cover
Contact Name
Rifky Ananda
Contact Email
fkg@ulm.ac.id
Phone
-
Journal Mail Official
dentino.ulm@gmail.com
Editorial Address
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Location
Kota banjarmasin,
Kalimantan selatan
INDONESIA
Dentino: Jurnal Kedokteran Gigi
ISSN : 23375310     EISSN : 25274937     DOI : 10.20527
Core Subject : Health,
Dentino [P-ISSN 2337-5310 | E-ISSN 2527-4937] is the journal contains research articles and review of the literature on dentistry which is managed by the Faculty of Dentistry, Lambung Mangkurat University. Dentino published twice a year, every March and September.
Arjuna Subject : -
Articles 23 Documents
Search results for , issue "Vol 6, No 1 (2021)" : 23 Documents clear
PROPOLIS EXTRACT SORPTION AS A PULPCAPPING AGENT Isyana Erlita; Rahmatillah Rahmatillah; Sherli Diana
Dentino : Jurnal Kedokteran Gigi Vol 6, No 1 (2021)
Publisher : FKG Unlam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/dentino.v6i1.10640

Abstract

ABSTRACTBackground: This research is an experimental study to determine the physical properties of propolis extract as an alternative material in pulpcapping treatment. High sorption value is the main cause of pulpcapping treatment failure. Purpose: to analyze the sorption value of propolis extract in water and artificial saliva. Materials and Methods: Thirty disc-shaped zinc oxide propolis (15 mm x 1 mm) specimens were stored in the incubator at 37ºC for 24 hours. The discs were weighed, dehydrated, and weighed again. Immediately after weighing, the discs were immersed for 1 day, 3 days, and 7 days in 50 mL of distilled water and artificial saliva at 37ºC and then weighed for second time (sorption value). Data were analyzed by one way ANOVA for data processing in the water and artificial saliva immersion group, then the Independent T-Test for inter-group immersion in water with artificial saliva. Results: There were differences in the sorption value of zinc oxide propolis with ZnOE (positive control) in water and artificial saliva between immersion times of 1 day, 3 days, and 7 days. There was no difference in the sorption value of zinc oxide propolis between the water and the artificial saliva immersion group. Conclusion: The sorption value of propolis extract, both in water and artificial saliva immersion shows a high sorption value. This indicates that the propolis extract has not met the criteria as a pulpcapping material in terms of its physical properties, namely absorption of water (water sorption).Keywords: Propolis extract, Pulpcapping, Sorption
Cover & daftar isi Dentino Vol 6. No. 1 Maret 2021 dentino FKG ULM
Dentino : Jurnal Kedokteran Gigi Vol 6, No 1 (2021)
Publisher : FKG Unlam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/dentino.v6i1.10725

Abstract

THE EFFECT OF SALTWATER FISH NANOPARTICLE POWDER CONSUMPTION ON TOOTH ENAMEL DENSITY In Vivo Study of Mice (Mus musculus) Sandy Christiono; Fera Putri Ardiani; Welly Anggarani; Fourier Dzar Eljabbar
Dentino : Jurnal Kedokteran Gigi Vol 6, No 1 (2021)
Publisher : FKG Unlam

Show Abstract | Download Original | Original Source | Check in Google Scholar | DOI: 10.20527/dentino.v6i1.10724

Abstract

ABSTRACTBackground: Dental caries is rarely found in children who eat saltwater fish. Overfished fish can be used as powder of saltwater fish nanoparticles, which is useful as an alternative material for the prevention of dental caries in dentistry can be used as a powder for saltwater fish nanoparticles, which is useful as an alternative material for preventing dental caries in dentistry. A Cone Beam Computed Tomography (CBCT), commonly known as a μ-CT Scanner, is a device used to quantify the increase in tooth enamel density Purpose: This study aimed to determine the effectiveness of saltwater fish nanoparticle powder consumption on tooth enamel density of Mus musculus. Method This study used an experimental research method with a randomized posttest only control group design. The research subjects were 16 mice taken from 2 pregnant female mice which were divided into two groups, namely the treatment group with 2.17 mg / 0.5 mL of saltwater fish nanoparticle powder and the control group which was given distilled water. Administration was carried out during the intrauterine period until the teeth of the mice grew, then observed the tooth enamel density with CBCT OP 3D Pro (KaVo, Germany). The data obtained were analyzed by Levene and continued with the Independent T-test. Result: The average value of enamel density in mandibular incisors in the treatment group was greater than the control group (p <0.05). Conclusion: Saltwater fish nanoparticle powder can increase tooth enamel density of Mus musculus. Keywords: CBCT, CT nanoparticle powder, saltwater fish, tooth enamel density,

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