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Effects of Polyphenol-rich Cornelian Cherry (Cornus mas L.) and Barberry (Berberis vulgaris) Fruits Extract on Reducing in vitro Starch Digestibility: An Evaluation of Hydrolysis Index

Yıl 2022, Cilt: 6 Sayı: 1, 1 - 5, 15.07.2022

Öz

The purpose of this study was to investigate the polyphenol-rich cornelian cherry (Cornus masL.) and barberry (Berberis vulgaris) fruits extract on reducing the in vitro starch digestibility of white bread and evaluation of glycemic indexes. When we evaluated the association between the Rapidly digestible starch (RDS) and Hydrolysis index (HI), the amount of RDS was decreased by the treatments of barberry extract and cornelian cherry extract and the HI of white bread was also decreased. It is thought that the barberry has more inhibitory effects on α-amylase activity than cornelian cherry. We also demonstrated that dietary polyphenols such as anthocyanins and catechins found in cornelian cherry and barberry fruit reduced starch digestion by inhibiting α-amylase and α-glucosidase. When we compare the RDS, SDS, and RS values between the cornelian cherry and barberry treatments, the barberry treatment on WB showed a better-quality starch fraction than the cornelian cherry treatment. This may be because the barberry has a higher amount of antioxidant capacity than the cornelian cherry. Generally, two berry fruits had the effect of reducing the starch digestibility of WB. Thus, consumption of colored berries may contribute to reducing the GI of foods.These findings are demonstrating that barberry and cornelian cherry consumption is favorable for the dietary management of metabolic disorders such as diabetes and hyperlipidemia. According to the results of this study, functional products can be developed to control blood glucose in diabetes. There is a need for more comprehensive studies on this subject that will reveal the causes of the problem.

Kaynakça

  • [1]Lima AL, Illing T, Schliemann S, Elsner P. Cutaneous manifestations of diabetes mellitus: a review. American Journal of Clinical Dermatology(2017) 18(4):541–553.
  • [2]Nanayakkara N, Curtis AJ, Heritier S, Gadowski AM, Pavkov ME, Kenealy T, et al. Impact of age at type 2 diabetes mellitus diagnosis on mortality and vascular complications: systematic review and meta-analyses. Diabetologia(2021) 64(2):275–287.
  • [3]Vlachos D, Malisova S, Lindberg FA, Karaniki G. Glycemic Index (GI) or glycemic load (GL) and dietary interventions for optimizing postprandial hyperglycemia in patients with T2 diabetes: A review. Nutrients(2020) 12(6):1561.
  • [4]Dereje N, Bekele G, Nigatu Y, Worku Y, Holland RP. Glycemic index and load of selected ethiopian foods: an experimental study. Journal of diabetes research(2019) 2019.
  • [5]Çatak J. Ülkemizde Tüketilen Bazı Gıda Ürünleri ile Bisküvilerin Glisemik İndekslerinin In Vitro Yöntemlerle Belirlenmesi [Determination of Glycemic Indexes of Some Food Products and Biscuits Consumed in Our Country by In Vitro Methods]. Avrupa Bilim ve Teknoloji Dergisi(2019)(16):940–947.
  • [6]Giuberti G, Rocchetti G, Lucini L. Interactions between phenolic compounds, amylolytic enzymes and starch: An updated overview. Current Opinion in Food Science(2020) 31:102–113.
  • [7]Goñi I, Garcia-Diz L, Mañas E, Saura-CalixtoF. Analysis of resistant starch: a method for foods and food products. Food chemistry(1996) 56(4):445–449.
  • [8]Englyst HN, Kingman SM, Cummings JH. Classification and measurement of nutritionally important starch fractions. European journal of clinical nutrition(1992) 46:S33‐50.
  • [9]Sieri S, Agnoli C, Grioni S, Weiderpass E, Mattiello A, Sluijs I, et al. Glycemic index, glycemic load, and risk of coronary heart disease: a pan-European cohort study. The American journal of clinical nutrition(2020) 112(3):631–643.
  • [10]Gorji Z, Modaresi M, Yekanni-Nejad S, Mahmoudi M. Effects of low glycemic index/high-fat, high-calorie diet on glycemic control and lipid profiles of children and adolescence with cystic fibrosis: A randomized double-blind controlled clinical trial. Diabetes & Metabolic Syndrome: Clinical Research & Reviews(2020) 14(2):87–92.
  • [11]Hanhineva K, Törrönen R, Bondia-Pons I, Pekkinen J, Kolehmainen M, Mykkänen H, et al. Impact of dietary polyphenols on carbohydrate metabolism. International journal of molecular sciences(2010) 11(4):1365–1402.
  • [12]Sun L, Miao M. Dietary polyphenols modulate starch digestion and glycaemic level: A review. Critical reviews in food science and nutrition(2020) 60(4):541–555.
  • [13]Capcarova M, Kalafova A, Schwarzova M, Schneidgenova M, Svik K, Prnova MS, et al. Cornelian cherry fruit improves glycaemia and manifestations of diabetes in obese Zucker diabetic fatty rats. Research in veterinary science(2019) 126:118–123.
  • [14]Dzydzan O, Bila I, Kucharska AZ, Brodyak I, Sybirna N. Antidiabetic effects of extracts of red and yellow fruits of cornelian cherries (Cornus mas L.) on rats with streptozotocin-induced diabetes mellitus. Food & function(2019) 10(10):6459–6472.
  • [15]Popović BM, Blagojević B, Latković D, Četojević-Simin D, Kucharska AZ, Parisi F, et al. A one step enhanced extraction and encapsulation system of cornelian cherry (Cornus mas L.) polyphenols and iridoids with \beta-cyclodextrin. LWT(2021) 141:110884.
  • [16]Emamat H, Asadian S, Zahedmehr A, GhanavatiM, Nasrollahzadeh J, Rahimi-Madiseh M, et al. The effect of barberry (Berberis vulgaris) consumption on flow-mediated dilation and inflammatory biomarkers in patients with hypertension: A randomized controlled trial. Phytotherapy Research(2017) 20(5):569.
  • [17]Rahimi-Madiseh M, Lorigoini Z, Zamani-Gharaghoshi, Hajar and Rafieian-Kopaei, Mahmoud. Berberis vulgaris: specifications and traditional uses. Iranian Journal of Basic Medical Sciences(2017) 20(5):569–587.
  • [18]Kashkooli RI, Najafi SS, Sharif F, Hamedi A, Asl MKH, Kalyani MN, et al. The effect of Berberis vulgaris extract on transaminase activities in non-alcoholic fatty liver disease. Hepatitis monthly(2015) 15(2).
  • [19]Ebrahimi-Mamaghani M, Arefhosseini, SR, Golzarand M, Aliasgarzadeh A, Vahed-Jabbary M. Long-term effects of processed Berberis vulgaris on some metabolic syndrome components. Iranian Journal of Endocrinology and Metabolism(2009) 11(1):41–47.
  • [20]Safari Z, Farrokhzad A, Ghavami A, Fadel A, Hadi A, Rafiee S, et al. The effect of barberry (Berberis vulgaris L.) on glycemic indices: A systematic review and meta-analysis of randomized controlled trials. Complementary Therapies in Medicine(2020) 51:102414.
Yıl 2022, Cilt: 6 Sayı: 1, 1 - 5, 15.07.2022

Öz

Kaynakça

  • [1]Lima AL, Illing T, Schliemann S, Elsner P. Cutaneous manifestations of diabetes mellitus: a review. American Journal of Clinical Dermatology(2017) 18(4):541–553.
  • [2]Nanayakkara N, Curtis AJ, Heritier S, Gadowski AM, Pavkov ME, Kenealy T, et al. Impact of age at type 2 diabetes mellitus diagnosis on mortality and vascular complications: systematic review and meta-analyses. Diabetologia(2021) 64(2):275–287.
  • [3]Vlachos D, Malisova S, Lindberg FA, Karaniki G. Glycemic Index (GI) or glycemic load (GL) and dietary interventions for optimizing postprandial hyperglycemia in patients with T2 diabetes: A review. Nutrients(2020) 12(6):1561.
  • [4]Dereje N, Bekele G, Nigatu Y, Worku Y, Holland RP. Glycemic index and load of selected ethiopian foods: an experimental study. Journal of diabetes research(2019) 2019.
  • [5]Çatak J. Ülkemizde Tüketilen Bazı Gıda Ürünleri ile Bisküvilerin Glisemik İndekslerinin In Vitro Yöntemlerle Belirlenmesi [Determination of Glycemic Indexes of Some Food Products and Biscuits Consumed in Our Country by In Vitro Methods]. Avrupa Bilim ve Teknoloji Dergisi(2019)(16):940–947.
  • [6]Giuberti G, Rocchetti G, Lucini L. Interactions between phenolic compounds, amylolytic enzymes and starch: An updated overview. Current Opinion in Food Science(2020) 31:102–113.
  • [7]Goñi I, Garcia-Diz L, Mañas E, Saura-CalixtoF. Analysis of resistant starch: a method for foods and food products. Food chemistry(1996) 56(4):445–449.
  • [8]Englyst HN, Kingman SM, Cummings JH. Classification and measurement of nutritionally important starch fractions. European journal of clinical nutrition(1992) 46:S33‐50.
  • [9]Sieri S, Agnoli C, Grioni S, Weiderpass E, Mattiello A, Sluijs I, et al. Glycemic index, glycemic load, and risk of coronary heart disease: a pan-European cohort study. The American journal of clinical nutrition(2020) 112(3):631–643.
  • [10]Gorji Z, Modaresi M, Yekanni-Nejad S, Mahmoudi M. Effects of low glycemic index/high-fat, high-calorie diet on glycemic control and lipid profiles of children and adolescence with cystic fibrosis: A randomized double-blind controlled clinical trial. Diabetes & Metabolic Syndrome: Clinical Research & Reviews(2020) 14(2):87–92.
  • [11]Hanhineva K, Törrönen R, Bondia-Pons I, Pekkinen J, Kolehmainen M, Mykkänen H, et al. Impact of dietary polyphenols on carbohydrate metabolism. International journal of molecular sciences(2010) 11(4):1365–1402.
  • [12]Sun L, Miao M. Dietary polyphenols modulate starch digestion and glycaemic level: A review. Critical reviews in food science and nutrition(2020) 60(4):541–555.
  • [13]Capcarova M, Kalafova A, Schwarzova M, Schneidgenova M, Svik K, Prnova MS, et al. Cornelian cherry fruit improves glycaemia and manifestations of diabetes in obese Zucker diabetic fatty rats. Research in veterinary science(2019) 126:118–123.
  • [14]Dzydzan O, Bila I, Kucharska AZ, Brodyak I, Sybirna N. Antidiabetic effects of extracts of red and yellow fruits of cornelian cherries (Cornus mas L.) on rats with streptozotocin-induced diabetes mellitus. Food & function(2019) 10(10):6459–6472.
  • [15]Popović BM, Blagojević B, Latković D, Četojević-Simin D, Kucharska AZ, Parisi F, et al. A one step enhanced extraction and encapsulation system of cornelian cherry (Cornus mas L.) polyphenols and iridoids with \beta-cyclodextrin. LWT(2021) 141:110884.
  • [16]Emamat H, Asadian S, Zahedmehr A, GhanavatiM, Nasrollahzadeh J, Rahimi-Madiseh M, et al. The effect of barberry (Berberis vulgaris) consumption on flow-mediated dilation and inflammatory biomarkers in patients with hypertension: A randomized controlled trial. Phytotherapy Research(2017) 20(5):569.
  • [17]Rahimi-Madiseh M, Lorigoini Z, Zamani-Gharaghoshi, Hajar and Rafieian-Kopaei, Mahmoud. Berberis vulgaris: specifications and traditional uses. Iranian Journal of Basic Medical Sciences(2017) 20(5):569–587.
  • [18]Kashkooli RI, Najafi SS, Sharif F, Hamedi A, Asl MKH, Kalyani MN, et al. The effect of Berberis vulgaris extract on transaminase activities in non-alcoholic fatty liver disease. Hepatitis monthly(2015) 15(2).
  • [19]Ebrahimi-Mamaghani M, Arefhosseini, SR, Golzarand M, Aliasgarzadeh A, Vahed-Jabbary M. Long-term effects of processed Berberis vulgaris on some metabolic syndrome components. Iranian Journal of Endocrinology and Metabolism(2009) 11(1):41–47.
  • [20]Safari Z, Farrokhzad A, Ghavami A, Fadel A, Hadi A, Rafiee S, et al. The effect of barberry (Berberis vulgaris L.) on glycemic indices: A systematic review and meta-analysis of randomized controlled trials. Complementary Therapies in Medicine(2020) 51:102414.
Toplam 20 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Mühendislik
Bölüm Research Articles
Yazarlar

Burcu Uslu Bu kişi benim

Fatma Esra Güneş Bu kişi benim

Mustafa Yaman Bu kişi benim

Tuba Özdemir Sancı Bu kişi benim

Settingsçağla Zübeyde Köprü Bu kişi benim

Yayımlanma Tarihi 15 Temmuz 2022
Gönderilme Tarihi 18 Ekim 2021
Yayımlandığı Sayı Yıl 2022 Cilt: 6 Sayı: 1

Kaynak Göster

APA Uslu, B., Güneş, F. E., Yaman, M., Özdemir Sancı, T., vd. (2022). Effects of Polyphenol-rich Cornelian Cherry (Cornus mas L.) and Barberry (Berberis vulgaris) Fruits Extract on Reducing in vitro Starch Digestibility: An Evaluation of Hydrolysis Index. International Journal of Innovative Research and Reviews, 6(1), 1-5.