Phytochemical Constituents of Cinnamomum burmannii (Ness & T.Nees) Blume: A Systematic Review
Abstract
Background: Cinnamomum burmannii is an Indonesian native cinnamon species with significant potential for developing pharmaceutical and functional food products. Methodology: This study aims to identify and analyze the phytochemical constituents of C. Burmannii through a systematic literature review using PRISMA databases such as PubMed, Scopus, and Science Direct,were searched from 2015-2025. Findings: The findings reveal that C. Burmannii contains diverse bioactive compounds, including aromatic aldehydes, phenolics, flavonoids, terpenoids, coumarins, aromatic alcohols, organic acids, and aromatic esters. Dominant compounds such as cinnamaldehyde, quercetin, catechin, and eugenol exhibit strong antimicrobial, antioxidant, antidiabetic, anti-inflammatory, and analgesic activities. Quantitative analysis shows total phenolic content ranging from 31–89 mg GAE/100 g, total flavonoid 15–80 mg QE/100 g, and total tannin 89–217 mg CE/g, with ethanol extraction yielding optimal results. Several novel pure compounds, including Burmanoside, Burmafuranic acid, Burmannic acid, and o-hydroxycinnamic acid, have been isolated and demonstrate antiproliferative and photoprotective activities. Contribution: This systematic review highlights the diversity of phytochemical constituents in C. Burmannii and emphasizes the influence of plants parts and extraction methods on phytochemicals profiles.
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Afdal, M., Kasim, A., Alimon, A. R., & Abdullah, N. (2023). Investigation of The Antioxidant Activity of Cinnamon Bark Extracted with Different Solvents. Jurnal Ilmiah Ilmu-Ilmu Peternakan, 26(1), 68–79. https://doi.org/10.22437/jiiip.v26i1.24368
Amin, S., Mutiara Guswara, J., Zulvania, W., & Rahma, A. (2025). Kajian Struktur Dan Mekanisme Senyawa Aktif Kayu Manis Sebagai Terapi Alternatif Diabetes Melitus: Tinjauan Kimia Medisinal. Jurnal Sains Dan Ilmu Terapan, 8(1), 280–292.
Andini, Y. W., Cahyasari, I. A., & Primaharinastiti, R. (2020). Standardization Bark of Cinnamomum burmannii Nees Ex Bl . from Five Areas of Indonesia Plant collection. 12(3), 578–588.
Anggraini, D. T., Prihanta, W., & Purwanti, E. (2015). Penggunaan Ekstrak Batang Kayu Manis (Cinnamomum burmannii) Terhadap Kualitas Minuman Nata de Coco Using Extract of The Cinnamon (Cinnamomum burmanni) Toward Quality from Nata de Coco Beverages. Seminar Nasional XII Pendidikan Biologi FKIP UNS, 2012, 915–921.
Chairunnisa, Tamhid, H. A., & Nugraha, A. T. (2017). Gas chromatography - Mass spectrometry analysis and antibacterial activity of Cinnamomum burmanii essential oil to Staphylococcus aureus and Escherichia coli by gaseous contact. AIP Conference Proceedings, 1823(April 2020). https://doi.org/10.1063/1.4978146
Darmayuda, I. P. P. 1., ; Suardana, I. G. 2., & ; Bawa Putra, A. A. 3. (2021). ANALYSIS OF TOTAL FLAVONOID LEVELS OF ETHANOL EXTRACT (Cinnamon (Cinnamomum burmanii Blume) LEAVES WITH UV-VIS SPECTROPHOTOMETRY METHOD. 9(3), 115–120.
Djarot, P., Yulianita, Utami, N. F., Putra, A. M., Putri, Y. I. M., Muhardianty, S. M., Suciyani, T. A., & Syaepulrohman, A. (2023). Bioactivities and Chemical Compositions of Cinnamomum burmannii Bark Extracts (Lauraceae). Sustainability (Switzerland) , 15(2). https://doi.org/10.3390/su15021696
Emilda, E. (2018). Efek Senyawa Bioaktif Kayu Manis Cinnamomum burmanii NEES EX.BL.) Terhadap Diabetes Melitus: Kajian Pustaka. Jurnal Fitofarmaka Indonesia, 5(1), 246–252. https://doi.org/10.33096/jffi.v5i1.316
Ervina, M., Diva, J., Caroline, & Soewandi, A. (2023). The solvents influence in the continuous extraction to antioxidant and α-glucosidase inhibition of Cinnamomum burmannii bark. Food Research, 7(4), 258–264. https://doi.org/10.26656/fr.2017.7(4).1022
Fajar, A., Abdillah, A., Hamzah, M., Manurung, R., & Abduh, M. Y. (2019). Effect of tree age on the yield, productivity, and chemical composition of essential oil from Cinnamomum burmannii. Current Research on Biosciences and Biotechnology, 1(1), 17–22. https://doi.org/10.5614/crbb.2019.1.1/scdi5665
Farag, M. A., Kabbash, E. M., Mediani, A., Döll, S., Esatbeyoglu, T., & Afifi, S. M. (2022). Comparative Metabolite Fingerprinting of Four Different Cinnamon Species Analyzed via UPLC–MS and GC–MS and Chemometric Tools. Molecules, 27(9). https://doi.org/10.3390/molecules27092935
Fraga-corral, M., Garc, P., Pereira, A. G., Lourenço-lopes, C., Jimenez-lopez, C., Prieto, M. A., & Simal-gandara, J. (2020). Technological Application of Tannin-Based Extracts. 1–27.
Gilani, S., & Najafpour, G. (2022). Evaluation of the extraction process parameters on bioactive compounds of cinnamon bark : A comparative study. Process Biochemistry, 114(February), 93–101. https://doi.org/10.1016/j.procbio.2022.01.022
Handayani, A., Lailaty, I. Q., Rosyidah, A., Sari, D. R. T., Yunarto, N., & Suherman, D. (2024). Indonesian Cinnamon (Cinnamomum burmanni (Nees & T. Nees) Blume) as Promising Medicinal Resources: A Review. Jurnal Sylva Lestari, 12(3), 610–633. https://doi.org/10.23960/jsl.v12i3.929
Haresmita, P. P., & Pradani, M. P. K. (2022). Penetapan Kadar Total Flavonoid Dalam Jamu “X” Dengan Metode Spektrofometri Uv-Visibel. Jurnal Farmasi Sains Dan Praktis, 8(2), 177–184.
Husna, F., Syahrizal, D., Washilah, H., & Ananda, P. (2024). Antioxidant Potential , Anti-Diabetes , and Toxicity of Aceh Cinnamon Extract (Cinnamomum burmannii) Potensi antioksidan , Anti-Diabetes dan toksisitas Ekstrak Kayu Manis Aceh ( Cinnamomum burmannii ). 11(1), 1-14.
Ilmi, I. N., Filianty, F., & Yarlina, V. P. (2022). Sediaan Kayu Manis sebagai Minuman Fungsional Antidiabetes: Kajian Literatur. Kimia Padjadjaran, 1(1), 31–59.
Julianto, T. S. (2019). Fitokimia Tinjauan Metabolit Sekunder dan Skrining fitokimia. In Jakarta penerbit buku kedokteran EGC (Vol. 53, Issue 9).
Khasanah, L., Anandhito, B., Uyun, Q., Utami, R., & Manuhara, G. (2017). OptImization of Two Stages Extraction Process dan Characterization of Cinnamon Leaf Oleoresin (Cinnamomum Burmanii). Indonesian Journal of Essential Oil, 2, 20–28. https://doi.org/10.21776/ub.ijeo.2017.001.01.03
Khedkar, S., & Khan, M. A. (2023). Aqueous Extract of Cinnamon ( Cinnamomum spp .): Role in. 2023.
Lee, H., Jo, Y., Ameer, K., & Kwon, J. (2018). Optimization of green extraction methods for cinnamic acid and cinnamaldehyde from Cinnamon ( Cinnamomum cassia ) by response surface methodology. Food Science and Biotechnology, 27(6), 1607–1617. https://doi.org/10.1007/s10068-018-0441-y
Lewa, S., & Gugule, S. (2022). Cinnamon (Cinnamomum burmannii) Bark Essential Oil as Raw Material. https://doi.org/10.29303/aca.v5i1.80
Li, Y., Tan, B., Cen, Z., Fu, Y., Zhu, X., He, H., Kong, D., & Wu, H. (2021). The variation in essential oils composition , phenolic acids and flavonoids is correlated with changes in antioxidant activity during Cinnamomum loureirii bark growth. Arabian Journal of Chemistry, 14(8), 103249. https://doi.org/10.1016/j.arabjc.2021.103249
Liang, Y., Li, Y., Sun, A., & Liu, X. (2019). Chemical compound identification and antibacterial activity evaluation of cinnamon extracts obtained by subcritical n-butane and ethanol extraction. Food Science and Nutrition, 7(6), 2186–2193. https://doi.org/10.1002/fsn3.1065
Liu, Z., Li, H., Cui, G., Wei, M., Zou, Z., & Ni, H. (2021). Efficient extraction of essential oil from Cinnamomum burmannii leaves using enzymolysis pretreatment and followed by microwave-assisted method. Lwt, 147(February), 111497. https://doi.org/10.1016/j.lwt.2021.111497
Lopes, J. D. S., Lima, A. B. S. de, Cangussu, R. R. da C., Silva, M. V. da, Ferrão, S. P. B., & Santos, L. S. (2022). Application of spectroscopic techniques and chemometric methods to differentiate between true cinnamon and false cinnamon. Food Chemistry, 368(August 2021), 1–8. https://doi.org/10.1016/j.foodchem.2021.130746
Maslahah, N., & Hera, N. (2023). Kandungan Senyawa Bioaktif dan Kandungan Tanaman Kayu Manis (Cinnamomum burmannii). BSIP-Perkebunan, 1(3), 5–7.
Muslikh, F. A., Nahdhia, N., Susilawati, D., Sari, F., Nugroho, S. A., Werdiningsih, W., & Basuki, D. R. (2025). Prediksi Druglikeness dan Potensi Aktivitas Biologis Senyawa Metabolit Sekunder Daun Asam Jawa (Tamarindus indica). Jurnal Sintesis: Penelitian Sains Terapan Dan Analisisnya, 6(1), 49–60.
Nabavi, S. F., Lorenzo, A. Di, Izadi, M., Sobarzo-Sánchez, E., Daglia, M., & Nabavi, S. M. (2015). Antibacterial Effects of Cinnamon: From Farm to Food, Cosmetic and Pharmaceutical Industries. 7729–7748. https://doi.org/10.3390/nu7095359
Nasution, R., Mailidar, D., Bahi, M., Saidi, N., Marianne, M., & Iqhrammullah, M. (2022). ISOLATION OF THE ACTIVE COMPOUND FROM THE BARK OF Cinnamomum burmanniiAS A SUNSCREEN. Rasayan Journal of Chemistry, 15(1), 557–563. https://doi.org/10.31788/RJC.2022.1516619
Nunes, C., de J. Raposo, M. F., Petronilho, S., Machado, F., Fulgêncio, R., Gomes, M. H., Evtuguin, D. V., Rocha, S. M., & Coimbra, M. A. (2022). Cinnamomum burmannii decoction: A thickening and flavouring ingredient. Lwt, 153(September 2021). https://doi.org/10.1016/j.lwt.2021.112428
Pagliari, S., Forcella, M., Lonati, E., Sacco, G., Romaniello, F., Rovellini, P., Fusi, P., Palestini, P., Campone, L., Labra, M., Bulbarelli, A., & Bruni, I. (2023). Antioxidant and Anti-Inflammatory Effect of Cinnamon. Foods, 12, 1–18.
Panjaitan, C. C., Widyarman, A. S., Amtha, R., & Astoeti, T. E. (2022). Antimicrobial and antibiofilm activity of cinnamon (Cinnamomum burmanii) extract on periodontal pathogens—An in vitro study. European Journal of Dentistry, 16(04), 938–946.
Pires, M. A., Pastrana, L. M., Fuciños, P., Abreu, C. S., & Oliveira, S. M. (2020). Sensorial Perception of Astringency : Oral Mechanisms and Current Analysis Methods Foods, 9(10), 1124. https://doi.org/10.3390/foods9101124.
Prasetyorini, ., W., D. I., Yulianita, ., F. U., N., & Rani, N. (2022). Antimicrobial Activities Assessment of Cinnamon Bark (Cinnamomum burmannii Nees & T. Nees) Extract against Caries Factors. 494–501. https://doi.org/10.5220/0010205500002775
Qarani, W., Husna, F., Yulia, W., Zulkarnain, Z., Syahrizal, D., Gani, B. A., Sary, N. L., & Wardhani, B. W. K. (2023). Antioxidant and antiaging activities of Cinnamomum burmannii, Michelia champaca and their combinations. Narra J, 3(2), 1–11. https://doi.org/10.52225/narra.v3i2.111
Queiroz, G. De, Pereira, A., Alexandre, H., Rocha, O., & Castanho, K. (2023). Biological and pharmacological aspects of tannins and potential biotechnological applications. 414(February). https://doi.org/10.1016/j.foodchem.2023.135645
Rana, P., & Sheu, S. C. (2023). Discrimination of four Cinnamomum species by proximate, antioxidant, and chemical profiling: towards quality assessment and authenticity. Journal of Food Science and Technology, 60(10), 2639–2648. https://doi.org/10.1007/s13197-023-05788-y
Rizki, W. T., Wahyuni, W. S., Sari, R. D., Lestari, S. M., & Rahmadevi, R. (2024). Tannin Extraction from Bark of Cinnamomum burmannii and Its Application for use as Natural Dye in Cosmetic Products Tannin Extraction from Bark of Cinnamomum burmannii and Its Application for use as Natural Dye in Cosmetic Products. March. https://doi.org/10.24845/ijfac.v9.i1.35
Serrano, N., Pages-rebull, J., & Clara, P. (2024). Trends in Food Science & Technology Analytical methods for cinnamon authentication. 146(November 2023). https://doi.org/10.1016/j.tifs.2024.104388
Sharifi-Rad, J., Dey, A., Koirala, N., Shaheen, S., El Omari, N., Salehi, B., Goloshvili, T., Cirone Silva, N. C., Bouyahya, A., Vitalini, S., Varoni, E. M., Martorell, M., Abdolshahi, A., Docea, A. O., Iriti, M., Calina, D., Les, F., López, V., & Caruntu, C. (2021). Cinnamomum Species: Bridging Phytochemistry Knowledge, Pharmacological Properties and Toxicological Safety for Health Benefits. Frontiers in Pharmacology, 12(May), 1–27. https://doi.org/10.3389/fphar.2021.600139
Silva, M. L., Bernardo, M. A., Singh, J., & de Mesquita, M. F. (2022). Cinnamon as a Complementary Therapeutic Approach for Dysglycemia and Dyslipidemia Control in Type 2 Diabetes Mellitus and Its Molecular Mechanism of Action: A Review. Nutrients, 14(13). https://doi.org/10.3390/nu14132773
Singh, B., Nathawat, S., & Avtar Sharma, R. (2023). Antimicrobial potential of Indian Cinnamomum species. Saudi Journal of Biological Sciences, 30(2), 103549. https://doi.org/10.1016/j.sjbs.2022.103549
Sirait, T. S., Arianto, A., & Dalimunthe, A. (2023). Phytochemical Screening of Cinnamon Bark (Cinnamomum burmanii)(C. Ness & T. Ness) C. Ness ex Blume Ethanol Extract and Antioxidant Activity Test with DPPH (2, 2-diphenyl-1-picrylhydrazyl) Method. International Journal of Science, Technology & Management, 4(1), 254–259.
Susilowati, R., & Setiawan, A. M. (2020). Cinnamomum burmannii (Nees & T. Nees) Blume and Eleutherine palmifolia (L.) Merr. extract combination ameliorate lipid profile and heart oxidative stress in hyperlipidemic mice. Veterinary World, 13(7), 1404–1409. https://doi.org/10.14202/vetworld.2020.1404-1409
Tenouye, A., Anwar, Y., & Agustian, E. (2025). Identification of Essential Oils of Cinnamomum burmannii Essential Oil using Gas Chromatography-Mass Spectrometry ( GC-MS ). 23(2), 251–256. https://doi.org/10.19184/bioedu.v23i2.53699
Tisnadjaja, D., Irawan, H., Ekawati, N., Bustanussalam, B., & Simanjuntak, P. (2020). Potency of Cinnamomum burmannii as Antioxidant and α Glucosidase Inhibitor and Their Relation to Trans-Cinamaldehyde and Coumarin Contents. Jurnal Fitofarmaka Indonesia, 7(3), 20–25. https://doi.org/10.33096/jffi.v7i3.639
Utami, D., Rahayu, C., Hakim, R. A., Mawarni, S. A., & Satriani, A. R. (2022). Indonesian cinnamon (Cinnamomum burmannii): Extraction, flavonoid content, antioxidant activity, and stability in the presence of ascorbic acid. Cosmetics, 9, 57. https://doi.org/10.3390/cosmetics9030057.
Wang, Y. C., Wang, V., & Chen, B. H. (2023). Analysis of bioactive compounds in cinnamon leaves and preparation of nanoemulsion and byproducts for improving Parkinson’s disease in rats. Frontiers in Nutrition, 10(August). https://doi.org/10.3389/fnut.2023.1229192
Yang, T., HC, Y., HT, L., SL, L., & CY, C. (2023). A New Tetrahydrofuran of Cinnamomum Burmannii. Chemical & Pharmaceutical Research, 5(1), 3–7. https://doi.org/10.33425/2689-1050.1047
Yang, T., HC, Y., HT, L., SL, L., & CY, C. (2024). A Novel Metabolite of Cinnamomum burmani. Chemical & Pharmaceutical Research, 6(1), 3–7. https://doi.org/10.33425/2689-1050.1057
Yuwanda, A., Adina, A., & Farmasita, R. (2023). Kayu Manis (Cinnamomum burmannii (Nees and T. Nees) Blume): Review tentang Botani, Penggunaan Tradisional, Kandungan Senyawa Kimia, dan Farmakologi. Journal of Pharmacy and Halal Studies, 1, 17–22. https://doi.org/10.70608/3mk0s904
Yuwanda, A., Budipratama Adina, A., & Farmasita Budiastuti, R. (2023). Kayu Manis (Cinnamomum burmannii (Nees and T. Nees) Blume): Review tentang Botani, Penggunaan Tradisional, Kandungan Senyawa Kimia, dan Farmakologi. Journal of Pharmacy and Halal Studies, 1(1), 17–22. https://doi.org/10.70608/3mk0s904
Zhang, X., Lin, X., Cao, J., Xie, G., Yang, X., Liu, B., Xu, X., Cheng, F., Chen, H., & Pang, Y. (2024). Application of Cinnamomum burmannii Essential Oil in Promoting Wound Healing. Molecules (Basel, Switzerland), 29(9), 1–18. https://doi.org/10.3390/molecules29092080
DOI: https://doi.org/10.36987/jpbn.v11i4.8264
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