Utilization Of Plant as A Drug for Diabetes Mellitus By The Community Of Beutong District, Nagan Raya Regency

Icha Putrimarlin(1), Hasanuddin Hasanuddin(2), Safrida Safrida(3), Wardiah Wardiah(4), Dewi Andayani(5),


(1) Biology Education Study Program, Faculty of Teacher Training and Education, Syiah Kuala Darussalam University, Banda Aceh, Indonesia
(2) Biology Education Study Program, Faculty of Teacher Training and Education, Syiah Kuala Darussalam University, Banda Aceh, Indonesia
(3) Biology Education Study Program, Faculty of Teacher Training and Education, Syiah Kuala Darussalam University, Banda Aceh, Indonesia
(4) Biology Education Study Program, Faculty of Teacher Training and Education, Syiah Kuala Darussalam University, Banda Aceh, Indonesia
(5) Biology Education Study Program, Faculty of Teacher Training and Education, Syiah Kuala Darussalam University, Banda Aceh, Indonesia

Abstract

Diabetes mellitus is one of the leading causes of death in the world. Indonesia is a country with the 7th largest population of Diabetes mellitus sufferers in the world in 2015. Many people use plants as diabetes mellitus drugs, in Indonesia More than 500 types of plants have been shown to have hypoglycemic activity because these plants contain compounds that are efficacious as anti-diabetic. This study was aimed to determine as many types of plants as possible that are used as medicinal plants for diabetes mellitus in Beutong sub-district, Nagan Raya district. This research was conducted by conducting interviews with 100 respondents aged 18-60 years who knew information about plants used for Diabetes mellitus.This study used the method of interview, observation, and identification (PlantNet). The results found as many as 29 species of plants from 26 families. Myrtaceae family as the most numerous plants with the number of species as much as 10% and the family Fabaceae with the number of species as much as 7%. Leaves are the part that is most widely used as medicine and the majority of people process it in a different way. Consume by drinking more than by chewing and the recommended dose for consumption is 2 times a day after meals. Benefits for researchers can add information about medicinal plants for diabetes mellitus utilized by the people of Beutong District, Nagan Raya Regency and become one of the references for public knowledge traditional, and become a reference material for students in conducting research next.

Keywords

Diabetes mellitus; medicinal plants; Beutong

Full Text:

PDF

References

Adnyana, IDPA, Meles, DK, Zakaria, S., & Suwasanti, N. 2016. Anti-diabetic effect of bitter melon (Momordica charantia Linn.) on blood glucose levels, cells that make up the islets of Langerhans and Leydig cells in hyperglycemic white rats. Acta Veterinaria Indonesiana, 4:2, 43-50.

Agustina, DA, Rahayuningsih, N., & Ruswanto, R. 2022, January. Antidiabetic Activity of Coconut Fiber Extract (Cocos nucifera L.) in Wistar Strain Rats. In Proceedings of the National Seminar on Research Dissemination 1:1.

Andila, PS, Wibawa, IPAH, Lugrayasa, IN, & Sujarwo, W. 2021. Study on the Potential of Sugarcane Ireng (Saccharum Officinarum L.) as Antioxidants and Antimicrobials. Biology News, 20:1, 57-67.

Anggraini, DM, & Kusuma, EW 2019. Test of Antidiabetic Effects of Combination of Sambiloto Herb Extract (Andrographis paniculata (Burm. F.) Nees.) And Soursop Leaf (Annona muricata L.) In Alloxan-Induced Male Rats. As-Syifa Journal of Pharmacy, 11(01), 24-29.

Anggriani, R., Laelatunisa, N., Rizky, N., & Arum, R. 2020. Acceptability, Nutrients, and Energy Value of Anti-Diabetic Bread with the Addition of Noni Juice (Morinda citrifolia L.). Food Technology and Halal Science Journal, 3:1, 47-56.

Arham, S., Khumaidi, A., & Pitopang, R. 2017. Diversity of traditional medicinal plant species and their use in the Kulawi tribe in Mataue village, Lore Lindu national park area. Biocelebes, 10(2).

Arjadi, F., & Mustofa, M. 2017. The pulp extract of the crown of the god regenerates Langerhans Island cells in diabetic white rats. Biogenesis: Scientific Journal of Biology, 5:1, 27-33.

Delisma. 2020. Counseling on the efficacy of bandotan leaves on reducing blood sugar levels at the Talun Kenas Health Center. Putri Hijau Community Service Journal. 1(1), 38–43.

El Qahar, HA 2020. The Effect of Aloe Vera Lowering Blood Glucose Levels in Type 2 Diabetes Mellitus. Scientific Journal of Health Sandi Husada, 9:2, 798-805.

Fatin, N., Pujiyanto, S., & Raharjo, B. 2018. Activity Test of -Glucosidase Inhibition Isolate of Endophytic Bacteria of Duwet Plants (Syzygium cumini L. Skeels) as an Alternative Source of Antidiabetes. Biomes: Biological Scientific Periodic, 20:2,165-169.

Halan, SO, Woda, RR, & Setianingrum, ELS 2020. The Effect of Giving Moringa Leaf Juice (Moringa oleifera) on Fasting Blood Glucose Levels in Adults at Risk of Type 2 Diabetes Mellitus in the Work Area of the Oebobo Health Center, Kupang City. Sandalwood Medical Journal (CMJ), 8:1, 556-565.

Harsanti, BD, & Musfiroh, I. 2019. Article Review: Utilization of Mango Leaves (Mangifera Indica L.) as Herbal Medicine for Diabetes Mellitus. Pharmacology, 17(3), 33-40

Ivantirta, I. 2019. Antihyperglycemic Effects of Long Beans (Vigna Unguiculata). Scientific Journal of Health Sandi Husada, 8:2, 359-362.

Lolok, N., Yuliastri, WO, & Abdillah, FA 2020. Antidiabetic Effect of Combination of Ethanol Extract of Wangi Pandan Leaves (Pandanus amaryllifolius Roxb.) and Salam Leaves (Syzygium polyanthum Wight.) In White Rats Using Alloxan Induction Method. Journal of Mandala Pharmacon Indonesia, 6(01), 13-29

Maliangkay, HP, Rumondor, R., & Walean, M. 2018. Antidiabetic effectiveness test of ethanol extract of mangosteen rind (Garcinia mangostana L) in white rats (Rattus norvegicus) induced by alloxan. Chemistry Progress, 11:1.

Malinie &, DM, Madihah, DAK, Sasmita, I., Ratningsih, N., Alipin, K., & Hermawan, W. 2019. Ethanol Extract of Jengkol Fruit Peel Lowers Glucose Levels and Increases Insulin Hormone in Streptozotocin-Induced Diabetic Rats. Veterinary Journal March, 20:1, 65-73.

Novianty, SD, Lestari, RD, & Damayanti, DS 2021. The Potential of Soursop Leaf Kombucha (Annona Muricata Linn.) In Inhibiting Dpp4 And Sdf-1 As Antidiabetes With In Silico Studies. Journal of Community Medicine, 10:1.

Patala, R., Dewi, NP, & Pasaribu, MH 2020. The effectiveness of ethanol extract of avocado seeds (Persea americana Mill.) on blood glucose levels of male white rats (Rattus novergicus) hypercholesterolemia-diabetic model. Journal of Pharmacy Galenika (Galenika Journal of Pharmacy)(e-Journal), 6(1), 7-13.

Pelokang, CY, Koneri, R., & Katili, D. (2018). The Usage of Traditional Medicinal Plants by Sangihe Ethnic in the Southern Sangihe Islands, North Sulawesi. Journal of Bios Logos, 8(2), 45-51.

Phitri, HE (2013). The Relationship Between Knowledge And Attitude Of Diabetes Mellitus Patients With Diabetes Mellitus Diet Compliance In RSUD AM. East Kalimantan parikshit. Journal of Surgical Medical Nursing, 1(1).

Pongoh, AF, de Queljoe, E., & Rotinsulu, H. 2020. Antidiabetic Test of Ethanol Extract of Papaya Flower (Carica papaya L.) against Alloxan-induced Male White Rat (Rattus norvegicus). Pharmacon, 9:1, 160-169.

Prameswari, OM, & Widjanarko, SB 2013. Testing the Effects of Wangi Pandan Leaf Water Extract on Reducing Blood Glucose Levels and Histopathology of Diabetes Mellitus Rats [In Press 2014]. Journal of Food and Agroindustry, 2:2, 16-27.

Pratiwi, MA, Maheasy, F., & Sastyarina, Y. 2020, December. Literature Study: Antidiabetic Activity of Dayak Onion (Eleutherine americana) and Lemongrass (Cymbopogon citratus). In Proceedings of Mulawarman Pharmaceuticals Conferences 12,174-182.

Putra, AMP, Aulia, D., & Wahyuni, A. 2017. Activity Test of Ethanol Extract of Belimbing Wuluh Leaves (Averrhoa bilimbbi L.) Against Alloxan Induced Blood Glucose Levels in Male White Mice. Scientific Journal of Ibn Sina, 2(2), 263-269.

Putra, RK 2019. Provision of Guava Leaf Boiled Water on Changes in Blood Sugar Levels in Type 2 Diabetes Mellitus Patients (Doctoral dissertation, Yakpermas Nursing Academy Banyumas).

Sambara, J., Yuliani, NN, & Emerensiana, MY 2016. Utilization Of Traditional Drug Plant By The People's Community Subdistrict District Of Kupang Timur 2016. Jurnal Info Kesehatan, 14(1), 1112-1125.

Sari, MS, & Ridwan, A. 2016. The Effectiveness of Areca Nut Ethanol Extract Against GLUT4 Density in Skeletal Muscle Cells of Mice Induced by Hyperglycemia. Journal of Biological Resources, 2:2, 52-58.

Satyarsa, AB 2019. Potential effects of alkaloid vindolicine substances in tapak dara leafs (Catharanthus roseus (L.) G. Don) in reducing blood glucose levels. Journal of Medicine and Health, 2:4.

Septiana, E., Bustanussalam, B., & Simanjuntak, P. 2019. Inhibitory activity of -glucosidase and free radical scavenging of endophytic mold extract isolated from turmeric rhizome. Health Research and Development Media, 29:3, 189-196.

Sujono, TA, Wahyuni, AS, Da'i, M., Kusumowati, ITD, Suhendi, A., Munawaroh, R., & Lestari, S. 2015. Effect of giving Meniran (Phyllanthus niruri L) ethanol extract for 90 days on mouse liver function. Muhammadiyah Surakarta university.

Susilawati, NLPA, Cahyaningrum, PL, & Wiryanatha, IB 2021. Utilization of Medicinal Plants to Overcome Diabetes Mellitus in Denpasar City. Widya Kesehatan, 3(2): 1-6.

Sutrisno, S., & Hidayat, DP 2018. The Effectiveness of Using Guava Leaves (Psidium Guajava) And Red Betel Leaves (Piper Crocatum) Against Odor Control (Odor) In Patients With Diabetes Mellitus At Fatchul Wound Care. The Shine Light of the Ners World, 3:1,11-18

Tandi, J., Niswatulfahriyati, N., Nurmadinah, N., & Handayani, TW 2019. Test of Basil Leaf Ethanol Extract Against Blood Glucose Levels, And Streptozotocin-induced Histopathological Description of Rat Pancreas. Journal of Mandala Pharmacon Indonesia, 5(02), 81-90.

Yazid, EA, & Suryani, E. 2017. Blood Glucose Levels Before And After Administration Of Starfruit Leaf Extract And Soursop Leaf In Patients With Diabetes Mellitus. Journal of Science, 7:14.

Refbacks

  • There are currently no refbacks.




Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.