Diet change affects intestinal microbiota restoration and improves vertical sleeve gastrectomy outcome in diet-induced obese rats

被引:10
作者
Rossell, Joana [1 ]
Brindefalk, Bjorn [2 ]
Antonio Baena-Fustegueras, Juan [3 ]
Peinado-Onsurbe, Julia [1 ]
Udekwu, Klas, I [2 ]
机构
[1] Barcelona Univ, Biol Fac, Dept Biochem & Biomed, Barcelona, Spain
[2] Stockholm Univ, Wenner Gren Inst, Dept Mol Biosci, Stockholm, Sweden
[3] Lleida Univ, Arnau de Vilanova Univ Hosp, Surg Unit, Lleida, Spain
关键词
Bariatric surgery; High-fat diet; Rat models; Microbiota; HIGH-FAT DIET; GUT MICROBIOTA; WEIGHT-LOSS; MODULATION; IMPACT; MODEL;
D O I
10.1007/s00394-020-02190-8
中图分类号
R15 [营养卫生、食品卫生]; TS201 [基础科学];
学科分类号
100403 ;
摘要
Purpose Obesity, a worldwide health problem, is linked to an abnormal gut microbiota and is currently most effectively treated by bariatric surgery. Our aim was to characterize the microbiota of high-fat fed Sprague-Dawley rats when subjected to bariatric surgery (i.e., vertical sleeve gastrectomy) and posterior refeeding with either a high-fat or control diet. We hypothesized that bariatric surgery followed by the control diet was more effective in reverting the microbiota modifications caused by the high-fat diet when compared to either of the two factors alone. Methods Using next-generation sequencing of ribosomal RNA amplicons, we analyzed and compared the composition of the cecal microbiota after vertical sleeve gastrectomy with control groups representing non-operated rats, control fed, high-fat fed, and post-operative diet-switched animals. Rats were fed either a high-fat or control low-fat diet and were separated into three comparison groups after eight weeks comprising no surgery, sham surgery, and vertical sleeve gastrectomy. Half of the rats were then moved from the HFD to the control diet. Using next-generation sequencing of ribosomal RNA amplicons, we analyzed the composition of the cecal microbiota of rats allocated to the vertical sleeve gastrectomy group and compared it to that of the non-surgical, control fed, high-fat fed, and post-operative diet-switched groups. Additionally, we correlated different biological parameters with the genera exhibiting the highest variation in abundance between the groups. Results The high-fat diet was the strongest driver of altered taxonomic composition, relative microbial abundance, and diversity in the cecum. These effects were partially reversed in the diet-switched cohort, especially when combined with sleeve gastrectomy, resulting in increased diversity and shifting relative abundances. Several highly-affected genera were correlated with obesity-related parameters. Conclusions The dysbiotic state caused by high-fat diet was improved by the change to the lower fat, higher fiber control diet. Bariatric surgery contributed significantly and additively to the diet in restoring microbiome diversity and complexity. These results highlight the importance of dietary intervention following bariatric surgery for improved restoration of cecal diversity, as neither surgery nor change of diet alone had the same effects as when combined.
引用
收藏
页码:3555 / 3564
页数:10
相关论文
共 51 条
[1]   Triggering &ITAkkermansia&IT with dietary polyphenols: A new weapon to combat the metabolic syndrome? [J].
Anhe, Fernando F. ;
Pilon, Genevieve ;
Roy, Denis ;
Desjardins, Yves ;
Levy, Emile ;
Marette, Andre .
GUT MICROBES, 2016, 7 (02) :146-153
[2]   Impact of high-fat diet on the intestinal microbiota and small intestinal physiology before and after the onset of obesity [J].
Araujo, Joao Ricardo ;
Tomas, Julie ;
Brenner, Christiane ;
Sansonetti, Philippe J. .
BIOCHIMIE, 2017, 141 :97-106
[3]   The importance of the gut microbiota after bariatric surgery [J].
Aron-Wisnewsky, Judith ;
Dore, Joel ;
Clement, Karine .
NATURE REVIEWS GASTROENTEROLOGY & HEPATOLOGY, 2012, 9 (10) :590-598
[4]   Insulin Resistance, Microbiota, and Fat Distribution Changes by a New Model of Vertical Sleeve Gastrectomy in Obese Rats [J].
Basso, Nicola ;
Soricelli, Emanuele ;
Castagneto-Gissey, Lidia ;
Casella, Giovanni ;
Albanese, Davide ;
Fava, Francesca ;
Donati, Claudio ;
Tuohy, Kieran ;
Angelini, Giulia ;
La Neve, Federica ;
Severino, Anna ;
Kamvissi-Lorenz, Virginia ;
Birkenfeld, Andrea L. ;
Bornstein, Stefan ;
Manco, Melania ;
Mingrone, Geltrude .
DIABETES, 2016, 65 (10) :2990-3001
[5]   A new animal diet based on human Western diet is a robust diet-induced obesity model: comparison to high-fat and cafeteria diets in term of metabolic and gut microbiota disruption [J].
Bortolin, R. C. ;
Vargas, A. R. ;
Gasparotto, J. ;
Chaves, P. R. ;
Schnorr, C. E. ;
da Boit Martinello, K. ;
Silveira, A. K. ;
Rabelo, T. K. ;
Gelain, D. P. ;
Moreira, J. C. F. .
INTERNATIONAL JOURNAL OF OBESITY, 2018, 42 (03) :525-534
[6]   Metabolic endotoxemia with obesity: Is it real and is it relevant? [J].
Boutagy, Nabil E. ;
McMillan, Ryan P. ;
Frisard, Madlyn I. ;
Hulver, Matthew W. .
BIOCHIMIE, 2016, 124 :11-20
[7]   The Evolution of Metabolic/Bariatric Surgery [J].
Buchwald, Henry .
OBESITY SURGERY, 2014, 24 (08) :1126-1135
[8]   Practical Recommendations of the Obesity Management Task Force of the European Association for the Study of Obesity for the Post-Bariatric Surgery Medical Management [J].
Busetto, Luca ;
Dicker, Dror ;
Azran, Carmil ;
Batterham, Rachel L. ;
Farpour-Lambert, Nathalie ;
Fried, Martin ;
Hjelmesaeth, Joran ;
Kinzl, Johann ;
Leitner, Deborah R. ;
Makaronidis, Janine M. ;
Schindler, Karin ;
Toplak, Hermann ;
Yumuk, Volkan .
OBESITY FACTS, 2017, 10 (06) :597-632
[9]  
Callahan BJ, 2016, NAT METHODS, V13, P581, DOI [10.1038/NMETH.3869, 10.1038/nmeth.3869]
[10]   Next-Generation Beneficial Microbes: The Case of Akkermansia muciniphila [J].
Cani, Patrice D. ;
de Vos, Willem M. .
FRONTIERS IN MICROBIOLOGY, 2017, 8