Daya Antihiperglikemia Yoghurt Pada Mencit Putih Jantan

2019 ◽  
Vol 4 (2) ◽  
pp. 72
Author(s):  
Irene Puspa Dewi ◽  
Roza Septriani ◽  
Verawaty Verawaty ◽  
Dwi Mulyani

<p><em>Research has been conducted on the antihyperglycemic of yogurt in male white mice. Yogurt contains probiotics that have a positive effect on both type 1 and types 2 diabetes mellitus. Yogurt is given for 3 weeks at a dose of 200 grams / Kg BW / day and 400 grams / Kg BW / day to mice that have been alloxan-induced. As a comparison, a positive control group was created, the alloxan-induced mice group, but not given yogurt and a negative control group, the mice group without any treatment. After 3 weeks of treatment with yogurt, it was found that there was a significant difference between the average blood glucose levels in the mice of the 200 grams/ Kg BW group and the 400 grams / Kg BW dose with the positive control group. From the data on the percentage increase in blood glucose levels of mice, it is known that by giving yogurt for 3 weeks, reducing the high percentage of increase in blood glucose levels in mice. From these data, it can be concluded that the administration of yogurt with a dose of 200 grams / Kg / day and 400 grams / Kg / day can help reduce blood glucose levels in alloxan-induced mice.</em></p><p> </p><p><em>Telah dilakukan penelitian mengenai daya antihiperglikemia yogurt pada mencit putih jantan. Yogurt mengandung probiotik  yang memberikan pengaruh positif terhadap diabetes mellitus baik tipe 1 maupun tipe 2. Yogurt diberikan selama 3 minggu dengan dosis 200/Kg BB/hari dan 400 gram/Kg BB/hari kepada mencit yang telah diinduksi aloksan. Sebagai pembanding dibuat kelompok kontrol positif yaitu kelompok mencit yang diinduksi aloksan, namun tidak diberi yogurt dan kelompok kontrol negatif, yaitu kelompok mencit tanpa perlakuan apapun. Setelah 3 minggu perlakuan dengan yogurt, didapatkan hasil bahwa terdapat perbedaan bermakna antara rata-rata kadar glukosa darah mencit kelompok dosis 200 gram/Kg BB dan dosis 400 gram/Kg BB dengan kelompok kontrol postif. Dari data persentase kenaikan kadar glukosa darah mencit, diketahui bahwa dengan pemberian yogurt selama 3 minggu, mengurangi tingginya persentase kenaikan kadar glukosa darah mencit.dari data-data tersebut, dapat disimpulkan bahwa pemberian yogurt dengan dosis 200 gram/Kg BB/hari dan 400 gram/Kg BB/hari dapat membantu menurunkan kadar glukosa darah mencit yang diinduksi aloksan.</em></p>

2018 ◽  
Vol 3 (1) ◽  
pp. 1
Author(s):  
Verawaty Verawaty ◽  
Dhea Claudia Novel

<p>Penelitian ini bertujuan untuk melihat pengaruh pemberian ekstrak etanol kulit petai (Parkia speciosa Hassk) terhadap penurunan kadar glukosa darah mencit jantan yang diinduksi aloksan. Hewan percobaan dibagi atas 5 kelompok diantaranya kelompok kontrol negatif, kelompok kontrol positif,dosis I (280 mg/kgBB mencit), dosis II (560 mg/kg BB mencit), dosis III (840 mg/kg BB mencit). Penelitian dilakukan selama 21 hari. Persentase penurunan kadar glukosa darah mencit jantan setelah diberikan ekstrak etanol kulit petai pada hari ke-21 adalah dosis I (77,52 %) lebih besar dibandingkan dengan dosis II (69,5 %) dan dosis III (73,37 %). Data yang diperoleh dianalisis dengan uji Two Way Anova dengan program SPSS 17. Hasil penelitian ini menunjukkan bahwa pemberian ekstrak etanol kulit petai untuk tiga variasi dosis menyatakan perbedaan yang bermakna secara statistik terhadap penurunan kadar glukosa darah mencit jantan.</p><p><em>Petai (Parkia speciosa Hassk) has a compound β-sitosterol and stigmasterol that have efficacy to decreased blood glucose levels. This study aimed to determine the effect of ethanol extract of petai peel for decrease blood glucose levels of male mice induced by alloxan. Experimental animals were divided into 5 groups including negative control group, positive control group, the first dose (280 mg/kg in mice), the second dose (560 mg/kg in mice), the third dose (840 mg/kg in mice). The study was conducted for 21 days. After 21 days, the result found that the percentage of blood glucose levels after the male mice given the ethanol extract of petai peel was, the first dose (77.52%) biger than the second dose (69.5%) and the third dose (73.37%). The data obtained were analyzed by Two Way ANOVA using SPSS 17. The results showed that have signicantly difference between three dose variation of ethanol extract of petai peel in blood glucose levels.</em></p>


2019 ◽  
Vol 9 (1) ◽  
pp. 86 ◽  
Author(s):  
Zulkarni Zulkarni

This Research was conducted to determine the effect of ethanol extract from red chilli (Capsicum annuum L)in lowering blood glucose levels of hyperglycemic male white mices. This study used 30 malewhitemices and divided into 6 groups: negative control group, the positive control group, the treatmentgroup withdosage of 200 mg / kgweight, 400 mg / kgwieght, 600 mg / kg weight and a comparison group with glibenclamide with dosage of 5 mg / kgweightadministered orally for 21 days. The level of fasting blood glucose was checked 6 days after dexamethasone induced, and after the ethanol extract of red chilies on day 7th, 14th, and 21st. The data was analyzed statistically with one –way and two-way Anova by usingSPSS16 program and proceed with the test Duncan to look the significant difference between treatments. The results showed that the ethanol extract from red chilies with a dosage of 200mg / kgweight, 400mg / kgweight, 600 mg / kgweight showed the effect in lowering blood sugar levels in male white mices hyperglycemia significantly (p <0.05). The duration ethanol extract of red chili affected blood glucose levels. The most effective duration in lowering blood glucose levels is the administration of a preparation within 21 days.


Author(s):  
RATNA DJAMIL ◽  
SARAH ZAIDAN ◽  
DENI RAHMAT ◽  
DIAH KARTIKA PRATAMI ◽  
FELIX HAKIM

Objective: Okra (Abelmoschus esculentus (L.) Moench) has potential antidiabetic activity. This study created a nanoemulsion of okra extract (NOE) and examined its activity on alloxan-induced diabetes mellitus in mice. Methods: Okra was macerated with 70% ethanol and dried in a rotary evaporator into the crude extract. The extract was encapsulated in a solution of glyceryl caprylate, propylene glycol, and glycerine to form a nanoemulsion. To determine the antihyperglycaemic effect of okra extract, 35 male mice (Mus musculus L.) were divided into seven groups: a non-diabetic normal control group and six diabetic mice groups (untreated negative control, glibenclamide-treated positive control, and four treatments with okra ethanol extract (OEE) at 200 and 400 mg/kg BW and NOE at 200 and 400 mg/kg BW). Results: The group treated with NOE at 400 mg/kg BW (NOE400) had the lowest average blood glucose level of 93.4 mg/dL among hyperglycaemic mice. The decrease in blood glucose levels in NOE400 (52.05%) was significantly different from those in the positive control (42.63%) and OEE treatments (39.32%). The nanoemulsion used in this study fulfills quality requirements, with a mean particle size of 134.7 nm, a polydispersity index of 0.512, and a zeta value of −26.72 mV. Conclusion: NOE reduced blood glucose levels in alloxan-induced hyperglycaemic mice better than OEE. Nanoemulsion can improve the antidiabetic activity of okra extract by increasing penetration of active compounds into interstitial space so that their delivery and bioavailability are higher.


2019 ◽  
Vol 2 (1) ◽  
pp. 24-28
Author(s):  
Herviani Sari ◽  
Vera Estefania Kaban ◽  
Friska Raulina Situmorang ◽  
Firdaus Fahdi

Purpose: To determine the effect of decreasing blood glucose levels in white rats using a combination of meniran and rosella compared to glibenclamide. Method: This research was carried out experimentally. Simplicia of meniran leaves and rosella macerated using 80% ethanol. The research used 21 rats that were induced by alloxan and divided into 7 groups and all compared using glibenclamide.Group 1 (negative control) CMC Na 1%, group 2 (positive control) glibenclamide dose 0.45 mg/kgMB, group 3 single roselle extract dose 130 mg/kgMB, group 4 single meniran leaf extract dose 200 mg/kgMB, group 5 combination of meniran leaf extract dose of 100 mg/kgMB and rosella extract dose of 65 mg/kgMB, group 6 combination of meniran leaf extract dose of 200 mg/kgMB and rosella extract dose of 130 mg/kgMB, and group 7 meniran leaf extract combination dose 400 mg/kgMB and rosella extract dose 195 mg/kgMB. Result: The results showed that rats had hyperglycemia after being induced by alloxan.Data were analyzed using one way ANOVA method followed by LSD and tukeys' B post hoct test. Having a difference in the decrease in blood glucose levels between the positive control group and the five doses of meniran extract and rosella gave a significant effect compared to the negative control group did not have a significant effect in reducing blood glucose levels. Conclusion: Single meniran extract and high-dose combination extract are more effective than glibenclamide.


Author(s):  
Solomon E. Owumi ◽  
Jeremiah O. Olugbami ◽  
Andrew O. Akinnifesi ◽  
Oyeronke A. Odunola

Abstract Objectives Diethylnitrosamine (DEN) is found in workplaces, processed meats, tobacco smoke, whiskey, etc. It is capable of forming DNA-adducts. Fluted pumpkin (Telfairia occidentalis [To]) is a medicinal plant, and its herbal preparations have been employed variously in ethnomedicine. Furthermore, it has been reported to possess anti-oxidant, anti-cancer, anti-inflammatory properties. We investigated the possible mitigating effect of the leaf paste of To on DEN-induced deleterious effects in male Wistar rats. Methods Forty-five rats weighing between 100 and 150 g were equally divided into nine groups and treated thus: Group 1 (negative control), Group 2 (0.05 mg/kg carboxymethyl cellulose [CMC] daily), Group 3 (positive control, 25 mg/kg bw DEN administered intraperitoneally thrice per week), Group 4 (25 mg/kg bw quercetin [QUE] daily alone), Groups 5 and 6 (100 and 200 mg/kg bw To daily, respectively), Group 7 (25 mg/kg bw DEN and QUE), Groups 8 and 9 (25 mg/kg bw DEN with 100 and 200 mg/kg bw To, respectively). Blood glucose levels, liver damage biomarkers (aspartate aminotransferase [AST], alanine aminotransferase [ALT] and gamma-glutamyltransferase [γ-GT]), frequency of micronucleated polychromatic erythrocyte (mPCEs), and liver histology were assessed. Results DEN significantly (p<0.05) increased blood glucose levels, activities of ALT, AST and γ-GT, and frequency of mPCEs. Histologically, DEN caused a severe architectural anarchy. However, the intervention groups demonstrated the remarkable protective properties of To by ameliorating the adverse effects caused by DEN. Conclusions Taken together, the leaf paste of To is capable of mitigating DEN-induced hepatotoxicity and clastogenicity in male Wistar rats.


2019 ◽  
Vol 2 (1) ◽  
pp. 19-23
Author(s):  
Herviani Sari ◽  
Vera Estefania Kaban ◽  
Friska Raulina Situmorang ◽  
Firdaus Fahdi

Background : Diabetes mellitus (DM) is a chronic disease caused by the body's inability to produce the hormone insulin or due to ineffective use of insulin production. Diabetes has become a global problem, DM prevalence of 4.6%, estimated in 2000 amounted to 5.6 million. One of the plants that can reduce blood glucose levels is meniran and rosella which are found in Indonesia. Objective : To determine the effect of decreasing blood glucose levels in white rats using a combination of meniran and rosella compared to glibenclamide.Method : This research was carried out experimentally. Simplicia of meniran leaves and rosella macerated using 80% ethanol. The research used 21 rats that were induced by alloxan and divided into 7 groups and all compared using glibenclamide.Group 1 (negative control) CMC Na 1%, group 2 (positive control) glibenclamide dose 0.45 mg / kgBB, group 3 single roselle extract dose 130 mg / kgBB, group 4 single meniran leaf extract dose 200 mg / kgBB, group 5 combination of meniran leaf extract dose of 100 mg / kgBB and rosella extract dose of 65 mg / kgBB, group 6 combination of meniran leaf extract dose of 200 mg / kgBB and rosella extract dose of 130 mg / kgBB, and group 7 meniran leaf extract combination dose 400 mg / kgBB and rosella extract dose 195 mg / kgBB. Result : The results showed that rats had hyperglycemia after being induced by alloxan.Data were analyzed using one way ANOVA method followed by LSD and tukeys' B post hoct test. Having a difference in the decrease in blood glucose levels between the positive control group and the five doses of meniran extract and rosella where p <0.05 gave a significant effect compared to the negative control group p> 0.05 did not have a significant effect in reducing blood glucose levels. Conclusion : Single meniran extract and high-dose combination extract are more effective than glibenclamide.


Author(s):  
Sarah Zaidan ◽  
Ria Debby Bp ◽  
Syamsudin Abdillah

 Objective: The research to investigate that the source of Leucaena leucocephala can lower blood glucose levels in hyperglycemic mice.Methods: In this study, 42 mice were divided into 7 groups each consisted of 6 mice: Normal Group I, Group II (metformin positive control), Group III (negative control), Group IV (sauce of L. leucocephala at a dose of 0.1 ml), Group V (sauce of L. leucocephala at a dose of 0.2 ml), Group VI (sauce of L. leucocephala with doses of 0.4 ml), and Group VII (sauce of L. leucocephala at a dose of 0.8 ml). The dosage of Group II, IV, V, VI, and VII was orally administered. Blood glucose levels in mice were observed during normal conditions and after administration of 200 mg/kg bw alloxan intraperitoneally (alloxan-induced mice). On day 0, 3, 7, and 14, blood was taken from the tail and glucose levels were measured with a glucometer.Results: Data were analyzed by one-way analysis of variance followed by LSD test. Based on the results, the sauce at a dose of 0.8 ml was able to lower the blood glucose levels up to normal blood glucose levels.Conclusion: There was not significantly different between the groups given sauce of L. leucocephala at a dose of 0.8 ml with the group given metformin (positive control).


2020 ◽  
Vol 6 (2) ◽  
pp. 71
Author(s):  
Tsintani Nur Aristiana ◽  
Cholis Abrori ◽  
Muhammad Ali Shodikin

Abstract Low 25-hydrocyvitamin D (25(OH)D3) levels are usually found in patients with type 1 and type 2 diabetes mellitus. This study aims to compare the effectiveness of fasting blood glucose levels in hyperglycemic mice model with glimepirid single therapy, hyperglycemic mice model with vitamin D, and mice model of hyperglycemic with glimepirid therapy plus vitamin D. This study used the true experimental research design with the randomized posttest only control group design. There were 25 male mice (Mus musculus) strain Balb/C with 20-30 g body weight and 2-3 months old which were grouped into 5 groups. The negative control group (K1) was injected with placebo and the positive control group (K2) was injected with STZ 150 mg/kgBW i.p. Groups P1, P2, and P3 were given STZ injection of 150 mg/kgBW i.p and given glimepirid 0.26 mg/kgBW; vitamin D 6,5 ml/kgBW; glimepirid 0,26 mg/kgBW with vitamin D supplementation 6,5 ml/kgBW. The results of the Tukey post hoc tests obtained differences in the mean of delta KGD between groups P1 and K2 = 122,55; in group P2 with K2 = 81,60; and in group P3 with K2 = 74,40. From these data, it can be concluded that in the group given glimepirid plus vitamin D there was no additional effectiveness in decreasing fasting blood glucose levels of hyperglycemic mice model compared to the group given only glimepirid therapy and the group given vitamin D alone. Keywords: diabetes mellitus, vitamin D, glimepiride, streptozotocin.


2017 ◽  
Vol 6 (1) ◽  
pp. 1
Author(s):  
Olfiana T. Lahamado ◽  
Sri Mulyani Sabang ◽  
Kasmudin Mustapa

One of the plant that is widely used as a medicinal plant is the leaves of tamarind (tamarindus indica L). This study aims to determine the effectiveness of anti-diabetic of tamarind (tamarindus indica L.) extract in lowering blood glucose levels in mice animals test. The experiment was performed using tamarind leaves extracted through infusion method. The animals test were 15 male mice induced by ethylene diamine tetra acetate (EDTA). Mice were divided randomly into 5 groups with different treatments. Treatments I, II and III were given tamarind leaves extracts for each with a concentration of 10%, 20% and 40%. Treatment IV was given glibenclamide suspense as a positive control (+), and the treatment V was given Na-CMC 1% as a negative control (-). Based on the analysis of variance statistical calculations tamarind leaves extracts can lower blood glucose levels on mice test. Furthermore, the significant difference was tested to check the concentration effect. The results on animals test with a significant level of 5% showed that the tamarind leaves extract of 40% or Treatment III affected on decreasing blood sugar levels on mice.


Author(s):  
Recky Patala ◽  
Niluh Puspita Dewi ◽  
Meilinda Handayani Pasaribu

Diabetes mellitus is a metabolic disorder characterized by increased blood glucose levels due to a deficiency of insulin secretion or when insulin resistance occurs. Herbal medicine is one alternative method that can be used to control blood glucose levels and prevent complications of diabetes mellitus. One of the medicinal plants is avocado seeds (Persea americana Mill.) The active compounds contained in avocado seeds that have antidiabetic activity are flavonoids, alkaloids, tannins and saponins. This study aims to determine the content of secondary metabolites in the extract of avocado seed, the effect of extract of avocado seed and the dose of extract of avocado seed that is effective in lowering blood glucose levels. This research was a laboratory experiment using a modified randomized controlled pretest and posttest group design. Test animals used were 30 rats which were divided into six treatment groups, namely normal control, negative control, positive control, a dose of 250, 300 and 350 mg/kg groups. The results showed that extract of avocado seed contained secondary metabolites: flavonoids, alkaloids, saponins, and tanins;extract of avocado seed gave effect to decrease blood glucose levels; extract of avocado seed with a dose of 350 mg/kg was effective in lowering blood glucose levelswith an avarage decrease of 99,8 mg/dL.


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