Identifikasi Kandungan Volatil Ekstrak Etanol Benalu Alpukat (Dendrophthoe pentandra) Sebagai Kandidat Antibiotik Alami Tuberkulosis
Abstract
Keywords
Full Text:
PDFReferences
Abdul-Hammed, M., Adedotun, I. O., Olajide, M., Irabor, C. O., Afolabi, T. I., Gbadebo, I. O., Rhyman, L., & Ramasami, P. (2022). Virtual screening, ADMET profiling, PASS prediction, and bioactivity studies of potential inhibitory roles of alkaloids, phytosterols, and flavonoids against COVID-19 main protease (M(pro)). Natural Product Research, 36(12), 3110–3116. https://doi.org/10.1080/14786419.2021.1935933
Agarwal, R., Malhotra, P., Awasthi, A., Kakkar, N., & Gupta, D. (2005). Tuberculous dilated cardiomyopathy: an under-recognized entity? BMC Infectious Diseases, 5, 1–5.
Barlow, B. A. (1997). Loranthaceae. In Flora Malesiana, Series I, Vol. 13 (pp. 209-401). Rijksherbarium/Hortus Botanicus.
Cheng, X., Shkel, I. A., O’Connor, K., & Record, M. T. (2020). Experimentally determined strengths of favorable and unfavorable interactions of amide atoms involved in protein self-assembly in water. Proceedings of the National Academy of Sciences, 117(44), 27339 LP – 27345. https://doi.org/10.1073/pnas.2012481117
Dallakyan, S., & Olson, A. (2015). Small-Molecule Library Screening by Docking with PyRx. Methods in Molecular Biology (Clifton, N.J.), 1263, 243–250. https://doi.org/10.1007/978-1-4939-2269-7_19
Downey, P. O. (1998). An inventory of host species for each aerial mistletoe species (Loranthaceae and Viscaceae) in Australia. Cunninghamia, 5(3), 685-720.
Guzmán-Rodríguez, L. F., Cortés-Cruz, M. A., Rodríguez-Carpena, J. G., Coria-Ávalos, V. M., & Muñoz-Flores, H. G. (2020). Biochemical profile of avocado (Persea americana Mill) foliar tissue and its relationship with susceptibility to mistletoe (Family Loranthaceae). Revista Bio Ciencias, 7.
Herrmann, J.-L., & Lagrange, P.-H. (2005). Dendritic cells and Mycobacterium tuberculosis: which is the Trojan horse? Pathologie Biologie, 53(1), 35–40.
Hogan, A. B., Jewell, B. L., Sherrard-Smith, E., Vesga, J. F., Watson, O. J., Whittaker, C., Hamlet, A., Smith, J. A., Winskill, P., Verity, R., Baguelin, M., Lees, J. A., Whittles, L. K., Ainslie, K. E. C., Bhatt, S., Boonyasiri, A., Brazeau, N. F., Cattarino, L., Cooper, L. V, … Hallett, T. B. (2020). Potential impact of the COVID-19 pandemic on HIV, tuberculosis, and malaria in low-income and middle-income countries: a modelling study. The Lancet Global Health, 8(9), e1132–e1141. https://doi.org/10.1016/S2214-109X(20)30288-6
Houben, E. N. G., Nguyen, L., & Pieters, J. (2006). Interaction of pathogenic mycobacteria with the host immune system. Current Opinion in Microbiology, 9(1), 76–85.
Ishiwu, C. N., Obiegbuna, J. E., & Aniagolu, N. M. (2013). Evaluation of Chemical Properties of Mistletoe Leaves from Three Different Trees (Avocado, African Oil Bean and Kola). Nigerian Food Journal, 31(2), 1–7. https://doi.org/https://doi.org/10.1016/S0189-7241(15)30070-9
Joshi, K., Gupta, S. R. R., Verma, S., Sharma, R., Qureshi, S., Syed, M. A., & Nunia, V. (2023). Virtual screening of plant phytochemicals to discover potent Janus kinase-1 inhibitors against severe COVID-19 and sepsis. International Journal of Computational Biology and Drug Design, 15(5), 391–411. https://doi.org/10.1504/IJCBDD.2023.133834
Khusro, A., Aarti, C., & Agastian, P. (2016). Anti-tubercular peptides: A quest of future therapeutic weapon to combat tuberculosis. Asian Pacific Journal of Tropical Medicine, 9(11), 1023–1034. https://doi.org/10.1016/j.apjtm.2016.09.005
Lagunin, A., Stepanchikova, A., Filimonov, D., & Poroikov, V. (2000). PASS: prediction of activity spectra for biologically active substances. Bioinformatics, 16(8), 747–748.
Lan, J., Ge, J., Yu, J., Shan, S., Zhou, H., Fan, S., Zhang, Q., Shi, X., Wang, Q., Zhang, L., & Wang, X. (2020). Structure of the SARS-CoV-2 spike receptor-binding domain bound to the ACE2 receptor. Nature, 581(7807), 215–220. https://doi.org/10.1038/s41586-020-2180-5
Li, J.-X., Wang, Y., Hao, Y., Huo, X.-K., Sun, C.-P., Zhao, X.-X., Wang, J.-C., Zhang, J.-B., Ning, J., Tian, X.-G., Wang, C., Zhao, W.-Y., Lv, X., Li, Y.-C., & Ma, X.-C. (2022). Identification of Escherichia coli β-glucuronidase inhibitors from Polygonum cuspidatum Siebold & Zucc. Brazilian Journal of Pharmaceutical Sciences, 58. https://doi.org/10.1590/s2175-97902022e21394
Mandell, G. L. (2000). Mandell, Douglas and Bennett’s Principles and Practice of Infectious Diseases.
Moghadamtousi, S. Z., Hajrezaei, M., Abdul Kadir, H., & Zandi, K. (2013). Loranthus micranthus Linn.: Biological activities and phytochemistry. Evidence-Based Complementary and Alternative Medicine, 2013, 273712.
Muchtaridi, Y. A., Megantra, S., & Purnomo, H. (2018). Kimia Medisinal: Dasar-Dasar dalam Perancangan Obat. Prenada Media.
Musfiroh, I., Muchtaridi, M., Muhtadi, A., Diantini, A., Hasanah, A. N., Udin, L. Z., Susilawati, Y., Mustarichie, R., Kartasasmita, R. E., & Ibrahim, S. (2013). Cytotoxicity studies of xanthorrhizol and its mechanism using molecular docking simulation and pharmacophore modelling. Journal of Applied Pharmaceutical Science. https://doi.org/10.7324/JAPS.2013.3602
Nickrent, D. L. (2011). Santalales (Including Mistletoes). In Encyclopedia of Life Sciences. John Wiley & Sons, Ltd.
Norton, D. A., & Carpenter, M. A. (1998). Mistletoes as parasites: Host specificity and speciation. Trends in Ecology & Evolution, 13(3), 101-105.
Nurmiati, N., Periadnadi, P., Rahmadani, S. Y., Putra, W., & Wulandari, E. (2023). Antimicrobial and antioxidant test of several mistletoe extracts (Scurrula ferruginea (Roxb. Ex.Jack) Danser) from avocado plants. World Journal of Advanced Research and Reviews, 20, 672–679. https://doi.org/10.30574/wjarr.2023.20.3.1861
Quattrocchi, U. (2012). CRC World Dictionary of Medicinal and Poisonous Plants: Common Names, Scientific Names, Eponyms, Synonyms, and Etymology. CRC Press.
Queval, C. J., Brosch, R., & Simeone, R. (2017). The macrophage: a disputed fortress in the battle against Mycobacterium tuberculosis. Frontiers in Microbiology, 8, 2284.
Rahmaningsih, S., & Pujiastutik, H. (2019). An in vitro and in silico evaluation of the antibacterial activity of the bioactive compounds in Majapahit (Crescentia cujete L.) fruit. Veterinary World, 12(12), 1959–1965. https://doi.org/10.14202/vetworld.2019.1959-1965
Sunaryo, S., & Rachman, E. (2012). Komposisi jenis dan penyebaran benalu pada tanaman koleksi di Kebun Raya Cibodas, Jawa Barat. Berita Biologi, 11(2), 149-156.
Sunaryo & Uji, Tahan. (2010). Keanekaragaman Jenis Benalu Pemarasit Pada Tanaman Di Kebun Raya Baturraden Dan Sekitarnya. Jurnal Teknik Lingkungan, 11 (2), 205 – 212.
Sururi, A. M., Raihan, M., Aisa, E. R., Safitri, F. N., Constaty, I. C., & Tukiran. (2022). Anti-Inflammatory Activity of Stem Bark Dichloromethane Fraction Syzygium samarangense Extract as COX-2 Inhibitor: A Bioinformatics Approach. Jurnal Kimia Riset, 7(2), 94–100. https://doi.org/10.20473/jkr.v7i2.39662
Sururi, A. M., Tukiran, T., Aisa, E. R., & Raihan, M. (2024). Identification of bioactive compounds and ADMET profile of stem bark of Syzygium samarangense and their potential as antibreast cancer and antiinflammatory. Journal of Applied Pharmaceutical Science, 14(02), 273–280. https://doi.org/10.7324/JAPS.2024.143017
Taek, J., Prajogo, B. E. W., & Agil, M. (2018). Ethnomedicinal plants used for the treatment of malaria in Malaka, West Timor. Journal of Young Pharmacists, 10(2), 187-192.
The Plant List. (2013). Dendrophthoe pentandra (L.) Miq. Retrieved from http://www.theplantlist.org/tpl1.1/record/kew-2760950
Trott, O., & Olson, A. J. (2010). AutoDock Vina: improving the speed and accuracy of docking with a new scoring function, efficient optimization, and multithreading. Journal of Computational Chemistry, 31(2), 455–461. https://doi.org/10.1002/jcc.21334
Vidal-Russell, R., & Nickrent, D. L. (2008). The first mistletoes: Origins of aerial parasitism in Santalales. Molecular Phylogenetics and Evolution, 47(2), 523-537.
Watson, D. M. (2001). Mistletoe—A keystone resource in forests and woodlands worldwide. Annual Review of Ecology and Systematics, 32(1), 219-249.
WHO. (2024). Tuberculosis. Https://Www.Who.Int/Health-Topics/Tuberculosis#tab=tab_1.
Xiao, L. Y., & Pu, Z. H. (2018). Seed dispersal of parasitic Loranthaceae: Sites of seed deposition and seedling establishment. Flora, 249, 116-123.
Yan, Z. (2013). Functional Anatomy of Haustorium of Loranthus parasiticus. In Parasitic Flowering Plants (pp. 53-66). Springer.
Yang, Y., Zhao, N., Xu, X., Zhou, Y., Luo, B., Zhang, J., Sui, J., Huang, J., Qiu, Z., & Zhang, X. (2023). Discovery and mechanistic study of novel Mycobacterium tuberculosis ClpP1P2 inhibitors. Journal of Medicinal Chemistry, 66(24), 16597–16614.
Yang, Y., Zhu, Y., Yang, T., Li, T., Ju, Y., Song, Y., He, J., Liu, H., Bao, R., & Luo, Y. (2019). Inhibiting Mycobacterium tuberculosis ClpP1P2 by addressing the equatorial handle domain of ClpP1 subunit. BioRxiv, 713214.
Zaman, K. (2010). Tuberculosis: a global health problem. Journal of Health, Population, and Nutrition, 28(2), 111–113. https://doi.org/10.3329/jhpn.v28i2.4879
DOI: https://doi.org/10.33394/bioscientist.v12i2.13326
Refbacks
- There are currently no refbacks.

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
Bioscientist : Jurnal Ilmiah Biologi is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License
Editorial Address: Pemuda Street No. 59A, Catur Building Floor I, Mataram City, West Nusa Tenggara Province, Indonesia