Epigallocatechin gallate Mucoadhesive Gingival Patch as Potential Biomaterial to Regulate Macrophage and Lymphocyte Cells in Periodontitis: A Review
Downloads
Background: Periodontitis is a periodontal disease that affects more than 743 million people
worldwide and causes damage to the periodontal ligament and alveolar bone. One of the bacteria
that can cause periodontitis is Porphyromonas gingivalis (P.gingivalis). P. gingivalis has virulence factors that can damage the periodontal tissue. Treatment of periodontitis is in the form of non- surgical therapy such as scaling and root planning and some cases, doxycycline can be given as adjunctive therapy after scaling and root planing. Epigallocatechin gallate (EGCG) is one of the catechins found in green tea and has anti-bacterial properties. Purpose: The study aimed to describe the potency of the mucoadhesive gingival patch with EGCG green tea against the number of macrophage cells and lymphocyte cells during periodontitis through narrative review. Review: Mucoadhesive gingiva patch loaded with EGCG has the advantages such as maintaining drug bioavailability, non-invasive, and optimizing drug distribution. Using a mucoadhesive gingiva patch with EGCG can reduce macrophage and lymphocyte cells by inhibiting lipopolysaccharide, a virulence factor of P. gingivalis. Inhibited lipopolysaccharide will inhibit pro-inflammatory cytokines such as TNF-α and IL-6. Macrophage and lymphocyte cells will reduce due to the inhibition of pro inflammatory cytokines. Conclusion: Mucoadhesive gingiva patch with EGCG green tea potentially to decreased macrophage and lymphocyte cells in periodontitis.
Nazir MA. Prevalence of periodontal disease, its association with systemic diseases and prevention. Int J Health Sci (Qassim) [Internet]. 2017 [cited 2020 Aug 12];11(2):72–80. Available from: http://www.ncbi.nlm.nih.gov/pubmed/28539867
H R R, Dhamecha D, Jagwani S, Rao M, Jadhav K, Shaikh S, et al. Local drug delivery systems in the management of periodontitis: A scientific review. J Control Release. 2019;307:393–409.
Nazir M, Al-Ansari A, Al-Khalifa K, Alhareky M, Gaffar B, Almas K. Global Prevalence of Periodontal Disease and Lack of Its Surveillance. ScientificWorldJournal. 2020;2020:2146160.
Newman M, Takei H, Klokkevold P, Carranza F. Newman and Carranza's Clinical Periodontology. 13th ed. 2018. 62 p.
Pozhitkov AE, Leroux BG, Randolph TW, Beikler T, Flemmig TF, Noble PA. Towards microbiome transplant as a therapy for periodontitis: an exploratory study of periodontitis microbial signature contrasted by oral health, caries and edentulism. BMC Oral Health. 2015 Oct 14;15:125.
Lagha A Ben, Groeger S, Meyle J, Grenier D. Green tea polyphenols enhance gingival keratinocyte integrity and protect against invasion by Porphyromonas gingivalis. Pathog Dis. 2018;76(4):1–9.
Zhao H, Mei K, Yang L, Liu X, Xie L. Green tea consumption and risk for esophageal cancer: A systematic review and dose-response meta-analysis. Nutrition. 2021;87–88:111197.
Tominari T, Matsumoto C, Watanabe K, Hirata M, Grundler FMW, Miyaura C, et al. Epigallocatechin gallate (EGCG) suppresses lipopolysaccharide"induced inflammatory bone resorption, and protects against alveolar bone loss in mice. FEBS Open Bio. 2015 Jan 12;5(1):522–7.
Reyes L. Porphyromonas gingivalis. Trends Microbiol. 2021;29(4):376–7.
Banjar MW, Alshammari MMH. Genetic factors in pathogenesis of chronic periodontitis. J Taibah Univ Med Sci. 2014;9(3):245–7.
Bagavad Gita J, Aishwarya AB, Pavithra N, Chandrasekaran SC, Ann V George, Gnanamani A. A molecular technique to explore the relationship between Porphyromonas gingivalis and severity of chronic periodontitis: A clinical approach. Anaerobe. 2018 Feb;49:1–4.
Lunar Silva I, Cascales E. Molecular Strategies Underlying Porphyromonas gingivalis Virulence. J Mol Biol. 2021;433(7):166836.
Li Y, Li B, Liu Y, Wang H, He M, Liu Y, et al. Porphyromonas gingivalis lipopolysaccharide affects oral epithelial connections via pyroptosis. J Dent Sci. 2021 Oct;16(4):1255–63.
Xu W, Zhou W, Wang H, Liang S. Roles of Porphyromonas gingivalis and its virulence factors in periodontitis. Adv Protein Chem Struct Biol. 2020;120:45–84.
Najeeb S, Zafar MS, Khurshid Z, Zohaib S, Madathil SA, Mali M, et al. Efficacy of metformin in the management of periodontitis: A systematic review and meta-analysis. Saudi Pharm J. 2018 Jul;26(5):634–42.
Kwon T, Lamster IB, Levin L. Current Concepts in the Management of Periodontitis. Int Dent J. 2021 Dec;71(6):462–76.
Luis Muñoz-Carrillo J, Elizabeth Hernández-Reyes V, Eduardo García-Huerta O, Chávez-Ruvalcaba F, Isabel Chávez-Ruvalcaba M, Mariana Chávez-Ruvalcaba K, et al. Pathogenesis of Periodontal Disease. In: Periodontal Disease - Diagnostic and Adjunctive Non-surgical Considerations. IntechOpen; 2020. p. 1–14.
Prakoeswa FR. Peranan Sel Limfosit Dalam Imunulogi: Artikel Review. J Sains dan Kesehat. 2020 Dec 31;2(4):525–37.
Kurnia PA, Ardhiyanto HB, Suhartini. The Potency of Green Tea Extract [Camellia sinensis] Against Increase of Fibroblast Cells on Socket Post Tooth Extracti. e-Jurnal Pustaka Kesehat. 2015;3(1):122–7.
Liu Y, Zhao G, Li X, Shen Q, Wu Q, Zhuang J, et al. Comparative analysis of phenolic compound metabolism among tea plants in the section Thea of the genus Camellia. Food Res Int. 2020;135:109276.
Suryati L, Saptarini NM. Formulasi Sampo Ekstrak Daun Teh Hijau (Camellia sinensis var. assamica). Indones J Pharm Sci Technol. 2016;3(2):66–71.
Jia X, Zhang W, Fernie AR, Wen W. Camellia sinensis (Tea). Trends Genet. 2020 Oct 23;S0168-9525(20):30275–4.
de Almeida JM, Marques BM, Novaes VCN, de Oliveira FLP, Matheus HR, Fiorin LG, et al. Influence of adjuvant therapy with green tea extract in the treatment of experimental periodontitis. Arch Oral Biol. 2019 Jun;102:65–73.
Gao J, Mao Y, Xiang C, Cao M, Ren G, Wang K, et al. Preparation of β-lactoglobulin/gum arabic complex nanoparticles for encapsulation and controlled release of EGCG in simulated gastrointestinal digestion model. Food Chem. 2021 Aug 30;354:129516.
Jang M, Park R, Park Y-I, Cha Y-E, Yamamoto A, Lee JI, et al. EGCG, a green tea polyphenol, inhibits human coronavirus replication in vitro. Biochem Biophys Res Commun. 2021;547:23–8.
Li Y, Zhao Y, Han J, Wang Y, Lei S. Effects of epigallocatechin gallate (EGCG) on the biological properties of human dental pulp stem cells and inflammatory pulp tissue. Arch Oral Biol. 2021 Mar;123:2.
Li Y, Zhao Y, Han J, Wang Y, Lei S. Effects of epigallocatechin gallate (EGCG) on the biological properties of human dental pulp stem cells and inflammatory pulp tissue. Arch Oral Biol. 2021 Mar;123:1–10.
Chu C, Deng J, Man Y, Qu Y. Green Tea Extracts Epigallocatechin-3-gallate for Different Treatments. Biomed Res Int. 2017;2017:1–9.
Inayah S, Febrina L, Tobing NEKP, Fadraersada J. Formulasi dan Evaluasi Sediaan Patch Bukal Mukoadhesif Celecoxib. Proceeding Mulawarman Pharm Conf. 2018 Dec 31;8:177–83.
Gilhotra RM, Ikram M, Srivastava S, Gilhotra N. A clinical perspective on mucoadhesive buccal drug delivery systems. J Biomed Res. 2014 Mar;28(2):81–97.
Jacob L, Sajeeth C, Santhi K. Design, Development, and Evaluation of Mucoadhesive Patches of Nifedipine for Buccal Delivery. Asian J Pharm Sci Technol. 2012;2(1):13–22.
Mishra S, Kumar G, Kothiyal P. A Review Article: Recent Approaches in Buccal Patches. Pharma Innov. 2012;1(7):78–86.
Fitriyah H. Formulasi Patch Natrium Diklofenak Berbasis Polimer Hidroksi Propil Metil Selulosa (HPMC) Sebagai Sediaan Lokal Penanganan Inflamasi pada Penyakit Periodontal. Jakarta: UIN Syarif Hidayatullah; 2013.
Hasegawa Y, Nagano K. Porphyromonas gingivalis FimA and Mfa1 fimbriae: Current insights on localization, function, biogenesis, and genotype. Jpn Dent Sci Rev. 2021 Nov;57:190–200.
Novilla A, Djamhuri DS, Nurhayati B, Rihibiha DD, Afifah E, Widowati W. Anti-inflammatory properties of oolong tea ( Camellia sinensis ) ethanol extract and epigallocatechin gallate in LPS-induced RAW 264.7 cells. Asian Pac J Trop Biomed. 2017 Nov;7(11):1005–9.
Prasetya RC, Praharani D, Fatimatuzzahro N, Ermawati T, Tsalats FON. Efek pemberian seduhan kopi robusta (Coffea canephora) terhadap jumlah sel makrofag dan limfosit pada model tikus periodontitis kronis The effect of brewed robusta coffee (Coffea canephora) on macrophage and lymphocyte cells in rat model of chron. Padjadjaran J Dent Res Students. 2021 Apr 30;5(1):18.
Nakamura H, Ukai T, Yoshimura A, Kozuka Y, Yoshioka H, Yoshinaga Y, et al. Green tea catechin inhibits lipopolysaccharide-induced bone resorption in vivo. J Periodontal Res. 2010 Feb;45(1):23–30.
Ohishi T, Goto S, Monira P, Isemura M, Nakamura Y. Anti-inflammatory Action of Green Tea. Antiinflamm Antiallergy Agents Med Chem. 2016;15(2):74–90.
Nakayama M, Shimatani K, Ozawa T, Shigemune N, Tomiyama D, Yui K, et al. Mechanism for the antibacterial action of epigallocatechin gallate (EGCg) on Bacillus subtilis. Biosci Biotechnol Biochem. 2015;79(5):845–54.
Copyright (c) 2022 Sidarningsih Sidarningsih, Indeswati Diyatri, Reinaya Tifa Pratiwi, Jihan Hijriya Nabilla, Yuliati Yuliati, Rini Devijanti Ridwan
This work is licensed under a Creative Commons Attribution 4.0 International License.
This is an open access journal, and articles are distributed under the terms of the Creative Commons Lisence, which allows others to remix, tweak, and build upon the work non-commercially, as long as appropriate credit is given and the new creations are licensed under the identical terms.
Copyright notice:
IJDM by UNAIR is licensed under a Creative Commons Atribusi 4.0 Internasional.
- The journal allows the author to hold the copyright of the article without restrictions.
- The journal allows the author(s) to retain publishing rights without restrictions.
- The legal formal aspect of journal publication accessibility refers to Creative Commons Attribution (CC BY)