ANTI-BACTERIAL EFFECTIVENESS OF CHITOSAN OF PAPUYU FISH (Anabas testudineus) AGAINST BACTERIA Streptococcus mutans

Titien Marwah Sadsyam, Muhammad Yanuar Ichrom Nahzi, Juli Harnida Purwaningayu

Abstract


Background: Streptococcus mutans is one of the main bacteria that cause dental caries by demineralized hard tissues of the teeth. People can use natural ingredients to reduce the number of Streptococcus mutans microorganisms, that is chitosan papuyu fish scales (Anabas testudineus). Purpose: The purpose is to analyze the antibacterial effectiveness of chitosan from papuyu fish scales (Anabas testudineus) against Streptococcus mutans bacteria based on the values of the MIC (Minimum Inhibitory Concentration) and MBC (Minimum Bactericidal Concentration). Methods: This is an experimental study with posttest only with a control group design using 30 samples of chitosan papuyu fish scales (Anabas testudineus) grouped into 6 treatment groups and 5 samples repetitions. The treatment groups were chitosan papuyu fish scales (Anabas testudineus) with concentrations of 25%, 50%, 75%, and 100%, 0.2% chlorhexidine as a positive control, and aquades as a negative control. Calculation of absorbance using a UV-VIS Spectrophotometer Biobase BK-D560 for MIC and Streptococcus mutans bacterial colonies were visualized with a colony counter for MBC. Results: The results of the Kruskal Wallis test for MIC and MBC of papuyu fish chitosan concentrations of 25%, 50%, 75%, and 100% obtained significant results of p=0.00, which means p<0, 05 and showed a significant difference between treatments. Conclusion: There are differences in the effectiveness of MIC and MBC chitosan of papuyu fish scales (Anabas testudineus) at concentrations of 25%, 50%, 75%, 100%, chlorhexidine gluconate 0.2% (positive control), and aquadest (negative control).


Keywords


MBC (Minimum Bactericidal Concentration); MIC (Minimum Inhibitory Concentration); Papuyu fish (Anabas testudineus)

Full Text:

PDF

References


Putri DKT, Kriswandini IL, Luthfi M. Characterization of Streptococcus sanguis molecular receptors for Streptococcus mutans binding molecules. Dentino. 2016;49(4):213-214.

Putri R. Jatropha curcas L. Leaves As A Drug For Toothache. Semesta J Sci Educ. 2021;4(1):37-41.

Warganegara E, Restina D. Getah Jarak (Jatropha curcas L.) sebagai Penghambat Pertumbuhan Bakteri Streptococcus mutans pada Karies Gigi. Majority. 2016;5(3):1-6.

Widyaningrum DRW, Putri DKT, Taufiqurrahman I. Antibacterial Activities Of Chitosan In Haruan Fish Scales (Channa striata) To The Growth Of Staphylococcus aureus. Dentino (Jur Ked Gigi). 2019;IV(2):162-167.

Putri DKT, Wijayanti Diah WH, Oktiani BW, et al. Synthesis and characteristics of Chitosan from Haruan (Channa striata) fish scales. Dentino. 2020;11(4):15-20.

J RDA, Putri DKT, Taufiqurrahman I. Antibacterial Activity Of Chitosan From Haruan (Channa striata) Fish Scales Against The Growth Of Porphyromonas gingivalis. Dentino J Kedokt Gigi. 2020;5(1):53-54.

Ika Devi Adiana, Lasminda Syafiar. Penggunaan Kitosan Sebagai Biomaterial Di Kedokteran Gigi. Dentika Dent J. 2014;18(2):190-193.

Rodriguez MHM. Microbiology for Surgical Technologists. USA: Cengage Learning; 2017: 251-253.

Faridah, Fathin, Khafidzoh, Anisatul, Mustikawati, Dewi, Aggraeni, Dharmawan Y. Chitosan Pada Sisik Ikan Bandeng (Chanos Chanos) Sebagai Alternatif Pengawet Alami Pada Bakso Fathin. J Ilm Mhs. 2012;2(2):76-79.

Zaeni M, Safitri E, Sudiana I. Pembuatan Glukosamin Hidroklorida dari Cangkang Udang dengan Energi Microwave. J Apl Fis. 2017;13(1):23-24.

Akbar J, Mangalik A, Fran S. Application of fermented aquatic weeds in formulated diet of climbing perch (Anabas testudineus). Int J Eng Res Sci ISSN. 2016;2(5):240-243.

Izzati NH, Humaira N, Ni’mah L. Identifikasi Awal Pengaruh Konsentrasi NaOH Pada Pembuatan Kitosan Dari Limbah Sisik Ikan Papuyu. Semin Nas Ind Kim dan Sumber Daya Alam. Published online 2018:31-33.

Gokulalakshmi E, Ramalingam K, Umasankari, Vanitha M. Extraction and Characterization of Chitosan Obtained from Scales of Clarias gariepinus (Catfish). Biotechnol J Int. 2017;18(4):1-8.

Ahing FA, Wid N. Optimization of shrimp shell waste deacetylation for chitosan production. Int J Adv Appl Sci. 2016;3(10):31-36.

Srivastav A, Mishra S, Debnath S, Datta D. Extraction And Characterization Of Chitosan From Waste Scales Of Labeo rohita. J Emerg Technol Innov Res. 2018;5(6):540-544.

Killay A. Kitosan sebagai Anti Bakteri pada Bahan Pangan yang Aman dan Tidak Berbahaya (Review). Pros FMIPA Univ Pattimura. Published online 2013:200-205.

Bangngalino H, Akbar A. Pemanfaatan Sisik Ikan Bandeng Sebagai Bahan Baku Kitosan. Pros Semin Has Penelit. 2017;3(2):105-108.

Suherman S, Latif M, Rosmala Dewi ST. Potensi Kitosan Kulit Udang Vannemei (Litopenaeus vannamei) Sebagai Antibakteri Terhadap Staphylococccus epidermidis, Pseudomonas aeruginosa, Propionibacterium agnes, Dan Escherichia coli Dengan Metode Difusi Cakram Kertas. Media Farm. 2018;14(1):132-133.

Deradjat IP, Ai D, Wahyuni Y, Rahayu IG. Aktivitas Antibakteri Ekstrak Kulit Pisang Muli (Musa acuminata L.) Terhadap Pertumbuhan Staphylococcus aureus Metode Makrodilusi. J Ris Kesehat. 2019;11(1):306-313.

Zulkarnain M, Eka S. Pengaruh Perendaman Basis Gigi Tiruan Resin Akrilik Polimerisasi Panas Dalam Klorheksidin Dan Ekstrak Bunga Rosella Terhdap Jumlah Candida Albicans. Dentika Dent J. 2016;19(2):110-116.




DOI: http://dx.doi.org/10.20527/dentino.v9i2.20393

DOI (PDF): http://dx.doi.org/10.20527/dentino.v9i2.20393.g10402

Article Metrics

Abstract view : 84 times
PDF - 68 times

Refbacks

  • There are currently no refbacks.


Contact Us:
Faculty of Dentistry
Lambung Mangkurat University
Jalan Veteran No. 128 B Banjarmasin, Indonesia

E-mail. [email protected]
Website. fkg.ulm.ac.id

 


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 International License.