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Carbohydr Polym ; 255: 117335, 2021 Mar 01.
Article in English | MEDLINE | ID: mdl-33436178

ABSTRACT

Nanocellulose has gained much attention because of its excellent properties. Cationic cellulose nanocrystals (cCNC) shows good adsorptivity toward negative ions and molecules. Phosphate binders are most used to treat hyperphosphatemia and it is significant to develop its alternatives with high specific and low cost in the clinic. Herein, we prepared cCNC and characterized it by FTIR, TEM, dynamic light scattering, and viscosity method. We simulated the binding process of cationic cellulose for phosphate and used it as phosphate binder for hyperphosphatemia therapy to study the phosphate binding effect and evaluate the oral toxicity. Cationic cellulose improved the conditions of mice models and efficiently decreased the level of phosphate in the serum. cCNC had a better binding effect than cationic microcrystalline cellulose both in vitro and in vivo. cCNC could be used as alternatives to phosphate binder for therapy of chronic renal failure and hyperphosphatemia.


Subject(s)
Cellulose/pharmacology , Chelating Agents/pharmacology , Hyperphosphatemia/drug therapy , Kidney/drug effects , Nanoparticles/chemistry , Phosphates/isolation & purification , Adenine/administration & dosage , Adsorption , Animals , Biomarkers/blood , Cellulose/chemistry , Cellulose/metabolism , Chelating Agents/metabolism , Cholesterol, HDL/blood , Cholesterol, LDL/blood , Disease Models, Animal , Feces/chemistry , Humans , Hyperphosphatemia/chemically induced , Hyperphosphatemia/metabolism , Hyperphosphatemia/pathology , Intestine, Small/drug effects , Intestine, Small/metabolism , Kidney/metabolism , Liver/drug effects , Liver/metabolism , Male , Mice , Mice, Inbred BALB C , Nanoparticles/administration & dosage , Phosphates/metabolism , Treatment Outcome , Triglycerides/blood
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