Impact of Sustained Fructose Consumption on Gastrointestinal Function and Health in Wistar Rats: Glycoxidative Stress, Impaired Protein Digestion, and Shifted Fecal Microbiota

被引:5
作者
Sanchez-Terron, Guadalupe [1 ]
Martinez, Remigio [1 ,2 ,3 ]
Ruiz, Jorge [1 ]
Luna, Carolina [4 ]
Estevez, Mario [1 ]
机构
[1] Univ Extremadura UEX, Meat & Meat Prod Res Inst IPROCAR, TECAL Res Grp, Caceres 10003, Spain
[2] Univ Extremadura UEX, Anim Hlth Dept, Caceres 10003, Spain
[3] Univ Cordoba UCO, Anim Hlth Dept, ENZOEM Competit Res Unit, GISAZ Res Grp, Cordoba 14014, Spain
[4] SES, Serv Extremeno Salud, Emergency Unit, Caceres 10003, Spain
关键词
fructose; metabolomic; microbiota; protein digestibility; proteinglycoxidation; GAMMA-GLUTAMIC SEMIALDEHYDES; OXIDATIVE STRESS; DIETARY FRUCTOSE; GUT MICROBIOTA; DIGESTIBILITY; PRODUCTS; STOMACH;
D O I
10.1021/acs.jafc.3c04515
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
The gastrointestinal tract (GIT) is the target of assorted pathological conditions, and dietary components are known to affect its functionality and health. In previous in vitro studies, we observed that reducing sugars induced protein glycoxidation and impaired protein digestibility. To gain further insights into the pathophysiological effects of dietary sugars, Wistar rats were provided with a 30% (w/v) fructose water solution for 10 weeks. Upon slaughter, in vivo protein digestibility was assessed, and the entire GIT (digests and tissues) was analyzed for markers of oxidative stress and untargeted metabolomics. Additionally, the impact of sustained fructose intake on colonic microbiota was also evaluated. High fructose intake for 10 weeks decreased protein digestibility and promoted changes in the physiological digestion of proteins, enhancing intestinal digestion rather than stomach digestion. Moreover, at colonic stages, the oxidative stress was harmfully increased, and both the microbiota and the intraluminal colonic metabolome were modified.
引用
收藏
页码:16270 / 16285
页数:16
相关论文
共 77 条
[1]   Formation of α-aminoadipic and γ-glutamic semialdehydes in proteins by the Maillard reaction [J].
Akagawa, M ;
Sasaki, D ;
Kurota, Y ;
Suyama, K .
MAILLARD REACTION: CHEMISTRY AT THE INTERFACE OF NUTRITION, AGING, AND DISEASE, 2005, 1043 :129-134
[2]  
Almogbel E, 2017, J CLIN DIAGN RES, V11, pBC21, DOI 10.7860/JCDR/2017/23789.9417
[3]   Profiling of Protein Degraders in Cultures of Human Gut Microbiota [J].
Amaretti, Alberto ;
Gozzoli, Caterina ;
Simone, Marta ;
Raimondi, Stefano ;
Righini, Lucia ;
Perez-Brocal, Vicente ;
Garcia-Lopez, Rodrigo ;
Moya, Andres ;
Rossi, Maddalena .
FRONTIERS IN MICROBIOLOGY, 2019, 10
[4]  
[Anonymous], 2018, GUID SUG INT AD CHIL
[5]   Dietary Sugars and Endogenous Formation of Advanced Glycation Endproducts: Emerging Mechanisms of Disease [J].
Aragno, Manuela ;
Mastrocola, Raffaella .
NUTRIENTS, 2017, 9 (04)
[6]   Advanced glycation endproducts form during ovalbumin digestion in the presence of fructose: Inhibition by chlorogenic acid [J].
Bains, Yasmin ;
Gugliucci, Alejandro ;
Caccavello, Russell .
FITOTERAPIA, 2017, 120 :1-5
[7]   ROLE OF OXIDATIVE STRESS IN DEVELOPMENT OF COMPLICATIONS IN DIABETES [J].
BAYNES, JW .
DIABETES, 1991, 40 (04) :405-412
[8]   Fructose-Induced Intestinal Microbiota Shift Following Two Types of Short-Term High-Fructose Dietary Phases [J].
Beisner, Julia ;
Gonzalez-Granda, Anita ;
Basrai, Maryam ;
Damms-Machado, Antje ;
Bischoff, Stephan C. .
NUTRIENTS, 2020, 12 (11) :1-21
[9]   Small and Large Intestine (II): Inflammatory Bowel Disease, Short Bowel Syndrome, and Malignant Tumors of the Digestive Tract [J].
Ber, Yolanda ;
Garcia-Lopez, Santiago ;
Gargallo-Puyuelo, Carla J. ;
Gomollon, Fernando .
NUTRIENTS, 2021, 13 (07)
[10]   OXIDATIVE STRESS: AN ESSENTIAL FACTOR IN THE PATHOGENESIS OF GASTROINTESTINAL MUCOSAL DISEASES [J].
Bhattacharyya, Asima ;
Chattopadhyay, Ranajoy ;
Mitra, Sankar ;
Crowe, Sheila E. .
PHYSIOLOGICAL REVIEWS, 2014, 94 (02) :329-354