipid Profile Changes in Hypercholesterolemic Mus musculus

  • Awalia Medical Profession Education Program, Faculty of Medicine, Universitas Muslim Indonesia
  • Armanto Makmun Department of Public Health, Faculty of Medicine, Universitas Muslim Indonesia
  • Aryanti R. Bamahry Department of Clinical Nutrition, Faculty of Medicine, Universitas Muslim Indonesia
  • Rasfayanah Rasfayanah Department of Biochemistry, Faculty of Medicine, Universitas Muslim Indonesia
  • Yusriani Mangarengi Department of Microbiology, Faculty of Medicine, Universitas Muslim Indonesia
Keywords: Black Rice Extract, Lipid Profile, Hypercholesterolemia

Abstract

Increased levels of lipid profiles in the blood affect the occurrence of coronary heart disease. Several large studies have shown that several natural food ingredients rich in antioxidants are associated with a lower incidence of cardiovascular disease. prevent the occurrence of several degenerative diseases. The research design used was a research design with a control group (pretest-posttest control group design). The research design used was a pretest-posttest control group design with 27 mice (mus musculus). They were divided into 3 groups: the negative control group (placebo), the positive control group (simvastatin), and the treatment control group (black rice). The intervention was carried out for 21 days. Data analysis was carried out using the paired T test and one way ANOVA test. Giving black rice extract can significantly improve lipid profile levels in mice, especially increasing HDL cholesterol levels by (10.44%) and decreasing triglyceride levels by (12.89%) as well as Simvastatin administration can also improve lipid profile levels significantly, especially decreased total cholesterol levels by (24.67%) and decreased LDL cholesterol by (32.08%). Based on the one way ANOVA test, P values were obtained successively in the administration of black rice extract, namely total cholesterol (p=<0.001), HDL cholesterol (p=<0.001), LDL cholesterol (p=<0.001), and triglycerides (p=<0.001). Likewise, in the administration of simvastatin, the lipid profile levels were obtained (p = <0.001). The conclusion of this study was that there was a significant effect of giving black rice extract on the lipid profile of hypercholesterolemia mice which was as effective as simvastatin.

References

Ardian, J., Jauhari, M. T., & Rahmiati, B. F. (2020). Pengaruh Pemberian Jus Jambu Biji Merah terhadap Penurunan Kadar Ldl (Low Density Lipoprotein) dan Kolesterol Total. Nutriology : Jurnal Pangan, Gizi, Kesehatan, 1(1), 26–34. https://doi.org/10.30812/nutriology.v1i1.733

Campolongo, G., Riccioni, C. V., Raparelli, V., Spoletini, I., Marazzi, G., Vitale, C., & Volterrani, M. (2016). The Combination of Nutraceutical and Simvastatin Enhances the Effect of Simvastatin Alone in Normalising Lipid Profile without Side Effects in Patients with Ischemic Heart Disease. IJC Metabolic & Endocrine, 11, 3–6. https://doi.org/10.1016/j.ijcme.2016.03.001

Corwin, E. J. (2009). Buku Saku Patofisiologi (Handbook of Pathophysiology) (3rd ed.). Buku Kedokteran EGC.

Darafika. (2017). Gambaran Profil Lipid pada Wanita Usia Dewasa dengan Sindrom Metabolik di Rumah Sakit Umum Pusat Haji Adam Malik Medan Tahun 2015. Universitas Sumatera Utara.

Fajrin, F. A. (2010). Aktivitas Ekstrak Etanol Ketan Hitam untuk Menurunkan Kadar Kolesterol. Jurnal Farmasi Indonesia, 5(2), 63-69. https://doi.org/10.35617/JFI.V5I2.39

Felmlee, D. J., Hafirassou, M. L., Lefevre, M., Baumert, T. F., & Schuster, C. (2013). Hepatitis C virus, cholesterol and lipoproteins—impact for the viral life cycle and pathogenesis of liver disease. Viruses, 5(5), 1292-1324. https://doi.org/10.3390/v5051292

Ginsberg, H. N., Le, N. A., Short, M. P., Ramakrishnan, R., & Desnick, R. J. (1987). Suppression of Apolipoprotein B Production during Treatment of Cholesteryl Ester Storage Disease with Lovastatin. Implications for Regulation of Apolipoprotein B Synthesis. Journal of Clinical Investigation, 80(6), 1692–1697. https://doi.org/10.1172/JCI113259

Herlambang, H. A., Kapantow, N. H., & Kawengian, S. E. S. (2015). Perbandingan Efektivitas Pemberian Ekstrak Beras Hitam dan Ekstrak Beras Merah Terhadap Perubahan Profil Lipid Tikus Wistar (Rattus novergicus). Jurnal Ilmu Dan Teknologi Pangan, 3(1), 26–34.

Istanti, N. W., Nabila, R. A., & Listyawati, S. (2018). Aktivitas Hiperkolestrolemik Beras Hitam (Oryza Sativa L) Hasil Pemuliaan dengan Sinar Gamma. APISORA PAIR-BATAN, 54–59. https://doi.org/10.37637/ab.v2i1.364

Iwagami, M., Qizilbash, N., Gregson, J., Douglas, I., Johnson, M., Pearce, N., ... & Pocock, S. (2021). Blood cholesterol and risk of dementia in more than 1· 8 million people over two decades: a retrospective cohort study. The Lancet Healthy Longevity, 2(8), e498-e506. https://doi.org/10.1016/s2666-7568(21)00150-1

Katzung, B. G. (2013). Farmakologi Dasar dan Klinik (2nd ed.). Buku Kedokteran EGC.

Lestari, W. A., & Utari, D. M. (2017). Analysis of the Dominant Factor of Hypercholesterolemia at 45-59 Years Old Elderly in Working Area of Puskesmas Rangkapanjaya Kota Depok 2016. Berita Kedokteran Masyarakat, 33(6), 267. https://doi.org/10.22146/bkm.12293

Mantiri, S. A., Mayangsari, Y., Ardiansyah, Shirakawa, H., & Saputra, W. D. (2024). In vivo evaluation of germinated IR-64 brown rice dietary administration on the lipid blood profiles of rats with hypercholesterolemia. Nutrire, 49(2), 44. http://dx.doi.org/10.1186/s41110-024-00287-2

Meades, L. (2014). Associations between specific ApoE genetic variants and their interactions with environmental factors in relation to the lipid profile of black South Africans (Doctoral dissertation).

Mohammadi, N., Farrell, M., O’Sullivan, L., Langan, A., Franchin, M., Azevedo, L., & Granato, D. (2024). Effectiveness of anthocyanin-containing foods and nutraceuticals in mitigating oxidative stress, inflammation, and cardiovascular health-related biomarkers: a systematic review of animal and human interventions. Food & Function. https://doi.org/10.1039/D3FO04579J

Nastiti, R. D. W., Nurhidajah, & Yusuf, M. (2020). Berat Badan, Feed Convertion Ratio (FCR), dan Berat Jaringan Adiposa pada Tikus Hiperkolesterolemia dengan Diet Beras Hitam. Jurnal Pangan Dan Gizi, 10(2), 73–84. https://doi.org/10.26714/jpg.10.2.2020.73-84

Pemerintah RI. (2018). Riset Kesehatan Dasar (Riskesdas). Kementerian Kesehatan RI.

Pinontoan, A. R. (2015). Pengaruh Pemberian Ekstrak Beras Hitam (Oryza sativa L.) terhadap Kadar Low Density Lipoprotein pada Tikus Wistar (Rattus Norvegicus) yang Diberi Diet Prodislipidemia. Universitas Sam Ratulangi.

Rokom. (2017, August 5). Penyakit Jantung Penyebab Kematian Tertinggi, Kemenkes Ingatkan CERDIK. Sehatnegeriku.Kemkes.Go.Id.

Sahara, L. I., & Adelina, R. (2021). Analisis Asupan Lemak Terhadap Profil Lemak Darah Berkaitan dengan Kejadian Penyakit Jantung Koroner (PJK) di Indonesia: Study Literatur. Jurnal Pangan Kesehatan Dan Gizi Universitas Binawan, 1(2), 48–60. https://doi.org/10.54771/jakagi.v1i2.152

Tan, P., Mayulu, N., & Kawengian, S. (2016). Gambaran aktivitas dan stabilitas antioksidan ekstrak beras hitam (Oryza sativa L.) kultivar Enrekang Sulawesi Selatan. EBiomedik, 4(1), 184–187.

van Rooy, M. J., & Pretorius, E. (2014). Obesity, hypertension and hypercholesterolemia as risk factors for atherosclerosis leading to ischemic events. Current Medicinal Chemistry, 21(19), 2121-2129. https://doi.org/10.2174/0929867321666131227162950

Walujan, F. F. (n.d.). Pengaruh Pemberian Ekstrak Beras Hitam Terhadap Kadar High Density Lipoprotein pada Tikus Wistar (Rattus Novergicus) yang Diberi Diet Prodislipidemia Pendahuluan Penyakit Kardiovaskular atau Coronary High Merupakan Berkerapatan Density Kolesterol Tinggi.

Whatnall, M. C., Collins, C. E., Callister, R., & Hutchesson, M. J. (2016, August). Associations between unhealthy diet and lifestyle behaviours and increased cardiovascular disease risk in young overweight and obese women. In Healthcare (Vol. 4, No. 3, p. 57). MDPI. https://doi.org/10.3390/healthcare4030057

Zhu, J., Shi, Q., Sun, C., Hu, J., Zhou, N., Wei, H., ... & Xiong, Q. (2022). Processing affects (decreases or increases) metabolites, flavonoids, black rice pigment, and total antioxidant capacity of purple glutinous rice grains. Food Chemistry: X, 16, 100492. https://doi.org/10.1016/j.fochx.2022.100492

Published
2025-02-20
How to Cite
Awalia, A., Makmun, A., Bamahry, A. R., Rasfayanah, R., & Mangarengi, Y. (2025). The Effect of Black Rice Extract on Lipid Profile Changes in Hypercholesterolemic Mus musculus. Journal La Medihealtico, 6(1), 181-192. https://doi.org/10.37899/journallamedihealtico.v6i1.1947