The effect of brown algae (Sargassum sp.) gel on the number of osteoclasts in periodontitis rats

Muhamat Muhtar S. Abdurrohman, Rahmawati Sri Praptiningsih, Yulistinawati Yulistinawati

Abstract


ABSTRACT

Introduction: Alveolar bone resorption in periodontitis is caused by increased activation of osteoclasts, causing an imbalance of bone remodeling.  Periodontitis treatment can be done mechanically with Scaling and Root Planing and accompanied by metronidazole.  Antibiotics have long-term drawbacks and can cause allergies, thus requiring an alternative to natural topical drugs such as brown algae gel.  This study aimed to to analyzed the effect of brown algae gel (sargassum sp) on the number of osteoclasts of alveolar bone in periodontitis rats. Methods: The research method was a True Experimental with a pretest-posttest-only control group design. Rats were divided into three groups; negative control (K-) was not given any treatment, positive control (K+) was given metronidazole ties plus 25% concentration, and the treatment group (KP) was given brown algae gel (Sargassum sp) 75% concentration. Data were analyzed by Friedman and Kruskal Wallis test. Results:There was a significant difference in the number of osteoclasts on days 8, 10, and 12, the decrease in the number of osteoclasts was higher in the brown algae treatment group than the negative control group (p=0.051). In the positive control group, there was a significant difference in the decrease of the number of osteoclasts compared to the brown algae treatment group (p=0.029). The number of osteoclasts was significantly different on day 12 (p=0.026).Conclusion: Adhering brown algae (Sargassum sp.) gel decreases osteoclasts in periodontitis rats.

Keywords: bone remodeling; bone resorption; brown algae gel (sargassum sp.); osteoclasts; periodontitis.


Keywords


bone remodeling; bone resorption; brown algae gel (sargassum sp.); osteoclasts; periodontitis.

Full Text:

PDF

References


REFERENCES

Wijaksana, IKE Periodontal Chart and Periodontal Risk Assessment as Materials for Evaluation and Education of Patients with Periodontal Disease. J Dent Health. 2019;6:19-25.

Fiorellini, JP, Kim, D. and Chang, Y.-C. Newman and Carranza’s Clinical Periodontology. 13th ed. China: Elsevier;2018.

Sari DR, Lestari C, Yandi S. Effect of Administration of Usnic Acid on Osteoblast Cell Number in Periodontitis Mice. B-Dent J. 2018;5(2):124–134.

Hasan A, Palmer RM. A clinical guide to periodontology: pathology of periodontal disease. British Dent J. Nature Pub Group. 2014;216(8):457–461.

Waerhaugh J, Ainamo J. Pathogenesis of Periodontal Diseases. Switzerland: Springer International Publishing. 2018. DOI: 10.5005/jp/books/18042_13

Dumitresc AL. Etiology and pathogenesis of Periodontal Disease. New York: Springer Heidelberg. 2010; pp. 36-54. DOI: 10.1007/978-3-642-03010-9

Kinane DF, Stathopoulou PG. Papapanou PN. Periodontal diseases. Nature Reviews Disease Primers. Macmillan Publishers Limited. 2017. p.1–14. DOI: 10.1038/nrdp.2017.38

Octavia, N. Therapeutic effects of sardinella longiceps against mandibular cortical bone height in rats in periodontitis model (efek terapi sardinella longiceps terhadap tinggi tulang kortikal mandibula tikus model periodontitis). Denta J Ked Gigi. 2019;13(2).

Quamilla N. Stress and Periodontitis Incidence (Literature Review). J Syiah Kuala Dent Soc. 2016;1(2):161–168.

Sataloff, RT, Johns, MM and Kost, KM Basic Pathology . 10th ed. Canada. Elsevier. 2013.

Swastini IGAAP, Mahadewa TGB, Widyadharma IPE Alveolar bone osteoclast profile in the periodontitis wistar rats model with the snail slime (achatina fulica) application. Open Access Macedonian J Med Sci. 2019;7(10):1680–1684. DOI: 10.3889/oamjms.2019.451

Soysa NS, Alles N, Aoki K, Ohya K. Osteoclast formation and differentiation: An overview. J Med Dent Sci. 2012;59(3):65–74. DOI: 10.11480/jmds.590301

Hienz SA, Paliwal S, Ivanovski S. Mechanisms of Bone Resorption in Periodontitis. J Immunol Res. Hindu Publishing Corporation. 2015. DOI: 10.1155/2015/615486

Ayu KV. Effect of Lps Induction on Number of Osteoblasts on Alveolar Bone Resorption in Male White Rats (Rattus norvegicus) Sprague Dawley Line (efek induksi lps terhadap jumlah osteoblas pada resorpsi tulang alveolar tikus putih jantan (rattus norvegicus) galur sprague dawley). Interdent J Ked Gigi. 2018;14(1):13–17. DOI: 10.46862/interdental.v14i1.368

Yustina AR, Ketut S, Dian AW. Increased number of osteoclasts in periapical inflammation due to lipopolysaccharide induction porphyromonas gingivalis (a laboratory study using rats). JBP. 2012;14(3):140-144.

Wijaya S, Prameswari N. dan Lisdiana M. The effect of stichopus hermanii gel on the number of osteoclast in the pressure area bone remodeling orthodontic tooth movement. Denta J Dent. 2015;9(2):1–6.

Sihombing I, Wangko S, Kalangi SJR. The role of estrogen in bone remodeling. Biomedical J. 2013;4(3). DOI: 10.35790/jbm.4.3.2012.1210

Elburki MS. The etiology and pathogenesis of periodontal disease. Dentistry (American Student Dental Association). 2018;4(2):3–8.

Kenkre JS, Bassett JHD. The bone remodelling cycle. Annals Clinic Biochemist. 2018;55(3):308–327. DOI: 10.1177/0004563218759371.

Hasan A, Palmer RM, a clinical guide to periodontology: pathology of periodontal disease. British Dent J. Nature Publishing Group. 2014;216(8):457–461.

Ismail A, Herawati D, Murdiastuti K. Effectiveness differences between systemic administration of ciprofloxacin and amoxicillin after scaling & root planing in chronic periodontitis. J Ked Gi. 2014;5(4):323–328.

Sidiqa AN, Herryawan H. Effectiveness of red betel leaf (piper crocatum) gel in the treatment of chronic periodontitis. Kartika Sci J Pharm. 2017;5(1): 1–6.DOI: 10.26874/kjif.v5i1.81

Suardi HN. Antibiotics in dentistry. Cakradonya Dent J. 2014;6(2):678–744.

Soleha M, Isnawati A, Fitri N, Adelina R, Soblia HT, Winarsih. Profile of the use of non-steroidal anti-inflammatory drugs in Indonesia. Ind Pharmaceut J. 2018;8(2):109–117. DOI: 10.22435/jki.v8i2.316

Tedjasulaksana R. Metronidazole as a drug of choice for marginal periodontitis. J Dent Health. 2016;4(1):19–23.

Sayuti NA. Formulation and physical stability test preparation of chinese ketepeng leaf extract gel (Cassia alata L.). Ind PharmaceutJ. 2015;5(2):74–82.

Rohim A, Estiasih T. Bioactive compounds on sargassum sp. Brown seaweed: a review. J Agricultur Tech. 2019;20(2):115–126.

Pakidi CS, Suwoyo HS. Potential and utilization of active ingredients of brown algae sargassum sp. J Ilmu Perikan. 2017;6(1):551–562.

Rahmawati A. Effect of brown algae extract sargassum sp. Against the number of macrophages in the healing process of traumatic ulcers. Denta J Dentist. 2018;12(1).

Fatimatuzzahro N, Ermawati T, Prasetya RC, Destianingrum PQ. Effect of giving robusta coffee bean extract gel (coffea canephora) against the number of osteoblasts and osteoclasts in alveolar bone of periodontitis rats. Padjadjaran J Dent Res Stud. 2020;4(2):128. DOI: 10.24198/pjdrs.v4i2.28383

Prasetya RC, Purwanti N, Haniastuti T. Neutrophil infiltration in rats with periodontitis after administration of mangosteen peel ethanolic extract. Ind Denti Mag. 2014;21(1):33. DOI: 10.22146/majkedgiind.8520

Alfaridz F, Amalia R. Classification and Pharmacological Activity of Active Flavonoid Compounds. Pharmacy. 2018;16(3):1–9.

Amara A, Oktiani BW, Taufiqurrahman I. Effect of flavonoid extract of propolis kelulut (G.thoracica) on the number of neutrophil cells in periodontitis (in vivo study of male Wistar rats (Rattus norvegicus). Dentin. 2019;3(1):10–16.

Sankari SL, Babu NA, Rani V, Priyadharsini C, Masthan KMK. Flavonoids-clinical effects and applications in dentistry: a review. J Pharm Bioall Sci. 2014;6(1):26–30. DOI: 10.4103/0975-7406.137256

Gutiérrez-Venegas G, Gómez-Mora J, Meraz-Rodríguez MA, Flores-Sánchez M, Ortiz-Miranda LF. Effect of flavonoids on antimicrobial activity of microorganisms present in dental plaque. Heliyon. 2019;5(12). DOI: 10.1016/j.heliyon.2019.e03013

Pangestuti IE, Amalia U. Screening for phytochemical compounds of sargassum sp. And its activity as antibacterial against staphylococcus aureus and escherichia coli. Ind J Fisher Scie Tech. 2017;12(2):98–102.

Cushnie TPT, Lamb AJ. Antimicrobial activity of flavonoids. Int J Antimicrob. 2005;26(5):343–356.

Gazali M, Nurjanah, Zamani NP. Exploration of bioactive compounds of brown algae sargassum sp. Agardh as an antioxidant from the west coast of aceh. JPHPI. 2018;21(1). DOI: 10.17844/jphpi.v21i1.21543

Takayanagi H. Osteoimunology: Shared Mechanism and Crosstalk Between The Immune and Bone Sistems. Nat Rev Immunol. 2007;7:292-302. DOI: 10.1038/nri2062

Sato S, Fonseca MJV, Ciampo JOD, Jabor JR, Pedrazzi V. Metronidazole-containing gel for the treatment of periodontitis: An in vivo evalution. Brazili Oral Res. 2008;22(2):145–150. DOI: 10.1590/S1806-83242008000200009

Tani PG Wowor PM, Khoman JA. Inhibitory test of soursop flesh (annona muricata l.) Against the growth of porphyromonas gingivalis bacteria. Pharmacon . 2017;6(3):99–104. DOI: 10.35799/pha.6.2017.16597

Abdurrohman MMS, Putranto RR. Metronidazole gel effect on rats with bacteria-induced periodontitis. Odonto: Dent J. 2020;7(1):48.DOI: 10.30659/odj.7.1.48-52




DOI: https://doi.org/10.24198/pjd.vol34no3.39285

Refbacks

  • There are currently no refbacks.


Visitor Stat

Creative Commons License
Padjadjaran Journal of Dentistry is licensed under Creative Commons Attribution 4.0 International License

https://mesin.poltekharber.ac.id/assets/toto/ https://mesin.poltekharber.ac.id/demo-slot/ https://international.ui.ac.id/wp-content/uploads/2023/01/ https://bahkapulajjah.pematangsiantar.go.id/usutoto/ https://bahkapulajjah.pematangsiantar.go.id/xdemo/ https://gcrf.architecture.ui.ac.id/wp-content/slothoki/ https://gcrf.architecture.ui.ac.id/wp-content/usutoto/ https://gcrf.architecture.ui.ac.id/wp-content/slot88/ https://gcrf.architecture.ui.ac.id/wp-content/akurat77/ https://appem.kuningankab.go.id/toto-slot/ https://appem.kuningankab.go.id/toto4d/ https://appem.kuningankab.go.id/slot777/ https://appem.kuningankab.go.id/slot88/ https://appem.kuningankab.go.id/slothoki/
slot online gacor https://simanis.jayawijayakab.go.id/vendor/ https://international.ui.ac.id/wp-content/uploads/2019/02/-/xgaming/ https://international.ui.ac.id/wp-content/uploads/2019/02/-/raffi/ https://international.ui.ac.id/wp-content/uploads/2019/02/-/sule/