scholarly journals EFEK ANTIDIABETES EKSTRAK AIR KULIT BUAH PISANG AMBON (Musa paradisiaca L.) TERHADAP MENCIT (Mus musculus) MODEL HIPERGLIKEMIA

Author(s):  
Sri Indrawati ◽  
Yuliet Yuliet ◽  
Ihwan Ihwan

Pisang Ambon (Musa paradisiaca L.) is one type of bananas usually consumed by Indonesian people. Besides its flesh which has high nutrition, its peels also has antioxidant activity. Antioxidants has the ability to reduce oxidative damage in people’s body with diabetes mellitus. Therefore, this study aimed to determine the antioxidant activity of the aqueous  extract of Pisang Ambon peels and to determine it’s effective dose as an antidiabetic agent in hyperglycemic mice. This study used male mice which all have been intravenously induced with alloxan at a dose of 50 mg/kgBW. They were then divided into five groups. The first two groups got Na CMC 0.5% (negative control) and glibenclamide 0.65 mg/kgBW (positive control), while the other three got  the aqueous  extract of Pisang Ambon peels successively at doses of 400, 800, and 1200 mg/kgBW. The data were statistically analyzed using ANOVA (Analysis of Variance) at 95% confidence interval with parameter of blood glucose levels difference between before and after treatment. The results showed that the aqueous extract of Pisang Ambon peels had antidiabetic activity at an effective dose of 400 mg/kgBW in hyperglycemic mice which was comparable to glibenclamide

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.


Author(s):  
Agnis Pondineka Ria Aditama

Diabetes mellitus (DM) is a progressive metabolic disease that continues to increase every year. Treatment therapy using oral hypoglycemic drugs to treat DM has side effects, and alternative approaches must be taken. Abelmoschus esculentus has been known to be used as an alternative to DM because it has antioxidant activity due to its high flavonoid content. The purpose of this study was to determine the antidiabetic activity of 96% ethanol extract of Okra leaves against male mice of balb-c strain. Male mice were acclimatized for seven days and divided into five test groups and then fasted for 18 hours. Then the mice were induced with 150 mg / 20 g BW alloxan and measured on the 3rd day. Ethanol extract 96% okra leaves were then given in a dose of 5.6 mg / 20g BW; 11.2 mg / 20g BW; 22.4 mg / 20g BW, CMC Na 0.5% as negative control and glibenclamide 0.026 mg / 20g BBs as positive control for 14 days. The results of therapy with 96% ethanol extract of okra leaves can reduce blood glucose levels in mice so that the okra leaves contain flavonoid compounds that have antioxidant activity and can reduce blood glucose levels.


Author(s):  
Dwinthasari Meilinda Azhari ◽  
Yuliet Yuliet ◽  
Khildah Khaerati

Research on the activity of white oyster mushroom powder (Pleurotus ostreatus (Jacq.) P.Kumm) against blood glucose levels in animal model of hypercholesterolemia-diabeties has been conducted. This research aimed to determine its activity as well as its effective dose in lowering blood glucose levels. A number of laboratory rats were divided into five groups and each group consisted of four rats. The 1st group (negative control) was given 0.5% suspension of Na-CMC; the 2nd and 3rd group (positive controls) were respectively given 0.45 mg/kgBW of Glibenclamide and 45 mg/KgBW of Metformin; while each of the 4th, 5th, and 6th groups was given the powder as much as of 250, 500 and 750 mg/kgBW. On day 1 to day 14, they were fed with high cholesterol food then induced with 30 mg/kgBW of streptozotocin, and on day 17 were treated with suspension of white oyster mushroom powder. On day 24 and day 31, the blood glucose levels were checked. Data of blood glucose levels difference between before and after treatment were calculated and statistically processed of which normality had been previously tested using Shapiro Wilk and homogeneity using Levene Test. Data that had normal distribution were statistically analyzed using ANOVA (analysis of variance) with 95% confidence interval and continued with Post hoc Duncan to see the differences among the groups which were significantly different. While, data that did not have normal distribution were analyzed using non-parametric statistics, Kruskal Wallis Test, and then further using Mann Whitney Test. The results showed that powder of white oyster mushroom had antidiabetic activity at effective dose of 250 mg/KgBW


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.


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>


Author(s):  
Amine Azzane ◽  
Ayou Amssayef ◽  
Mohame Eddouks

Aims: The aim of the study was to evaluate the antihyperglycemic effect of Chenopodium quinoa. Background: Chenopodium quinoa is a pseudocereal plant with several medicinal properties. Objective: The goal of this investigation was to determine the antihyperglycemic activity of Chenopodium quinoa in both normal and streptozotocin(STZ)-induced diabetic rats. Methods: In this study, the effect of the aqueous extract of Chenopodium quinoa seeds (AECQS) (60 mg/kg) on blood glucose levels was evaluated in both normal and diabetic rats after a single (6 hours) and repeated oral administration (7 days of treatment). The effect of this herb on glucose tolerance and lipid profile was also studied. Additionally, histopathological examination of liver was carried out using the Hematoxylin-Eosin method. Furthermore, the in vitro antioxidant activity as well as a preliminary phytochemical screening and quantification of some secondary metabolites (phenolic compounds, flavonoids and tannins) were performed according to standard methods. Results: AECQS produced a significant lowering effect on plasma glucose levels in STZ-induced diabetic rats. In addition, this extract exhibited a remarkable amelioration on hepatic histopathology in diabetic rats. In addition, the extract exerted a remarkable antioxidant activity which could be due to the presence of some compounds found in this herb. Conclusion: In conclusion, this study demonstrates that the aqueous extract of Chenopodium quinoa seeds has a favorable effect in controlling diabetes mellitus.


2021 ◽  
Vol 4 (1) ◽  
pp. 44-53
Author(s):  
Andri Priyoherianto ◽  
◽  
Panji Ratih Suci ◽  
Putri Rizki Cahya Fatimah ◽  
Atik Nur Wijayanti

Diabetes mellitus is a chronic metabolic disorder that occurs due to destruction of pancreatic ? cells characterized by blood glucose levels that exceed normal limits. The purpose of this study was to determine the therapeutic effect of the combination of water hyacinth leaf extract and Sintrong leaf in reducing blood glucose levels in alloxan-induced experimental animals. Water hyacinth leaf powder and Sintrong leaves were extracted using the maceration method with 70% ethanol as a solvent. A total of 25 mice were divided into 5 groups, namely negative control CMC-Na 0.5%, positive control glibenclamide 0.00065 mg / g BW, water hyacinth leaf extract 17.5 mg / kg BW, Sintrong leaf extract 10.5 mg/ kg BW and a combination of water hyacinth leaf extract 17.5 mg / kg BW and sintrong leaf 10.5 mg / kg BW. The results showed that a single extract of water hyacinth and Sintrong leaves was able to reduce blood sugar levels for 7 days. The combination dose was effective in reducing blood sugar levels with a combination dose of 17.5 mg/ kg water hyacinth leaf extract in combination for 7 days.


2020 ◽  
Vol 5 (3) ◽  
pp. 167
Author(s):  
Safrida Safrida ◽  
Khairil Khairil ◽  
Fani Fardinita

This study determined the antihyperglycemic and antioxidant activity of nanoemulsion extracts of M. affine leaves in alloxan-induced rats. This research used 24 male Wistar rats around three months old which grouped as normal (untreated), negative control (treated with carboxymethyl cellulose sodium/Na-CMC,), positive control (treated with glibenclamide), and various concentration (30, 60, and 90%) of nanoemulsion extract of M. affine leaves groups. The extract of M. affine leaves had an antioxidant activity with IC50 5.30 ppm, categorized as a very strong antioxidant. Furthermore, the administration of this extract decreased glucose levels in antihyperglycemic rats.  We concluded that M. affine leaves extract potential as antioxidants and be developed as an ingredient for diabetic drugs.


Author(s):  
Joni Tandi ◽  
Franciska Diana Pratiwi ◽  
Surisna Surisna ◽  
Niluh Puspita Dewi ◽  
Magfirah Magfirah

This study aims to determine the effect of guava leaf extract (Psidiium guajava L) on hypercholesterolemia-diabetes and the effective dose for reducing cholesterol and blood glucose levels. This study is a laboratory experimental study using 30 rats divided into 6 test animals. the treatment group, each group consisted of 5 rats. Group I was normal control, group II negative control was given Na-CMC suspension, group III positive control was given simvastatin group IV dose 150 mg / kg BW, group V dose 250 mg / kg BW and group VI dose 350 mg / kg BW. The results showed that the ethanol extract of guava leaves had an effect on reducing blood glucose levels of male white rats with an effective dose of 250mg / kg BW with an average reduction of 119 mg/dL and effectively reduce cholesterol levels at a dose of 150 mg /kg BW with an average reduction of 28,33 mg/dL.


Author(s):  
Morad Hebi ◽  
Mohamed Eddouks

Introduction: Argania Spinosa L. (Sapotaceae) is an endemic species from south-western Morocco. This plant has many traditional uses including its use in the treatment of diabetes. Objective: The objective of the study was to evaluate the antidiabetic activity of Argania Spinosa Leaf Aqueous Extract (A.S.L.A.E). Methods: The antidiabetic effect of A.S.L.A.E was evaluated in both normal and streptozotocin (STZ)-induced diabetic rats treated at a dose of 20 mg/kg body weight for 15 days. The histopathological changes in the liver were evaluated. In addition, the antioxidant activity of this extract was also studied. Results: Single oral administration of A.S.L.A.E (20 mg/kg) showed no significant change in blood glucose levels in both normal and STZ induced diabetic rats after 6 hours of administration. Furthermore, in normal rats, repeated oral administration of A.S.L.A.E reduced blood glucose levels. Moreover, blood glucose levels decreased in STZ diabetic rats after fifteen days of treatment. According to the oral glucose tolerance test, the A.S.L.A.E (20 mg/kg) was shown to prevent significantly the increase in blood glucose levels in normal treated rats. Moreover, A.S.L.A.E showed antioxidant activity. Conclusion: The results show that Argania spinosa leaf aqueous extract possesses significant antihyperglycemic activity.


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