STZ İle Diyabet Oluşturulan Sıçanlarda Rosa Pisiformis(Christ) D.Sons'un Bazı Metabolik Enzim Aktiviteleri Üzerine Etkisi
Year 2021,
Volume: 11 Issue: 4, 2880 - 2889, 15.12.2021
Mahire Bayramoğlu Akkoyun
,
A. Şükrü Bengü
,
Yusuf Temel
,
H. Turan Akkoyun
,
Suat Ekin
,
Mehmet Çiftci
Abstract
Bu çalışmada Streptozotosin (STZ) ile diyabet oluşturulan sıçanlarda Rosa pisiformis (Christ) D.Sosn. (VANF F13827 END.) 'in bazı metabolik enzimler üzerine in vivo etkilerinin araştırılması amaçlandı. 32 adet wistar albino cinsi erkek sıçan dört gruba ayrıldı. Grup I:Kontrol, Grup II:Streptozotosin, Grup III: Rosa pisiformis, Grup IV: Streptozotosin + Rosa pisiformis. Deneysel çalışma 30 gün sürdürüldü ve enzim aktiviteleri spektrofotometrik olarak ölçüldü. Glukoz 6-fosfat dehidrogenaz (G6PD) aktivitesinde R.p.meyve ekstraktı ve STZ+R.p meyve ekstraktı uygulanan gruplarda kontrolle kıyaslandığında anlamlı düzeyde artış görüldü(p˂0.001). 6-fosfoglukonat dehidrogenaz (6PGD) enzim aktivitesi diyabet oluşturulan grupta kontrole oranla azaldı. Aksine R.p meyve ekstraktı ve STZ+R.p meyve ekstraktı uygulanan grupta arttı. Glutatyon reduktaz (GR) enzim aktivitesi R.p meyve ekstraktı uygulanan grupta kontrole oranla istatistiksel olarak anlamlı düzeyde yükseldi (p˂0.001). Tioredoksin redüktaz (TrxR) aktivitesi diyabetik sıçanlarda kontrol ile karşılaştırıldığında istatistiksel olarak önemli bir azalma göstermezken, Rosa pisiformis meyve ekstraktı uygulanan grupta arttı. Glutatyon S-transferaz (GST) enzim aktivitesinin STZ uygulanan grupta kontrole oranla anlamlı şekilde azaldığı görüldü (p˂0.05). Sonuç olarak; Rosaceae familyasına ait endemik bir tür olarak yetişen Rosa pisiformis meyvelerinin sıçanlarda 6PGD, TrxR ve GST enzim aktiviteleri üzerine STZ'nin neden olduğu inhibisyonu azaltıcı yada önleyici etkisinin olabileceği düşünülmektedir.
References
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The Effect of Rosa Pisiformis (Christ) D.Sosn on Some Metabolic Enzyme Activities in STZ Applied Diabetic Rats
Year 2021,
Volume: 11 Issue: 4, 2880 - 2889, 15.12.2021
Mahire Bayramoğlu Akkoyun
,
A. Şükrü Bengü
,
Yusuf Temel
,
H. Turan Akkoyun
,
Suat Ekin
,
Mehmet Çiftci
Abstract
This study was aimed to study in vivo impacts of Rosa pisiformis (Christ) D.Sosn. (VANF F13827 END.) on some metabolic enzymes (G6PD, 6PGD, GR, TrxR and GST) in Streptozotocin (STZ) applied diabetic rats. 32 male Wistar albino rats divided four groups. Group I: Control, Group II:Streptozotocin, Group III: Rosa pisiformis and Group IV: Streptozotocin+Rosa pisiformis. Experimental study contunied for 30 days and enzyme activities were spectrophotometrically measured. R.p.fruit extract and STZ+R.p. fruit extract administrations increased Glucose 6-phosphate dehydrogenase (G6PD) activity meaningfully compared to control (p˂0.001). 6-phosphogluconate dehydrogenase (6PGD) enzyme activity reduced in diabetes group compared to control, whereas it increased in R.p. fruit extract and STZ+R.p. fruit administered groups. Glutathione reductase (GR) activity raised in R.p. fruit administered group compared to control group meaningfully (p˂0.001). Thioredoxin reductase (TrxR) activity decrease no statistical importance in diabetic rats compared control whereas this activity increased in Rosa pisiformis fruit extract group. Glutathione S-transferases (GST) enzyme activity reduction significantly in STZ group compared to control (p˂0.05). As a result, It is thought that the fruits of Rosa pisiformis, which grows as an endemic species belonging to the Rosaceae family, may have a reducing or preventing effect on the 6PGD, TrxR and GST enzyme activities in rats by inhibiting caused by STZ.
References
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- Beydemir S, Ciftci M, Yilmaz H, Kufrevioglu O, 2004. 6-Phosphogluconate Dehydrogenase: Purification, Characterization and Kinetic Properties from Rat Erythrocytes. Turkish J. Vet. Animal Sci., 28, 707–714.
- Branco V, Godinho-santos A, Gonçalves J, Lu J, Holmgren A, Carvalho C, 2014. Free Radical Biology and Medicine Mitochondrial thioredoxin reductase inhibition , selenium status , and Nrf-2 activation are determinant factors modulating the toxicity of mercury compounds. Free Radical Biology and Medicine, 73, 95–105.
- Carlberg I, Mannervik B, 1986. Reduction of 2, 4, 6-trinitrobenzenesulfonate by glutathione reductase and the effect of NADP+ on the electron transfer. Journal of Biological Chemistry, 261(4), 1629-1635.
- Ciftci M, Bilici D, Kufrevioglu OI, 2001. Effects of metamizol and magnesium sulfate on enzyme activities of glucose-6-phosphate dehydrogenase from human erythrocytes in vitro and from rat erythrocytes in vivo. Pharmacol Res, 44(1), 7–11
- Cilaker-Mıcılı S, Ergür Bu, Özoğul C, Sarıoğlu S, Bağrıyanık A, Tuğyan K, Pekçetin Ç, Sönmez Ü, Tekmen I, Erbil G, Akdoğan Gg, Özyurt D, Buldan Z, 2012. Deneysel Hipertansiyon ve Diyabet Modeli Oluşturulan Sıçanlarda Böbreğin İmmunohistokimyasal Olarak İncelenmesi, 91–101.
- Deshpande AD, Harris-Hayes M, Schootman M, 2008. Epidemiology of diabetes and diabetes-related complications. Physical therapy, 88: 1254-1264.
- Djeridane A, Yousfi M, Nadjemi B, Boutassouna D, Stocker P, Vidal N, 2006. Antioxidant activity of some algerian medicinal plants extracts containing phenolic compounds. Food Chemistry, 97(4), 654–660.
- Ercisli S, 2005. Rose (Rosa spp.) germplasm resources of Turkey. Genetic Resources and Crop Evolution, 52(6), 787–795.
- Ercisli S, 2007. Chemical composition of fruits in some rose (Rosa spp.) species. Food Chemistry, 104(4), 1379–1384.
- Federiuk IF, Casey HM, Quinn MJ, Wood MD, Ward WK, 2004. Induction of type-1 diabetes mellitus in laboratory rats by use of alloxan: Route of administration, pitfalls, and insulin treatment. Comparative Medicine, 54(3), 252–257.
- Gholamhoseinian A, Fallah H, Sharifi far F, 2009. Inhibitory effect of methanol extract of Rosa damascena Mill. flowers on α-glucosidase activity and postprandial hyperglycemia in normal and diabetic rats. Phytomedicine, 16(10), 935–941.
- Habig WH, Pabst MJ, Jakoby WB, 1974. Glutathione S-transferases the first enzymatic step in mercapturic acid formation. Journal of Biological Chemistry, 249, 7130–7139.
- Halvorsen BL, Holte K, Myhrstad MCW, Barikmo I, Hvattum E, Remberg SF, Blomhoff R, 2002. A systematic screening of total antioxidants in dietary plants. Journal of Nutrition, 132(3), 461–471.
- Holmgren A, 1977. Bovine thioredoxin system. Purification of thioredoxin reductase from calf liver and thymus and studies of its function in disulfide reduction. Journal of Biological Chemistry, 252(13), 4600-4606.
- Imaeda A, Kaneko T, Aoki T, Kondo Y, Nagase H, 2002. DNA damage and the effect of antioxidants in streptozotocin-treated mice. Food and Chemical Toxicology, 40(7), 979–987.
- Junod A, Lambert AE, Stauffacher W, Renold AE, 1969. Diabetogenic action of streptozotocin: relationship of dose to metabolic response. The Journal of clinical investigation, 48(11), 2129–2139.
- Karaman M, Temel Y, Bayindir S, 2020. Inhibition effect of rhodanines containing benzene moieties on pentose phosphate pathway enzymes and molecular docking. Journal of Molecular Structure, 1220, 128700.
- Kifle Z D, Belayneh YM, 2020. Antidiabetic and Anti-hyperlipidemic Effects of the Crude Hydromethanol Extract of Hagenia abyssinica (Rosaceae) Leaves in Streptozotocin-Induced Diabetic Mice. Diabetes, Metabolic Syndrome and Obesity: Targets and Therapy, 13, 4085.
- Kozar RA, Weibel CJ, Cipolla J, Klein AJP, Haber MM, Abedin MZ, Trooskin SZ, 2000. İnjury, 28(7).
- Lee SE, Hwang HJ, Ha JS, Jeong HS, Kim JH, 2003. Screening of medicinal plant extracts for antioxidant activity. Life Sciences, 73(2), 167–179.
- Lenzen S, 2008. The mechanisms of alloxan- and streptozotocin-induced diabetes. Diabetologia, 51(2), 216–226.
- López V, Akerreta S, Casanova E, García-Mina JM, Cavero RY, Calvo MI, 2007. In vitro antioxidant and anti-rhizopus activities of lamiaceae herbal extracts. Plant Foods for Human Nutrition, 62(4), 151–155.
- Maritim AC, Sanders RA, Watkins JB, 2003. Diabetes, oxidative stress, and antioxidants: A review. Journal of Biochemical and Molecular Toxicology, 17(1), 24–38
- Metelko Z, Pavlić-Renar I, Tomić M, Bratanić N, 2000. New diagnostic criteria and classification of diabetes mellitus. Lijecnicki vjesnik, 122(5–6), 99–102.
- Nelson DL, Cox MM, 2000. Lehninger principles of biochemistry, Worth Publishers. New York, 407,800-814.
- Orhan N, Aslan M, Hoşbaş S, Deliorman Orhan D, 2009. Antidiabetic effect and antioxidant potential of Rosa canina fruits. Pharmacognosy Magazine, 5(20), 309–315.
- Özaslan MS, Balcı N, Demir Y, Gürbüz M, Küfrevioğlu Öİ, 2019. Inhibition effects of some antidepressant drugs on pentose phosphate pathway enzymes. Environmental Toxicology and Pharmacology, 72(March).
- Öztaşan N, Altinkaynak K, Akçay F, Göçer F, Dane Ş, 2005. Effects of mad honey on blood glucose and lipid levels in rats with streptozocin-induced diabetes. Turkish Journal of Veterinary and Animal Sciences, 29(5), 1093–1096.
- Pljesa-Ercegovac M, Savic-Radojevic A, Matic M, Coric V, Djukic T, Radic T, Simic T, 2018. Glutathione transferases: Potential targets to overcome chemoresistance in solid tumors. International Journal of Molecular Sciences, 19(12).
- Rahimi M, Sajadimajd S, Mahdian Z, Hemmati M, Malekkhatabi P, Bahrami G, Derakhshankhah H, 2020. Characterization and anti-diabetic effects of the oligosaccharide fraction isolated from Rosa canina in STZ-Induced diabetic rats. Carbohydrate research, 489, 107927.
- Rossini AA, Like AA, Chick WL, Appel MC, Cahill GF, 1977. Studies of streptozotocin induced insulitis and diabetes. Proceedings of the National Academy of Sciences of the United States of America, 74(6), 2485–2489.
- Sen CK, Packer L,1996. Antioxidant and redox regulation of gene transcription. The FASEB Journal, 10(7), 709–720.
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