Xie Jiahao, Shi Shiyi, Liu Yucheng, Wang Shaoshuai, Rajput Shahid Ali, Song Tongxing
Department of Animal Nutrition and Feed Science, College of Animal Science and Technology, Huazhong Agricultural University, Wuhan, China.
Faculty of Veterinary and Animal Sciences, Muhammad Nawaz Shareef University of Agriculture Multan, Multan, Pakistan.
Front Nutr. 2022 Jul 29;9:922051. doi: 10.3389/fnut.2022.922051. eCollection 2022.
Epidemiological studies have shown that excessive intake of fructose is largely responsible for the increasing incidence of non-alcoholic fatty liver, obesity, and diabetes. However, depending on the amount of fructose consumption from diet, the metabolic role of fructose is controversial. Recently, there have been increasing studies reporting that diets low in fructose expand the surface area of the gut and increase nutrient absorption in mouse model, which is widely used in fructose-related studies. However, excessive fructose consumption spills over from the small intestine into the liver for steatosis and increases the risk of colon cancer. Therefore, suitable animal models may be needed to study fructose-induced metabolic changes. Along with its use in global meat production, pig is well-known as a biomedical model with an advantage over murine and other animal models as it has similar nutrition and metabolism to human in anatomical and physiological aspects. Here, we review the characteristics and metabolism of fructose and summarize observations of fructose in pig reproduction, growth, and development as well as acting as a human biomedical model. This review highlights fructose metabolism from the intestine to the blood cycle and presents the critical role of fructose in pig, which could provide new strategies for curbing human metabolic diseases and promoting pig production.
流行病学研究表明,过量摄入果糖在很大程度上导致了非酒精性脂肪肝、肥胖症和糖尿病发病率的上升。然而,根据饮食中果糖的摄入量,果糖的代谢作用存在争议。最近,越来越多的研究报告称,在广泛用于果糖相关研究的小鼠模型中,低果糖饮食会扩大肠道表面积并增加营养吸收。然而,过量摄入果糖会从小肠溢出到肝脏导致脂肪变性,并增加患结肠癌的风险。因此,可能需要合适的动物模型来研究果糖诱导的代谢变化。随着猪在全球肉类生产中的应用,猪作为一种生物医学模型而闻名,它在解剖学和生理学方面与人类具有相似的营养和代谢,这使其相对于小鼠和其他动物模型具有优势。在此,我们综述果糖的特性和代谢,并总结果糖在猪繁殖、生长和发育以及作为人类生物医学模型方面的观察结果。本综述重点介绍了果糖从肠道到血液循环的代谢过程,并阐述了果糖在猪体内的关键作用,这可为控制人类代谢疾病和促进猪的生产提供新策略。