Identification of Java Tea Adulteration by Babadotan and Tekelan using Machine Learning
Abstract
Java Tea (Orthosiphon aristatus) is a common herbal medicinal plant that functions as a health treatment and treats various diseases. The high demand for Java Tea causes high prices and a decrease in the amount of medicinal plant raw materials, causing various quality control problems such as the content of various bioactive components and adulteration from babadotan and tekelan. So far, the detection of adulteration has been carried out by various analyzes, including chemical analysis and statistical methods to process data. The data used is of high dimension with a very high-density level, thus causing difficulties in classification. The mixed data of Orthosiphon aristatus consists of 1201 features with a total sample of 216. This study uses a Random Forest (RF) method with a total of 100 trees, and the RF method is combined with the Recursive Feature Elimination (RFE) method. In the RF and RFE that can be produced, the optimum value for the number of features is 244. The experimental evaluation results revealed that the proposed method could achieve a high accuracy of 81.82% in identifying Orthosiphon aristatus.
Full text article
References
Chen Q, Meng Z, Liu X, Jin Q, Su R. 2018. Decision Variants for the Automatic Determination of Optimal Feature Subset in RF-RFE. Genes, 9, 301: doi: 10.3390/genes9060301.
Dastjerdi AG, Akhgari M, Kamali A, Mousavi Z. 2018. Principal component analysis of synthetic adulterants in herbal supplements advertised as weight loss drugs. 236-241: doi:10.1016/j.ctcp.2018.03.007.
Ellahham S, Ellahham N, Simsekler MCE. Application of artificial intelligence in the health care safety context: opportunities and challenges. Am J Med Qual 2019. https://doi.org/10.1177/1062860619878515. 1062860619878515.
Fitria AR. 2018. Deteksi pemalsuan kumis kucing dari babadotan Dan tekelan menggunakan kombinasi spektrum Uv-vis dan analisis diskriminan. Bogor. Indonesia. IPB University.
Geng L, Chaudhuri A, Talmon G, Wisecarver JL, Wang J. 2013. TGF-Beta Suppresses VEGFA-Mediated Angiogenesis in Colon Cancer Metastasis. PLoSONE 8(3): e59918. doi:10.1371/journal.pone.0059918.
Hernadi E, Rohaeti E, Rafi M, Wahyuni WT, Putri, SP, Fukusaki E 2018. HPLC fingerprinting coupled with linear discriminant analysis for the detection of adulteration in Orthosiphon aristatus. Journal of Liquid Chromatography & Related Technologies 42 (15-16): 513-520. doi:10.1080/10826076.2019.1629956.
Hitziger M, Ließ M. Comparison of three supervised learning methods for digital soil mapping: application to a complex terrain in the ecuadorian andes.Soil Sci. 2014. https://doi.org/10.1155/2014/809495.
Ichwan SJA, Husin A, Suriyah WH, Lestari W, Omar MN, Kasmuri AR. 2019. Anti-neoplastic potential of ethyl-p-methoxycinnamate of Kaempferia galanga on oral cancer cell lines. Material Today: Proceedings 16(4): 2115-2121.
Khammas BM. 2020. Ransomware Detection using Random Forest Technique. vol 6. pp.325-331. ICT Express. https://doi.org/10.1016/j.icte.2020.11.001.
Masuda T, Jitoe A, Isobe J, Nakatani N, Yonemori S. 1992. Anti-oxidate and anti-infammatory curcumin-related phenolics from rhizomes of curcuma domestica. Phytochemistry. 32(6): 1557-1560. https://doi.org/10.1016/0031-9422(93)85179-U.
Papadopoulos S, Azar E, Woon W-L, Kontokosta CE. Evaluation of tree-based ensemble learning algorithms for building energy performance estimation. J Build Perform Simul 2018;11:322–32. https://doi.org/10.1080/19401493.2017.1354919.
Ucuzian AA, Gassman AA, East AT, Greisler HP. Molecular mediators of angiogenesis. J Burn Care Res. 2010 Jan-Feb;31(1):158-75. doi: 10.1097/BCR.0b013e3181c7ed82. PMID: 20061852; PMCID: PMC2818794.
Umar MI, Asmawi MZ, Sadikun A, Majid AM, Al-Suede FS, Hassan LE, et al. 2014. Ethyl-p-methoxycinnamate isolated from kaempferia galangal inhibits inflammation by suppressing interleukin-1, tumor necrosis factor-a, and angiogenesis by blocking endothelial functions. Clinics. 69(2):134-144.
Vijayan C, Adersh M, Reji SR, Nair GM. 2013. Screening biological activities of orthoshiphon aristatus. International Journal of Pharmacy and Pharmaceutical Sciences 5(4): 594-600.
Walkowiak A, Ledzinski L, Zapadka M, Kupcewicz. Detection of adulterants in dietary upplements with Ginkgo biloba extract by attenuated total reflectance Fourier transform infrared spectroscopy and multivariate methods PLS-DA and PCA. 222-228: doi:10.1016/j.saa.2018.10.008.
Zhang Y, Sun S, Dai J, Wenyu W, Huijuan C, Jianbing W, Xiaojun G. 2011. Quality Control Method for Herbal Medicine–Chemical Fingerprint Analysis. 10.5772/23962.
[WHO] World Health Organization. 2013. WHO Traditional Medicine Strategy 2014-2023. Ganeva. Switzerland.
Authors
This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License. Copyright @2017. This is an open-access article distributed under the terms of the Creative Commons Attribution-NonCommercial-ShareAlike 4.0 International License (http://creativecommons.org/licenses/by-nc-sa/4.0/) which permits unrestricted non-commercial used, distribution and reproduction in any medium