Ananas comosus (L.) Merr has several purposes which include antioxidant and anti-inflammatory activity that shows some pharmacological effects and the subject of anti-cancer or anti-cancer supporting material. The research objective was to analyze the effects of ethyl acetate fraction of Ananas comosus (L.) Merr. of tongue cancer cell growth inhibition Supri’s clone-1 (SP-C1). This type of study was a research laboratory. Next, cell growth inhibition testing by the ethyl acetate fraction of Ananas comosus (L.) Merr. with various concentrations (0; 62.5; 125; 250; 250; 500 and 1000 microgram/ml) using the MTT assay test. Growth barriers identified by Biorad microplate tool reader with a wavelength of 540 nm. The number of SP-C1 cells examined was 2 x 104 cells/wells with incubation time 24 and 48 hours. Data were analyzed using a two-ways ANOVA followed by post hoc test (LSD test) with 95% significance level. The results showed ethyl acetate fraction of Ananas comosus (L.) Merr. able to inhibit the growth of cancer cells SP-C1. Various concentrations of ethyl acetate fraction of pineapple were highly significant, meaning that the concentration effect on cell growth of SP-C1. Similarly, incubation time effect on the growth of SP-C1 cells that were very meaningful. The biggest obstacle effect of ethyl acetate fraction of Ananas comosus (L.) Merr. occurred at a concentration of 1000 ug/ml (43.45%) with an incubation time of 48 hours. Conclusion of this study was the fraction of ethyl acetate Ananas comosus (L.) Merr. has the effect of inhibiting the growth of cancer cells SP-C1.
Invasion is a characteristic of the occurrence of cancer and indicates the cancer cells' capability to destroy and degrade the border between the epithet and basal membrane to further spread into the surrounding extra-cellular matrix. The purpose of this research was to find the existence of impediment at the SP-C1 tongue cancer cell using celecoxib chemopreventive medication. The SP-C1 tongue cancer cells were treated in vitro using celecoxib medication as a research subject at the following concentrations 5, 10, 25, 50, 75, 100, 125%; and 0 as control group (only DMEM growth medium treatment). Pure experimental testing was carried out for 24 and 48 hours, with observation and calculation of an average number of SP-C1 tongue cancer cells. The data collected were analyzed using the ANOVA test with Newman Keuls paired range test or t-test. Research results indicated that the average number of SP-C1 tongue cancer cells invasion after administration of celecoxib medication based on administration concentration and time statistically yielded significant results. The ANOVA test results were statistically significant, that is, average occurrence of the number of SP-C1 tongue cancer cells due to the use of celecoxib at certain concentrations compared to that without celecoxib was different. At celecoxib of zero (control) concentration was 24.4 with celecoxib concentration starting at 5 up to 125% experienced a decline from its average 11 to become 2.3. The conclusion of the research was that the greater the celecoxib concentration administered, the greater the effect on the impediment of SP-C1 tongue cancer cell invasion.
The incidence of tongue cancer in Indonesia reached 1.01% of all cancers and 42% of oral cavity cancer. Tongue cancer therapies including chemotherapy, radiotherapy, surgery, and all three combined therapy. Search for anti-cancer drugs currently switched on herbal plants, one of which is the mangosteen. Has the properties of mangosteen peel extract inhibited the growth of cancer cells. The purpose of the study, obtain IC50 of ethanol extract of mangosteen peel in inhibiting the growth of human tongue cancer cells SP-C1. Research carried out on 96 preparations of human tongue cancer SP-C1 were incubated with ethanol extract of mangosteen peel, preparations were classified in two groups of incubation time (24 hours and 48 hours) and each group will be given preferential treatment over 6 randomly different concentrations: 0 (control), 62.5 μg/mL, 125 μg/mL, 250 μg/mL, 500 μg/mL and 1000 μg/mL. Model experiments were 2 x 6 factorial experiment with eight replication for each cell. Test results with ANAVA, incubation (24 and 48 hour) SP-tongue cancer cells with various concentrations of C1 ethanol extract of mangosteen peel gives a highly significant, indicating differences cancer cell growth inhibition. Incubation time factor showed the long incubation effect on cancer cell growth inhibition. Furthermore, by Newman Keuls test, showed 500μg/mL concentrations of 24-hour incubation had the best effect. Conclusion of the study of ethanol extract of mangosteen peel could achieve with IC50 values of cell growth resistance 50.3% at a concentration of 500 μg/mL and an incubation time of 24 hours.
Introduction: Small for Gestational Age (SGA) babies are those whose birth weight are less than 2 SD or below the 10th percentile curve of Lubchenco intrauterine growth and development. The cause of SGA is due to an Intra-uterine growth restriction (IUGR). IUGR inhibits the development of various organs, including the enamel of deciduous teeth and the central nervous system (CNS). The research aims to analyzed correlation between enamel defects in deciduous teeth, nutritional status and the development of basic skills in children with SGA. Methods: A total of 28 SGA children aged between 3-6 years were obtained from Hasan Sadikin Hospital. The sample comprised of 20 boys and 8 girls to be studied for tooth enamel defects in deciduous teeth, weight, height and development basic capabilities. Study design was descriptive and analytical, with cross-sectional study. Scoring modification Developmental Defect of Enamel (DDE) of the FDI was used to assess the enamel defects in deciduous teeth. Enamel Defect Score (EDS) was calculated according to the Willyanti’s formula. The nutritional status was measured by measuring height, weight, and age and converted to the diagram of Body Mass Index (BMI) / Age of the WHO Child Growth Standards. While the development of SGA children basic skills was measured using pre- screening questionnaire development (KPSP). To determine the linkage between enamel defects in deciduous teeth and nutritional status with basic skills development in SGA children, the non-parametric statistical analysis of Kendall’s Coefficient of Concordance was performed. Results: Statistical test results showed that Kendall’s Coefficient of Concordance (W) = 1.00 is statistically significant with Chi-square value = 56.00 with p (value) <0.01. Conclusion: There is a significant relationship between EDS and nutritional status with the SGA children development of basic skills as well as the development of the child’s ability.
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