JBMR Plus
(Dec 2023)
The Dietary Fiber Inulin Slows Progression of Chronic Kidney Disease–Mineral Bone Disorder (CKD‐MBD) in a Rat Model of CKD
- Annabel Biruete,
- Neal X. Chen,
- Corinne E. Metzger,
- Shruthi Srinivasan,
- Kalisha O'Neill,
- Paul B. Fallen,
- Austin Fonseca,
- Hannah E. Wilson,
- Henriette deLoor,
- Pieter Evenepoel,
- Kelly S. Swanson,
- Matthew R. Allen,
- Sharon M. Moe
Affiliations
- Annabel Biruete
- Department of Nutrition Science Purdue University West Lafayette IN USA
- Neal X. Chen
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Corinne E. Metzger
- Department of Anatomy, Cell Biology, and Physiology Indiana University School of Medicine Indianapolis IN USA
- Shruthi Srinivasan
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Kalisha O'Neill
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Paul B. Fallen
- Department of Anatomy, Cell Biology, and Physiology Indiana University School of Medicine Indianapolis IN USA
- Austin Fonseca
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Hannah E. Wilson
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Henriette deLoor
- KU Leuven Department of Microbiology and Immunology Nephrology and Renal Transplantation Research Group, KU Leuven Leuven Belgium
- Pieter Evenepoel
- KU Leuven Department of Microbiology and Immunology Nephrology and Renal Transplantation Research Group, KU Leuven Leuven Belgium
- Kelly S. Swanson
- Department of Animal Sciences University of Illinois at Urbana‐Champaign Urbana IL USA
- Matthew R. Allen
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- Sharon M. Moe
- Department of Medicine, Division of Nephrology Indiana University School of Medicine Indianapolis IN USA
- DOI
-
https://doi.org/10.1002/jbm4.10837
- Journal volume & issue
-
Vol. 7,
no. 12
pp.
n/a
– n/a
Abstract
Read online
Abstract Chronic kidney disease (CKD)–mineral bone disorder (CKD‐MBD) leads to fractures and cardiovascular disease. Observational studies suggest beneficial effects of dietary fiber on both bone and cardiovascular outcomes, but the effect of fiber on CKD‐MBD is unknown. To determine the effect of fiber on CKD‐MBD, we fed the Cy/+ rat with progressive CKD a casein‐based diet of 0.7% phosphate with 10% inulin (fermentable fiber) or cellulose (non‐fermentable fiber) from 22 weeks to either 30 or 32 weeks of age (~30% and ~15% of normal kidney function; CKD 4 and 5). We assessed CKD‐MBD end points of biochemistry, bone quantity and quality, cardiovascular health, and cecal microbiota and serum gut‐derived uremic toxins. Results were analyzed by two‐way analysis of variance (ANOVA) to evaluate the main effects of CKD stage and inulin, and their interaction. The results showed that in CKD animals, inulin did not alter kidney function but reduced the increase from stage 4 to 5 in serum levels of phosphate and parathyroid hormone, but not fibroblast growth factor‐23 (FGF23). Bone turnover and cortical bone parameters were similarly improved but mechanical properties were not altered. Inulin slowed progression of aorta and cardiac calcification, left ventricular mass index, and fibrosis. To understand the mechanism, we assessed intestinal microbiota and found changes in alpha and beta diversity and significant changes in several taxa with inulin, together with a reduction in circulating gut derived uremic toxins such as indoxyl sulfate and short‐chain fatty acids. In conclusion, the addition of the fermentable fiber inulin to the diet of CKD rats led to a slowed progression of CKD‐MBD without affecting kidney function, likely mediated by changes in the gut microbiota composition and lowered gut‐derived uremic toxins. © 2023 The Authors. JBMR Plus published by Wiley Periodicals LLC. on behalf of American Society for Bone and Mineral Research.
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