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Chitosan and its subunits enhance adrenergic vasoconstriction and impair endothelium-dependent relaxation in rat aorta
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DOI:10.1016/j.carbpol.2026.125713.png)
Abstract
En 中文
Uncontrolled bleeding is a preventable cause of death in different scenarios. Chitosan (CS) is an attractive material for developing hemostatic products. Although vasoconstriction represents a critical first-line defense against blood loss, the effects of CS on vascular reactivity remain unexplored. In this work, the vascular response of two low-molecular-weight CS samples (crustacean and squid pen) is evaluated. Samples were characterized by UV–Vis, FTIR, GPC, and MALDI-TOF; viscosity, osmolality and cytotoxicity were also determined. Vascular responses were assessed in isolated rat aortic rings mounted in an organ bath. CS alone did not induce direct vasoconstriction. However, both CS samples increased vascular responsiveness by potentiating phenylephrine (PE)-induced contraction, while only crustacean CS significantly reduced the efficacy and potency of acetylcholine-mediated vasorelaxation. The CS monomers also enhanced PE-induced contraction, with glucosamine producing a stronger effect than N-acetyl glucosamine. Although both samples had low degrees of acetylation, crustacean CS exerts a greater potentiating effect on α1-adrenergic contraction than squid pen CS, suggesting that factors other than degree of acetylation, i.e. molecular weight distribution, acetylation pattern, or polymer conformation, may contribute to the observed differences. This preliminary screening demonstrates that CS sensitizes the isolated rat aorta to adrenergic stimulation and reduces endothelial-dependent relaxation.
Keywords:
FTIR
Fourier Transform Infrared Spectroscopy
GPC
Gel Permeation Chromatography
XRD
X-Ray Diffraction
CS
Chitosan
DPE
Deproteinization
DME
Demineralization
DA
acetylation degree
MALDI-TOF MS
Matrix-Assisted Laser Desorption/Ionization Time-of-Flight Mass Spectrometry
EC50
Half maximal effective concentration
Mn
Number-average molecular weight
Mw
weight-average molecular weight
Mn
Number Average Molecular Weight
LMWCs
Low molecular weight CS
VSMC
Vascular Smooth Muscle Cell contraction
MWCO
Molecular Weight Cut-Off
PE
Phenylephrine
GlcNAc
N-acetylglucosamine
Glc
glucosamine
ACh
Acetylcholine
Chitosan
Vasoconstriction
Vasodilation
Organ bath
Hemostasis
Journal
IF:
12.5
Papers:
2.3W
Citations:
15.2W
