Analysis of antioxidant and antibacterial activity of cocoa pod husk extract (Theobroma cacao L.)
Downloads
Background: Theobroma cacao bean manufacturing worldwide includes undesired byproducts such as cocoa pod husks. Cocoa pods contain a variety of beneficial chemicals, including polyphenols. Polyphenols have a vital function in the treatment of many illnesses and infections of the oral cavity. This is due to their vital qualities in the oral cavity, including anti-inflammatory, antibacterial, and antioxidant actions. Purpose: The goal of this study was to look at the antioxidant content and antibacterial activity of cocoa pod husk extract (Theobroma cacao L.) against Phorphyromonas gingivalis (P. gingivalis) and Streptococcus mutans (S. mutans). Methods: Cocoa pod husk extract was produced using an ultrasonic homogenizer and 70% ethanol. Thin layer chromatography and the Folin–Ciocalteu test were used to determine the phytochemical content and total phenolic content of the extract. The 2,2-diphenyl-1-picryl-hydrazyl-hydrate technique was used to measure antioxidant activity. Minimum inhibitory concentration (MIC) tests were used to measure the antibacterial activity of ethanolic extract at concentrations of 1, 4, 8, 16, 32, and 64 mg/ml using a deep-well broth microdilution technique. Results: The presence of alkaloids, flavonoids, tannins, saponins, and triterpenoids was discovered in the cocoa pod husk extract. Conclusion: The antioxidant activity of the extract was significant (IC50 = 62 ppm), and the MIC of P. gingivalis and S. mutans was 16 mg/ml and 8 mg/ml, respectively.
Downloads
Cho Y-D, Kim W-J, Ryoo H-M, Kim H-G, Kim K-H, Ku Y, Seol Y-J. Current advances of epigenetics in periodontology from ENCODE project: a review and future perspectives. Clin Epigenetics. 2021; 13(1): 92. doi: https://doi.org/10.1186/s13148-021-01074-w
Wulandari P, Widkaja D, Nasution AH, Syahputra A, Gabrina G. Association between age, gender and education level with the severity of periodontitis in pre-elderly and elderly patients. Dent J. 2022; 55(1): 16–20. doi: https://doi.org/10.20473/j.djmkg.v55.i1.p16-20
Andriani I, Medawati A, Humanindito MI, Nurhasanah M. The effect of antimicrobial peptide gel RISE-AP12 on decreasing neutrophil and enhancing macrophage in nicotine-periodontitis Wistar rat model. Dent J. 2022; 55(2): 93–8. doi: https://doi.org/10.20473/j.djmkg.v55.i2.p93-98
Goriacko P, Veltri KT. Adverse drug effects involving the gastrointestinal system (pharmacist perspective). In: Pitchumoni CS, Dharmarajan T, editors. Geriatric Gastroenterology. Cham: Springer; 2021. p. 297–339. doi: https://doi.org/10.1007/978-3-030-30192-7_10
Bayan L, Koulivand PH, Gorji A. Garlic: a review of potential therapeutic effects. Avicenna J phytomedicine. 2014; 4(1): 1–14. pubmed: https://pubmed.ncbi.nlm.nih.gov/25050296/
Msomi NZ, Simelane MBC. Herbal medicine. In: Builders PF, editor. Herbal medicine. London: IntechOpen; 2019. doi: https://doi.org/10.5772/intechopen.72816
Yuanita T, Mooduto L, Lina RC, Muttaqin FA, Tangdan I, Marpaung REI, Sunur YK. Minimum inhibitory concentration of cocoa pod husk extract in Enterococcus faecalis extracellular polymeric substance biofilm thickness. Dent J. 2019; 52(4): 215–8. doi: https://doi.org/10.20473/j.djmkg.v52.i4.p215-218
Badan Pusat Statistik. Statistik kakao Indonesia 2020. Jakarta: BPS – Statistics Indonesia; 2020. p. 9–14. web: https://www.bps.go.id/publication/2021/11/30/a553dc1b3648d2f5cdad1789/statistik-kakao-indonesia-2020.html
Belwal T, Cravotto C, Ramola S, Thakur M, Chemat F, Cravotto G. Bioactive compounds from cocoa husk: extraction, analysis and applications in food production chain. Foods. 2022; 11(6): 798. doi: https://doi.org/10.3390/foods11060798
Kharouf N, Haikel Y, Ball V. Polyphenols in dental applications. Bioengineering. 2020; 7(3): 72. doi: https://doi.org/10.3390/bioengineering7030072
Papuc C, Goran G V, Predescu CN, Nicorescu V, Stefan G. Plant polyphenols as antioxidant and antibacterial agents for shelf-life extension of meat and meat products: classification, structures, sources, and action mechanisms. Compr Rev Food Sci Food Saf. 2017; 16(6): 1243–68. doi: https://doi.org/10.1111/1541-4337.12298
How KY, Song KP, Chan KG. Porphyromonas gingivalis: an overview of periodontopathic pathogen below the gum line. Front Microbiol. 2016; 7: 53. doi: https://doi.org/10.3389/fmicb.2016.00053
Cugini C, Klepac-Ceraj V, Rackaityte E, Riggs JE, Davey ME. Porphyromonas gingivalis : keeping the pathos out of the biont. J Oral Microbiol. 2013; 5(1): 19804. doi: https://doi.org/10.3402/jom.v5i0.19804
Rahayu YC, Dharmayanti AWS, Putri YE, Irmawati A. The analysis of proanthocyanidins cacao peel extract (Theobroma cacao L.) potential on the expression of TNF-a and COX-2 on periodontitis rat. Int J Pharm Res. 2020; 12(4): 3515–21. doi: https://doi.org/10.31838/ijpr/2020.12.04.594
Yuda PESK, Cahyaningsih E, Winariyanthi NLPY. Skrining fitokimia dan analisis kromatografi lapis tipis ekstrak tanaman patikan kebo (Euphorbia hirta L.). J Ilm Medicam. 2017; 3(2): 61–70. doi: https://doi.org/10.36733/medicamento.v3i2.891
Baba SA, Malik SA. Determination of total phenolic and flavonoid content, antimicrobial and antioxidant activity of a root extract of Arisaema jacquemontii Blume. J Taibah Univ Sci. 2015; 9(4): 449–54. doi: https://doi.org/10.1016/j.jtusci.2014.11.001
Faisal H, Handayani S. Comparison of antioxidant activity of ethanol extract of fruit and okra leaves (Abelmoschus esculentus L. Moench) with DPPH and ABTS methods. Indones J Pharm Clin Res. 2019; 2(2): 6–13. doi: https://doi.org/10.32734/idjpcr.v2i2.2815
Kiromah NZW, Husein S, Rahayu TP. Uji aktivitas antioksidan ekstrak etanol daun ganitri (Elaeocarpus Ganitrus Roxb.) dengan metode DPPH (2,2 Difenil-1-Pikrilhidazil). Pharmacon J Farm Indones. 2021; 18(1): 60–7. doi: https://doi.org/10.23917/pharmacon.v18i01.12161
Okeke MI, Okoli AS, Eze EN, Ekwume GC, Okosa EU, Iroegbu CU. Antibacterial activity of Citrus limonum fruit juice extract. Pak J Pharm Sci. 2015; 28(5): 1567–71. pubmed: https://pubmed.ncbi.nlm.nih.gov/26408878/
Simorangkir M, Nainggolan B, Silaban S. Antioxidant activity of vacuum column chromatography fractions of ethanol extract of sarang banua (Clerodenrum fragrans vent willd) leaves. J Phys Conf Ser. 2019; 1374(1): 012016. doi: https://doi.org/10.1088/1742-6596/1374/1/012016
Alebiosu CO, Yusuf AJ. Phytochemical screening, thin-layer chromatographic studies and UV analysis of extracts of Citrullus lanatus. J Pharm Chem Biol Sci. 2015; 3(2): 214–20. pdf: https://www.jpcbs.info/2015_3_2_10_Alebiosu.pdf
Chusniasih D, Tutik T. Identification phytochemical compound of ethanol and acetone extract of Cocoa Pods (Theobroma cacao L.) using GC-MS. J Phys Conf Ser. 2021; 1882(1): 012103. doi: https://doi.org/10.1088/1742-6596/1882/1/012103
Xie Y, Yang W, Tang F, Chen X, Ren L. Antibacterial activities of flavonoids: structure-activity relationship and mechanism. Curr Med Chem. 2014; 22(1): 132–49. doi: https://doi.org/10.2174/0929867321666140916113443
Kaczmarek B. Tannic acid with antiviral and antibacterial activity as a promising component of biomaterials”a minireview. Materials (Basel). 2020; 13(14): 3224. doi: https://doi.org/10.3390/ma13143224
Othman L, Sleiman A, Abdel-Massih RM. Antimicrobial activity of polyphenols and alkaloids in Middle Eastern plants. Front Microbiol. 2019; 10: 911. doi: https://doi.org/10.3389/fmicb.2019.00911
Mahizan NA, Yang S-K, Moo C-L, Song AA-L, Chong C-M, Chong C-W, Abushelaibi A, Lim S-HE, Lai K-S. Terpene derivatives as a potential agent against antimicrobial resistance (AMR) pathogens. Molecules. 2019; 24(14): 2631. doi: https://doi.org/10.3390/molecules24142631
Budi HS, Kriswandini IL, Iswara AD. Antioxidant activity test on ambonese banana stem sap (Musa parasidiaca var. sapientum). Dent J. 2015; 48(4): 188–92. doi: https://doi.org/10.20473/j.djmkg.v48.i4.p188-192
Sun X, Yang X, Xue P, Zhang Z, Ren G. Improved antibacterial effects of alkali-transformed saponin from quinoa husks against halitosis-related bacteria. BMC Complement Altern Med. 2019; 19(1): 46. doi: https://doi.org/10.1186/s12906-019-2455-2
Ola-mudathir F, Abdul-Wahab A, Moshood A, Obuotor E. Comparative evaluation of antioxidant properties of methanol extracts of allium cepa bulb, allium cepa bulb peels and allium fistulosum. Kragujev J Sci. 2018; 40(40): 131–41. doi: https://doi.org/10.5937/KgJSci1840131O
Kumar S, Sandhir R, Ojha S. Evaluation of antioxidant activity and total phenol in different varieties of Lantana camara leaves. BMC Res Notes. 2014; 7(1): 560. doi: https://doi.org/10.1186/1756-0500-7-560
Aryal S, Baniya MK, Danekhu K, Kunwar P, Gurung R, Koirala N. Total phenolic content, flavonoid content and antioxidant potential of wild vegetables from Western Nepal. Plants. 2019; 8(4): 96. doi: https://doi.org/10.3390/plants8040096
Martínez S, Fuentes C, Carballo J. Antioxidant activity, total phenolic content and total flavonoid content in sweet chestnut (Castanea sativa Mill.) cultivars grown in Northwest Spain under different environmental conditions. Foods. 2022; 11(21): 3519. doi: https://doi.org/10.3390/foods11213519
Andriana A, Jura MR. Antioxidant activity test of ethanol extract of ripe and young cocoa pods (Theobroma Cacao L.). J Akad Kim. 2022; 11(1): 64–71. doi: https://doi.org/10.22487/j24775185.2022.v11.i1.pp64-71
Pandjo SSK, Mustapa K, Ningsih P. Antioxidant activity test of acetone and ethanol extracts of cocoa (Theobroma cacao L.) beans husk. J Akad Kim. 2021; 10(1): 1–8. doi: https://doi.org/10.22487/j24775185.2021.v10.i1.pp1-8
Romaniuk JAH, Cegelski L. Bacterial cell wall composition and the influence of antibiotics by cell-wall and whole-cell NMR. Philos Trans R Soc B Biol Sci. 2015; 370(1679): 20150024. doi: https://doi.org/10.1098/rstb.2015.0024
Hirao C, Nishimura E, Kamei M, Ohshima T, Maeda N. Antibacterial effects of cocoa on periodontal pathogenic bacteria. J Oral Biosci. 2010; 52(3): 283–91. doi: https://doi.org/10.1016/S1349-0079(10)80033-7
Smullen J, Koutsou GA, Foster HA, Zumbé A, Storey DM. The antibacterial activity of plant extracts containing polyphenols against Streptococcus mutans. Caries Res. 2007; 41(5): 342–9. doi: https://doi.org/10.1159/000104791
Naqvi SAR, Nadeem S, Komal S, Naqvi SAA, Mubarik MS, Qureshi SY, Ahmad S, Abbas A, Zahid M, Khan N-U-H, Raza SS, Aslam N. Antioxidants: Natural antibiotics. In: Antioxidants. IntechOpen; 2019. doi: https://doi.org/10.5772/intechopen.84864
Copyright (c) 2023 Dental Journal
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.
- Every manuscript submitted to must observe the policy and terms set by the Dental Journal (Majalah Kedokteran Gigi).
- Publication rights to manuscript content published by the Dental Journal (Majalah Kedokteran Gigi) is owned by the journal with the consent and approval of the author(s) concerned.
- Full texts of electronically published manuscripts can be accessed free of charge and used according to the license shown below.
- The Dental Journal (Majalah Kedokteran Gigi) is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License