Photo-responsive chitosan-based supramolecular hybrid hydrogel with reactive oxygen species scavenging capacity for efficient alleviation of plant salt stress

Since soil salinization has emerged as a major abiotic stress constraining agricultural productivity, developing eco-friendly and efficient strategies for salt stress alleviation is critical for sustainable agricultural development. Herein, an environmentally friendly photo-responsive chitosan-based supramolecular hybrid (LPSeAQCs) hydrogel was facilely fabricated via multiple noncovalent interactions between 2-selenium-bridged β-cyclodextrin (SeCD), arylazopyrazole-modified quaternary ammonium chitosan (AAP-QCs), and nanoclay laponite (LP) to alleviate salt stress. This hydrogel possessed crosslinked porous architecture that facilitate plant growth regulator loading. Rheological characterizations confirmed its stable gel network, favorable self-healing capacity, excellent thermal stability and good injectability. Besides, LPSeAQCs hydrogel exhibited superior photo-responsive cargo release performance. Moreover, the hydrogel displayed outstanding reactive oxygen species (ROS)-scavenging activity and excellent biocompatibility. Under 100 mM NaCl salt stress, LPSeAQCs hydrogel achieved the optimal stress-alleviating efficacy, with wheat growth parameters comparable to those of the unstressed blank control. Specifically, this formulation markedly enhanced the activities of superoxide dismutase (SOD), catalase (CAT), and peroxidase (POD) in salt-stressed wheat, while significantly reducing malondialdehyde (MDA) levels. Additionally, LPSeAQCs hydrogel effectively preserved the morphological structure of wheat root cells against high-salt injury and maintained the structural integrity of root tissues. These findings provide novel insights into the application of supramolecular nanomaterials in sustainable agriculture.

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Publication Details

Journal
Industrial Crops and Products
Published
2026-09-17
DOI
https://doi.org/10.1016/j.indcrop.2026.124400
Primary Topic
Polymer-Based Agricultural Enhancements
Type
article
Field-Weighted Citation Impact
0.00

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article

Photo-responsive chitosan-based supramolecular hybrid hydrogel with reactive oxygen species scavenging capacity for efficient alleviation of plant salt stress

Yu‐Hui Zhang, Siqintana Xin, Xueqi Jiang, Xianliang Sheng et al.
Industrial Crops and Products
Polymer-Based Agricultural Enhancements
article

Photo-responsive chitosan-based supramolecular hybrid hydrogel with reactive oxygen species scavenging capacity for efficient alleviation of plant salt stress

Yu‐Hui Zhang, Siqintana Xin, Xueqi Jiang, Xianliang Sheng, Lu-Qiang Wei, Wenshu Wu, Ya-Nan He, Jie Wang, Xian-Cheng Qing
article en

Abstract

Since soil salinization has emerged as a major abiotic stress constraining agricultural productivity, developing eco-friendly and efficient strategies for salt stress alleviation is critical for sustainable agricultural development. Herein, an environmentally friendly photo-responsive chitosan-based supramolecular hybrid (LPSeAQCs) hydrogel was facilely fabricated via multiple noncovalent interactions between 2-selenium-bridged β-cyclodextrin (SeCD), arylazopyrazole-modified quaternary ammonium chitosan (AAP-QCs), and nanoclay laponite (LP) to alleviate salt stress. This hydrogel possessed crosslinked porous architecture that facilitate plant growth regulator loading. Rheological characterizations confirmed its stable gel network, favorable self-healing capacity, excellent thermal stability and good injectability. Besides, LPSeAQCs hydrogel exhibited superior photo-responsive cargo release performance. Moreover, the hydrogel displayed outstanding reactive oxygen species (ROS)-scavenging activity and excellent biocompatibility. Under 100 mM NaCl salt stress, LPSeAQCs hydrogel achieved the optimal stress-alleviating efficacy, with wheat growth parameters comparable to those of the unstressed blank control. Specifically, this formulation markedly enhanced the activities of superoxide dismutase (SOD), catalase (CAT), and peroxidase (POD) in salt-stressed wheat, while significantly reducing malondialdehyde (MDA) levels. Additionally, LPSeAQCs hydrogel effectively preserved the morphological structure of wheat root cells against high-salt injury and maintained the structural integrity of root tissues. These findings provide novel insights into the application of supramolecular nanomaterials in sustainable agriculture.

Industrial Crops and ProductsVol. 252
Inner Mongolia Agricultural University (CN), Inner Mongolia Autonomous Region Meteorological Bureau (CN)
National Natural Science Foundation of China, Natural Science Foundation of Inner Mongolia
Zero hunger
Openalex Percentile: Top 21%
Polymer-Based Agricultural Enhancements
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