Irmanida Batubara
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Institut Pertanian Bogor. Jl. Agatis, Kampus IPB Dramaga, Bogor 16680, West Java, Indonesia

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The commercial potential of forest trees as medicinal and health ingredients Syamsul Hidayat; Ervizal A.M. Zuhud; Didik Widyatmoko; Bahruni BAHRUNI; Irmanida Batubara
Biodiversitas Journal of Biological Diversity Vol. 22 No. 7 (2021)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d220729

Abstract

Abstract. Hidayat S, Zuhud EAM, Widyatmoko D, Bahruni, Batubara I. 2021. The commercial potential of forest trees as medicinal and health ingredients. Biodiversitas 22: 2795-2804.  Indonesian forests contain many trees that belong to medicinal plants classified as non-timber forest products (NTFP). Although these plants have been used from generation to generation by several ethnic groups and even some of them have become commercial goods, many species have not received special attention in terms of their cultivation. This study aimed to explore the commercial value of forest trees as medicinal ingredients and obtain a recommended ranking for their cultivation. The method used was market surveys to herbal stores and questionnaires to experts related to medicinal plants. The results showed that there are 59 species of forest trees used as medicinal ingredients and health supplements. Cinnamomum burmanni, Morinda citrifolia, and Moringa oleifera have the most diverse commercial products in drugs and health stores. These three species also have active ingredients that potentially substitute for chemical drugs. Following the advice of medicinal plant experts, these three species are also included in the ten species recommended for immediate cultivation.
Diversity of medicinal plants used for skincare by Bulungan tribe in North Kalimantan, Indonesia and its melanin biosynthesis inhibition KARTINA KARTINA; IRMANIDA BATUBARA; HARLINDA KUSPRADINI; IRAWAN WIJAYA KUSUMA; WULAN TRI WAHYUNI; SAAT EGRA; TOHRU MITSUNAGA
Biodiversitas Journal of Biological Diversity Vol. 23 No. 3 (2022)
Publisher : Society for Indonesian Biodiversity

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.13057/biodiv/d230308

Abstract

Abstract. Kartina, Batubara I, Kuspradini H, Kusuma IW, Wahyuni WT, Egra S, Matsunaga T. 2022. Diversity of medicinal plants used for skincare by Bulungan tribe in North Kalimantan, Indonesia and its melanin biosynthesis inhibition. Biodiversitas 23: 1246-1253. Indigenous people of the Bulungan tribe in North Kalimantan, Indonesia have been utilizing plants for health purposes, including for skincare such as preventing skin from being dark due to melanin production. This study aimed to evaluate the diversity of medicinal plants utilized by the Bulungan tribe for skincare and determine the melanin biosynthesis inhibition activity. Plants having medicinal uses were investigated through literature studies and interviews with the members of Bulungan tribe in Tanjung Palas Tengah Village. Melanin biosynthesis inhibition was determined by identifying the tyrosinase inhibition potential using commercial tyrosinase enzyme, while intracellular and extracellular melanin biosynthesis production activity was determined using B16 melanoma cells. The results showed at least 19 plant species that have medicinal uses, including for skincare, with some of them having the potential for melanogenesis, both in suppressing and producing melanin. We found a plant sample with melanin suppression potential on B16 melanoma cell, namely Jatropha curcas, at 6.2 µg/ml concentration, which could decrease extracellular melanin content by 18%. Tyrosinase activity with L-tyrosine showed that Cinnamomum burmannii (root) (IC50: 3.4 ?g/mL) showed an insignificant difference with kojic acid, which served as positive control by showing an inhibitory level of (IC50: 0.14 ?g/mL). Based on the data obtained, a pharmacological study is recommended to investigate melanin biosynthesis as a skin whitening agent. We believe that this study can become basic data to discover several active compounds in future studies.