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Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment

Reactive oxygen species (ROS) are essential signaling molecules that maintain intracellular redox balance; however, the overproduction of ROS often causes dysfunction in redox homeostasis and induces serious diseases. Antioxidants are crucial candidates for reducing overproduced ROS; however, most a...

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Autores principales: Koda, Yuta, Nagasaki, Yukio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302134/
https://www.ncbi.nlm.nih.gov/pubmed/37376222
http://dx.doi.org/10.3390/pharmaceutics15061775
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author Koda, Yuta
Nagasaki, Yukio
author_facet Koda, Yuta
Nagasaki, Yukio
author_sort Koda, Yuta
collection PubMed
description Reactive oxygen species (ROS) are essential signaling molecules that maintain intracellular redox balance; however, the overproduction of ROS often causes dysfunction in redox homeostasis and induces serious diseases. Antioxidants are crucial candidates for reducing overproduced ROS; however, most antioxidants are less effective than anticipated. Therefore, we designed new polymer-based antioxidants based on the natural amino acid, cysteine (Cys). Amphiphilic block copolymers, composed of a hydrophilic poly(ethylene glycol) (PEG) segment and a hydrophobic poly(cysteine) (PCys) segment, were synthesized. In the PCys segment, the free thiol groups in the side chain were protected by thioester moiety. The obtained block copolymers formed self-assembling nanoparticles (Nano(Cys(Bu))) in water, and the hydrodynamic diameter was 40–160 nm, as determined by dynamic light scattering (DLS) measurements. Nano(Cys(Bu)) was stable from pH 2 to 8 under aqueous conditions, as confirmed by the hydrodynamic diameter of Nano(Cys(Bu)). Finally, Nano(Cys(Bu)) was applied to sepsis treatment to investigate the potential of Nano(Cys(Bu)). Nano(Cys(Bu)) was supplied to BALB/cA mice by free drinking for two days, and lipopolysaccharide (LPS) was intraperitoneally injected into the mice to prepare a sepsis shock model (LPS = 5 mg per kg body weight (BW)). Compared with the Cys and no-treatment groups, Nano(Cys(Bu)) prolonged the half-life by five to six hours. Nano(Cys(Bu)), designed in this study, shows promise as a candidate for enhancing antioxidative efficacy and mitigating the adverse effect of cysteine.
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spelling pubmed-103021342023-06-29 Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment Koda, Yuta Nagasaki, Yukio Pharmaceutics Article Reactive oxygen species (ROS) are essential signaling molecules that maintain intracellular redox balance; however, the overproduction of ROS often causes dysfunction in redox homeostasis and induces serious diseases. Antioxidants are crucial candidates for reducing overproduced ROS; however, most antioxidants are less effective than anticipated. Therefore, we designed new polymer-based antioxidants based on the natural amino acid, cysteine (Cys). Amphiphilic block copolymers, composed of a hydrophilic poly(ethylene glycol) (PEG) segment and a hydrophobic poly(cysteine) (PCys) segment, were synthesized. In the PCys segment, the free thiol groups in the side chain were protected by thioester moiety. The obtained block copolymers formed self-assembling nanoparticles (Nano(Cys(Bu))) in water, and the hydrodynamic diameter was 40–160 nm, as determined by dynamic light scattering (DLS) measurements. Nano(Cys(Bu)) was stable from pH 2 to 8 under aqueous conditions, as confirmed by the hydrodynamic diameter of Nano(Cys(Bu)). Finally, Nano(Cys(Bu)) was applied to sepsis treatment to investigate the potential of Nano(Cys(Bu)). Nano(Cys(Bu)) was supplied to BALB/cA mice by free drinking for two days, and lipopolysaccharide (LPS) was intraperitoneally injected into the mice to prepare a sepsis shock model (LPS = 5 mg per kg body weight (BW)). Compared with the Cys and no-treatment groups, Nano(Cys(Bu)) prolonged the half-life by five to six hours. Nano(Cys(Bu)), designed in this study, shows promise as a candidate for enhancing antioxidative efficacy and mitigating the adverse effect of cysteine. MDPI 2023-06-20 /pmc/articles/PMC10302134/ /pubmed/37376222 http://dx.doi.org/10.3390/pharmaceutics15061775 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Koda, Yuta
Nagasaki, Yukio
Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title_full Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title_fullStr Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title_full_unstemmed Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title_short Newly Designed Cysteine-Based Self-Assembling Prodrugs for Sepsis Treatment
title_sort newly designed cysteine-based self-assembling prodrugs for sepsis treatment
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10302134/
https://www.ncbi.nlm.nih.gov/pubmed/37376222
http://dx.doi.org/10.3390/pharmaceutics15061775
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