Author:
Soomro Maqbool Ahmed,Khan Shaista,Majid Abdul,Bhatti Shamim,Perveen Shazia,Phull Abdul Rehman
Abstract
AbstractPectin is a complex polysaccharide found in a variety of fruits and vegetables. It has been shown to have potential antidiabetic activity along with other biological activities, including cholesterol-lowering properties, antioxidant activity, anti-inflammatory and immune-modulatory effects, augmented healing of diabetic foot ulcers and other health benefits. There are several pectin-associated antidiabetic mechanisms, such as the regulation of glucose metabolism, reduction of oxidative stress, increased insulin sensitivity, appetite suppression and modulation of the gut microbiome. Studies have shown that pectin supplementation has antidiabetic effects in different animal models and in vitro. In human studies, pectin has been found to have a positive effect on blood glucose control, particularly in individuals with type 2 diabetes. Pectin also shows synergistic effects by enhancing the potency and efficacy of antidiabetic drugs when taken together. In conclusion, pectin has the potential to be an effective antidiabetic agent. However, further research is needed to fully understand its detailed molecular mechanisms in various animal models, functional food formulations and safety profiles for the treatment and management of diabetes and associated complications in humans. The current study was carried out to provide the critical approach towards therapeutical potential, anti-diabetic potential and underlying molecular mechanisms on the basis of existing knowledge.
Publisher
Springer Science and Business Media LLC
Reference182 articles.
1. Noreen A, Akram J, Rasul I, Mansha A, Yaqoob N, Iqbal R, Tabasum S, Zuber M, Zia KM. Pectins functionalized biomaterials; a new viable approach for biomedical applications: a review. Int J Biol Macromol. 2017;101:254–72.
2. Yu Y, Shen M, Song Q, Xie J. Biological activities and pharmaceutical applications of polysaccharide from natural resources: a review. Carbohyd Polym. 2018;183:91–101.
3. Bush PL. Pectin: chemical properties, uses and health benefits. Hauppauge: Nova Science Publishers, Incorporated; 2014.
4. Morris VJ, Belshaw NJ, Waldron KW, Maxwell EG. The bioactivity of modified pectin fragments. Bioact Carbohydr Dietary Fibre. 2013;1(1):21–37.
5. Naseri AT, Thibault JF, Ralet-Renard MC. Citrus pectin: structure and application in acid dairy drinks. 2008.