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Title
Uremic Toxins and Organ Failure / edited by Hideyuki Saito, Takaaki Abe.
Edition
1st ed. 2020.
ISBN
9789811577932
9811577935
9789811577932
9811577927
9789811577925
Published
Singapore : Springer Singapore : Imprint: Springer, 2020.
Language
English
Description
1 online resource (VIII, 180 pages) : illustrations.
Item Number
10.1007/978-981-15-7793-2. doi
Call Number
RC902-918
Dewey Decimal Classification
616.61
Summary
This book describes the latest research on the gut-kidney axis of ureic solutes; the toxico-pathological mechanisms of uremic toxin-induced organ failure, including kidney and cardiovascular tissue; and the preventive therapeutic strategies for uremia and related organ failure associated with kidney injuries and diseases. Retained uremic toxins cause a variety of symptoms, such as hypertension, fatigue, renal anemia, osteoporosis and neurologic impairment, which are apparent in chronic kidney disease (CKD) patients. The human gastrointestinal tract contains trillions of microorganisms, referred to as gut microbiota, which support the host metabolism by producing nutrients, such as vitamins and short-chain fatty acids. However, they also produce various harmful uremic toxins that show renal and cardiovascular toxicity, and correlate with an increased mortality in CKD patients. The composition and balance of gut microbiota are associated with the accumulation of uremic toxins and the pathophysiology of CKD, and as such are being considered for a novel therapeutic strategy.
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Available in Other Form
Print version: 9789811577925
1 Overview of Uremic Toxins
2 Review: Uremic toxins and gut microbiome
3 Gut microbiota and systemic uremic solute accumulation
4 Uremic toxin-related systemic disorders
5 Uremic Toxins and cardiovascular disease
6 Indoxyl sulfate and arteriosclerosis
7 Uremic Toxicity and Bone in CKD
8 D-serine as a novel uremic toxin
9 Uremic solutes and sarcopenia
10 Toxico-pathological role of hepatic sulfotransferase (SULT) 1A1 in acute kidney injuries
11 Accumulation of uremic toxins in systemic organs and the effect of AST-120.