EFFECT OF LIPOPOLYSACCHARIDE INDUCTION OF PORPHYROMONAS GINGIVALIS ON OSTEOCLAST AND OSTEOBLAST CELL NUMBER OF WISTAR RATS’ (RATTUS NORVEGICUS) ALVEOLAR BONE

Authors

  • TANTIN ERMAWATI Department of Biomedical Science, Faculty of Dentistry, University of Jember, Jember, Indonesia
  • DESY FUTRI INTAN GANDINI ABDI NAGARI Faculty of Dentistry, University of Jember, Jember, Indonesia
  • DEPI PRAHARANI Department of Periodontology, Faculty of Dentistry, University of Jember, Jember, Indonesia
  • DESI SANDRA SARI Department of Periodontology, Faculty of Dentistry, University of Jember, Jember, Indonesia

DOI:

https://doi.org/10.22159/ijap.2019.v11s4.35294

Keywords:

Lipopolysaccharide, Osteoblast, Osteoclasts, Periodontitis, Porphyromonas gingivalis

Abstract

Objective: This experimental laboratory research too serves the effect of LPS P. gingivalis induction on the osteoclast and osteoblast cell number of Wistar rats’ alveolar bone.

Methods: in vivo laboratory, experimental research was conducted using posttest only control group design. The samples were 20 male Wistar rats divided into 4 groups. Groups I and II were groups injected using LPS P. gingivalis for 6 w and were decapited on the day 3 and day 7, groups III and IV were the control groups (not injected using LPS P. gingivalis) and decapited on the day 3 and day 7. Subsequently, conducting tissue preparation, staining using haematoxilin eosin, and calculating the number of osteoclasts and osteoblasts cells using a microscope (Optilab) with 400x magnification. The results of osteoblast and osteoclast cell calculation were analyzed using ANOVA and LSD one-way test.

Results: Induction of LPS P. gingivalis affected the number of osteoclasts and osteoblasts cell number of Wistar rats’ alveolar bone.

Conclusion: Induction of LPS P. gingivalis in Wistar rats (Rattusnorvegicus) increases osteoclast cell number and decreases osteoblast cell number.

Downloads

Download data is not yet available.

References

1. Kemenkes RI. Riset kesehatan dasar (RISKESDAS). Jakarta. Balitbang Kemenkes RI; 2013. p. 112-3.
2. Kemenkes RI. Rencana program pelayanan kesehatan gigi dan mulut. Jakarta. Kemenkes RI; 2012. p. 5-6.
3. Taneaki N, Atsush S, Yasuo H, Kazuyuki I. Gingipains as candidiate antigens for porphyromonas gingivalis vaccine. Keio J Med 2003;52:158-62.
4. Sim KS, Alice H, Sophie P, Lakshmyya K, St John C. Review article: porphyromonas gingivalis periodontal infection and its putative links with Alzheimer's disease. J Mediators Inflammation 2015. Available from: http://www. hindawi.com/journals/mi/2015/137357/ [Last accessed on 01 Apr 2015].
5. Michael N, Henry T, Perry K, Fermin C. Carranza’s clinical periodontology. 12th ed. St Louis Elsevier; 2015.
6. Jaroslav M, Stepan P, Pavla S, Yelena L, Jirina B. Review article: porphyromonas gingivalis: major periodontopathic pathogen overview. J Immunol Res 2014. Available from: http://www.hindawi.com/journals/jir/2014/476068/ [Last Accessed on 25 Mar 2014]
7. Takahisa I. In novel gingipain of periodontal disease pathogenic. J Periodontol 2003;74:111-8.
8. Akhmad R, Hariyo S, Uripno B. Midazolam intravena dosis rendah tidak mempengaruhi nitric oxide intraperitoneal mencit balb/c yang terpapar lipopolisakarida. JAI 2011;3:84-94.
9. Kah YH, Keang PS, Kok GC. Porphyromonas gingivalis: an overview of periodontopathic pathogen below the gum line. J Front Microbiol 2016;7:1-14.
10. Ade RY, Ketut S, Dian AW. Peningkatan jumlah sel osteoklas pada keradangan periapikal akibat induksi lipopolisakarida porphyromonas gingivalis (suatu penelitian laboratories menggunakan tikus). J Biosci Pascasarjana 2012;14:140-4.
11. Helieh SO, David AP. Review article: animal models for periodontal disease. J Biomed Biotechnol 2011. Available from: http://www.hindawi.com/journals/bmri/2011/754857/ [Last accessed on 12 Jan 2011].
12. Alexandrina LD, Seham AE, Begonia M, Lucy FD. A model of periodontitis in the rat effect of lipopolysaccharide on bone resorpstion, osteoclast activity, and local peptidergic innervation. J Clin Periodontol 2004;31:596-603.
13. Cesar AO, Pablo NS, Antonela P, Claudia EM, Juan CE. Long term treatment with methanandamide attenuates lps-induced periodontitis in rats. J Inflamm Res 2012;61:941-8.
14. T Hildebrand, P Ruegsegger. A new method for the model-independent assessment of thickness in three-dimensional images. J Microsc 1997;185:67-75.
15. Didin EI. Minyak ikan lemuru (sardinellalongicep) menurunkan apoptosis osteoblas pada tulang alveolar tikus wistar. Dent J 2013;46:185-9.
16. Endah K, Juni H, Heni S. Ekspresi cox-2 dan jumlah neutrofil fase inflamasi pada proses penyembuhan luka setelah pemberian sistemik ekstrak etanolik rosela (hibiscus sabdariffa) (studi in vivo pada tikus wistar). Maj Kedok Gigi 2014;21:13-9.
17. Natalia MO, Rogeria S. Effect of the physical activity on normal bone and on the osteoporosist prevention and treatment. Rev Bras Med Esporte 2006;21:149-52.
18. Ketut VA. Penurunan jumlah osteoblas pada resorpsi tulang alveolar tikus putih jantan (rattusnorvegicus) galur sprague dawley yang diinduksi lps. IPI J Kedokteran Gigi 2015;11:5-10.
19. Indriani L, Dharmautama M. Antimicrobial test of roselle (hibiscus sabdariffa l.) ethanol extract againt sporphyromonasgingivalis and streptococcus sanguis using agar method (in vitro study). J Dentomaxillofac Sci 2016; 1:134-8.

Published

15-08-2019

How to Cite

TANTIN ERMAWATI, DESY FUTRI INTAN GANDINI ABDI NAGARI, PRAHARANI, D. ., & SARI, D. S. . (2019). EFFECT OF LIPOPOLYSACCHARIDE INDUCTION OF PORPHYROMONAS GINGIVALIS ON OSTEOCLAST AND OSTEOBLAST CELL NUMBER OF WISTAR RATS’ (RATTUS NORVEGICUS) ALVEOLAR BONE. International Journal of Applied Pharmaceutics, 11(4), 64–67. https://doi.org/10.22159/ijap.2019.v11s4.35294

Issue

Section

Original Article(s)