EFEK EKSTRAK BAYAM MERAH VARIETAS MIRA TERHADAP GLUKOSA DARAH PUASA DAN MALONDIALDEHID TIKUS MODEL DMT2

Main Article Content

Aprilina Citra Ayu Nilasari
Budiyanti Wiboworini
Shanti Listyawati

Abstract

Persistent hyperglycemia in type 2 diabetes mellitus (T2DM) increases the risk of lipid peroxidation that produces malondialdehyde (MDA). Red spinach mira extract (RSME) contains anthocyanins and beta carotene, both of which have the potential as antioxidants in reducing fasting blood glucose (FBG) and MDA levels. The purpose of the study was to determine the effect of RSME administration on FBG and MDA levels in T2DM. The research method was true-experimental with pretest-posttest. The study used 30 male Wistar rats, and divided into 5 groups, namely the normal group and given  standard diet, K- T2DM rats and given a standard diet, K+ T2DM rats and given acarbose drug therapy 1.8 mg/200g/day, P1 T2DM rats and given a dose of RSME 688 mg/200g Body weight (BW) and P2 T2DM rats and given a dose of RSME 1376 mg/200g BW for 14 days. Statistical analysis of FBG and MDA using One Way Anova test and continued with Post Hoc test to determine the difference between groups, while to determine the effect using Paired t-test. The results of the study after intervention for 14 days, all groups given RSME experienced a decrease in FBG levels P1 by 158.60 mg/dl (p=0.000), KP2 by 180 mg/dl (p=0.000) and MDA KP1 decreased by 6.01 nmol/mL (p=0.000) and KP2 by 7.75 nmol/mL (p=0.000) and there was significant value (p<0.05). The study concluded that the best dose is KP2, which reduces FBG levels by 180.84 mg/dl and MDA by 7.75 nmol/ml, the highest decrease compared to the other doses.

Article Details

How to Cite
Nilasari, A. C. A., Wiboworini, B., & Listyawati, S. (2024). EFEK EKSTRAK BAYAM MERAH VARIETAS MIRA TERHADAP GLUKOSA DARAH PUASA DAN MALONDIALDEHID TIKUS MODEL DMT2. Media Penelitian Dan Pengembangan Kesehatan, 34(2), 311-323. Retrieved from https://jurnal.polkesban.ac.id/index.php/jmp2k/article/view/2003


Section
Articles

References

Z. Punthakee, R. Goldenberg, and P. Katz, “Definition, Classification and Diagnosis of Diabetes, Prediabetes and Metabolic Syndrome,” Can. J. Diabetes, vol. 42, no. 2018, pp. 10–15, 2018, doi: 10.1016/j.jcjd.2017.10.003.

S. A. Soelistijo, Pedoman Pengelolaan dan Pencegahan Diabetes Melitus Tipe 2 Dewasa di Indonesia. Jakarta: PB PERKENI, pp. 1-99, 2021, doi: https://pbperkeni.or.id/wp-content/uploads/2021/11/22-10-21-Website-Pedoman-Pengelolaan-dan-Pencegahan-DMT2-Ebook.pdf

C. L. Jácome de Lima et al., “Risk Factors for TYPE II Diabetes Mellitus: an Integrative Review,” Int. Arch. Med., vol. 9, no. 308, pp. 1–11, 2016, doi: 10.3823/2179.

International Diabetes Federation, IDF Diabetes Atlas Eighth Edition 2017. 2017.

C. A. Pieme et al., “Relationship between hyperglycemia, antioxidant capacity and some enzymatic and non-enzymatic antioxidants in African patients with type 2 diabetes,” BMC Res. Notes, vol. 10, no. 1, pp. 1–7, 2017, doi: 10.1186/s13104-017-2463-6.

E. Decroli, Diabetes Melitus Tipe 2, 1st ed. Padang: Fakultas Kedokteran Universitas Andalas, 2019.

Subandrate, “Hubungan Kadar Glukosa Darah dengan Peroksidasi Lipid pada Pasien Diabetes Melitus tipe 2,” Dep. Biokimia Fak. Kedokt. Univ. Sriwij., vol. 43, no. 7, pp. 487–489, 2016.

H. Kadri, M. A’raaf, and Julizar, “The Effect of Kawa Daun Gambir (Uncaria gambir Roxb.) on the Malondialdehyde (MDA) Level of Heart Alloxan Induced Hyperglycemia Mice,” in 3rd International Conference on Security in Food, Renewable Reources, and Natural Medicine, 2019, pp. 9–14.

Y. K. Yasin, M. I. Kartasurya, and R. K. RMD, “Pengaruh kombinasi vitamin c dan vitamin e terhadap Kadar malondialdehid plasma pasien diabetes mellitus tipe 2,” J. Gizi Indones. (The Indones. J. Nutr., vol. 4, no. 1, pp. 1–8, 2016, doi: 10.14710/jgi.4.1.1-8.

A. A. Rajab, A. M. Patriadi Nuhriawangsa, and S. S. Rahardjo, “Efek Kombinasi Bubuk Mengkudu Dan Kelor Terhadap Glukosa Darah Puasa Tikus Dmt2 Dislipidemia,” Gizi Indones., vol. 46, no. 1, pp. 57–66, 2023, doi: 10.36457/gizindo.v46i1.765.

D. Rózańska and B. Regulska-Ilow, “The significance of anthocyanins in the prevention and treatment of type 2 diabetes,” Adv. Clin. Exp. Med., vol. 27, no. 1, pp. 135–142, 2018, doi: 10.17219/acem/64983.

E. Soviana, B. Rachmawati, and N. S. Widyastiti, “Pengaruh suplementasi β-carotene terhadap kadar glukosa darah dan kadar malondialdehida pada tikus sprague dawley yang diinduksi Streptozotocin,” J. Gizi Indones. (The Indones. J. Nutr., vol. 2, no. 2, pp. 41–46, 2014, doi: 10.14710/jgi.2.2.41-46.

H. Du et al., “Methylation mediated by an anthocyanin, O-methyltransferase, is involved in purple flower coloration in Paeonia,” J. Exp. Bot., vol. 66, no. 21, pp. 6563–6577, 2015, doi: 10.1093/jxb/erv365.

M. Hambali, F. Mayasari, and F. Noermansyah, “Ekstraksi Antosianin Dari Ubi Jalar Dengan Variasi Konsentrasi Solven, Dan Lama Waktu Ekstraksi,” J. Tek. Kim., vol. 20, no. 2, pp. 25–35, 2015.

W. E. A. Santoso and T. Estiasih, “Kopigmentasi Ubi Jalar Ungu dengan Kopigmen Na-Kasienat dan Protein Whey serta Stabilitasnya Terhadap Pemanasan,” J. Pangan dan Agroindustri, vol. 2, no. 4, pp. 121–127, 2014.

M. Priska, N. Peni, L. Carvallo, and Y. D. Ngapa, “Antosianin dan Pemanfaatannya,” Cakra Kim. (Indonesian E-Journal Appl. Chem., vol. 6, no. 2, pp. 79–97, 2018.

G. Russo et al., “Oxidative Stress and Diseases,” Oxidative Stress Dis., vol. 2018, no. 13, pp. 757–772, 2012, doi: 10.5772/2535.

S. Suryanita, F. Indrayani, and M. Asri, “Efektivitas ekstrak etanol bayam merah (amaranthus tricolor l.) Terhadap glukosa darah Tikus putih ( rattus novergicus) jantan Yang dipapar dengan asap rokok,” J. Syifa Sci. Clin. Res., vol. 4, no. 1, pp. 50–57, 2022, doi: 10.37311/jsscr.v4i1.13507.

A. E. Sari and E. M. Sari, “Analisa Beta Karoten Pada Sayuran Lokal Di Indonesia,” J. Mitra Kesehat., vol. 1, no. 1, pp. 16–19, 2018, doi: 10.47522/jmk.v1i1.5.

A. Guntarti and A. Ruliyani, “Penetapan Flavonoid Total dan Uji Aktivitas Antioksidan Bayam ( Amaranthus tricolor L .) Varietas Giti Merah dan Giti Hijau,” J. Farm. Sains dan Prakt., vol. 6, no. 1, pp. 51–59, 2020.

Mukhtarini, “Ekstraksi, Pemisahan Senyawa, Dan Identifikasi Senyawa Aktif,” J. Kesehat., vol. VII, no. 2, p. 361, 2014, [Online]. Available: https://doi.org/10.1007/s11293-018-9601-y.

M. Teroreh, S. Rahardjo, P. Hastuti, and A. Murdiati, “Ekstraksi Daun Gedi (Abelmoschus manihot L) Secara Sekuensial dan Aktivitas Antioksidannya,” J. Agritech, vol. 35, no. 03, p. 280, 2015, doi: 10.22146/agritech.9338.

Q. W. Zhang, L. G. Lin, and W. C. Ye, “Techniques for extraction and isolation of natural products: A comprehensive review,” Chinese Med. (United Kingdom), vol. 13, no. 1, pp. 1–26, 2018, doi: 10.1186/s13020-018-0177-x.

Syaifuddin, “Uji Aktivitas Antioksidan Bayam Merah (Alternanthera amoena Voss.) Segar dan Rebus dengan Metode DPPH (1,1 –diphenyl-2-picylhydrazyl),” Universitas Islam Negeri Walisongo, 2015.

S. S. Abdulazeez and P. Ponnusamy, “Antioxidant and hypoglycemic activity of strawberry fruit extracts against alloxan induced diabetes in rats,” Pak. J. Pharm. Sci., vol. 29, no. 1, pp. 255–260, 2016.

C. Chaiyasut et al., “Germinated Thai black rice extract protects experimental diabetic rats from oxidative stress and other diabetes-related consequences,” Pharmaceuticals, vol. 10, no. 1, pp. 1–16, 2017, doi: 10.3390/ph10010003.

P. S. Fatahillah, B. Wiboworini, and K. L. Retna, “Analysis of Anthocyanins and Flavonoids in Germinated Black Rice Extract,” J. Dunia Gizi, vol. 4, no. 1, pp. 8–14, 2021.

I. Lestari Simson and M. Basuki, “Uji Aktifitas Fraksi Daun Salam Terhadap Kadar Glukosa Darah Tikus Putih Jantan Hiperkolesteroemia Diabetes,” Farmakol. J. Farm., vol. 16, no. 2, pp. 116–125, 2019.

J. Aguilar Diaz De Leon and C. R. Borges, “Evaluation of oxidative stress in biological samples using the thiobarbituric acid reactive substances assay,” J. Vis. Exp., vol. 2020, no. 159, pp. 1–22, 2020, doi: 10.3791/61122.

A. Zainuddin, H. Susanto, and A. Rosidi, “The effect of red pomegranate provision on malondialdehyde and blood lactic acid level in rats with maximum physical activity,” J. Gizi dan Pangan, vol. 14, no. 2, pp. 77–82, 2019, doi: 10.25182/jgp.2019.14.2.77-82.

F. R. Aminati and I. Y. Yastutik, “Pengaruh Pemberian Puding Bayam (Amaranthus Tricolor L.) Terhadap Kadar Gula Darah Pada Lansia Di Wilayah Kerja Puskesmas Tanggulangin,” Prima Wiyata Heal., vol. 4, no. 2, pp. 25–31, 2023.

J. J. DiNicolantonio, J. Bhutani, and J. H. O’Keefe, “Acarbose: safe and effective for lowering postprandial hyperglycaemia and improving cardiovascular outcomes,” Open Hear., vol. 2, no. 1, pp. 1–13, 2015, doi: 10.1136/openhrt-2015-000327.

F. Husna, F. D. Suyatna, W. Arozal, and E. H. Purwaningsih, “Model Hewan Coba pada Penelitian Diabetes Animal Model in Diabetes Research,” Mini Rev. Artic. Pharm. Sci. Res., vol. 6, no. 3, pp. 131–141, 2019.

H. Stevani, Praktikum Farmakologi, Pertama., no. september 2016. Jakarta Selatan: Kementrian Kesehatan RI, 2016.

H. Kristina, N. Sartono, and Rusdi, “Kadar Peroksida Lipid Dan Aktivitas Superoksida Dismutase Serum Darah Pada Penderita Diabetes Melitus Tipe 2,” Bioma, vol. 11, no. 1, p. 1, 2015, doi: 10.21009/bioma11(1).1.

E. A. Saad, S. A. Habib, W. A. Refai, and A. A. Elfayoumy, “Malondialdehyde, Adiponectin, Nitric Oxide, C-Reactive Protein, Tumor Necrosis Factor-Alpha and Insulin Resistance Relationships and Inter-Relationships in Type 2 Diabetes Early Stage Is Metformin Alone Adequate in This Stage,” Int. J. Pharm. Pharm. Sci., vol. 9, no. 10, p. 176, 2017, doi: 10.22159/ijpps.2017v9i10.21149.

H. Oliveira, A. Fernandes, N. F. Brás, N. Mateus, V. de Freitas, and I. Fernandes, “Anthocyanins as antidiabetic agents—in vitro and in silico approaches of preventive and therapeutic effects,” Molecules, vol. 25, no. 17, pp. 1–30, 2020, doi: 10.3390/molecules25173813.

A. A. Fallah, E. Sarmast, and T. Jafari, “Effect of dietary anthocyanins on biomarkers of oxidative stress and antioxidative capacity: A systematic review and meta-analysis of randomized controlled trials,” J. Funct. Foods, vol. 68, no. 2020, pp. 1–12, 2020, doi: 10.1016/j.jff.2020.103912.

S. Boue, K. Daigle, M.-H. Chen, H. Cao, and M. Heiman, “Antidiabetic Potential of Purple and Red Rice ( Oryza sativa L.) Bran Extracts,” J. Agric. Food Chem., vol. 64, no. 26, pp. 5345–5353, 2016.

T. Belwal, S. F. Nabavi, S. M. Nabavi, and S. Habtemariam, “Dietary anthocyanins and insulin resistance: When food becomes a medicine,” Nutrients, vol. 9, no. 10, pp. 1–22, 2017, doi: 10.3390/nu9101111.

I. Dwijayanti, B. Wasita, and I. Nurwati, “Red Rice Bran Extract Intervention Ability to Improve Lipid Profile and Malondialdehyde Levels in Type 2 Diabetes Mellitus Model Rats,” Amerta Nutr., vol. 6, no. 4, pp. 404–413, 2022, doi: 10.20473/amnt.v7i4.2022.404-413.

A. Prasetyo, A. Baihaqi, and L. Indreswari, “Pengaruh Ekstrak Bayam Merah (Amaranthus tricolor L.) terhadap Kadar Malondialdehida Serum Tikus Wistar Jantan Model Fraktur,” Agromedicine Med. Sci., vol. 6, no. 2, pp. 87–91, 2020.