Nitric oxide-releasing photocrosslinked chitosan cryogels

IF 3.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Nitric oxide : biology and chemistry Pub Date : 2024-04-03 DOI:10.1016/j.niox.2024.03.006
Herllan Vieira de Almeida, Laura Caetano Escobar da Silva, Marcelo Ganzarolli de Oliveira
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Abstract

The highly porous morphology of chitosan cryogels, with submicrometric-sized pore cell walls, provides a large surface area which leads to fast water absorption and elevated swelling degrees. These characteristics are crucial for the applications of nitric oxide (NO) releasing biomaterials, in which the release of NO is triggered by the hydration of the material. In the present study, we report the development of chitosan cryogels (CS) with a porous structure of interconnected cells, with wall thicknesses in the range of 340–881 nm, capable of releasing NO triggered by the rapid hydration process. This property was obtained using an innovative strategy based on the functionalization of CS with two previously synthesized S-nitrosothiols: S-nitrosothioglycolic acid (TGA(SNO)) and S-nitrosomercaptosuccinic acid (MSA(SNO)). For this purpose, CS was previously methacrylated with glycidyl methacrylate and subsequently submitted to photocrosslinking and freeze-drying processes. The photocrosslinked hydrogels thus obtained were then functionalized with TGA(SNO) and MSA(SNO) in reactions mediated by carbodiimide. After functionalization, the hydrogels were frozen and freeze-dried to obtain porous S-nitrosated chitosan cryogels with high swelling capacities. Through chemiluminescence measurements, we demonstrated that CS-TGA(SNO) and CS-MSA(SNO) cryogels spontaneously release NO upon water absorption at rates of 3.34 × 10−2 nmol mg−1 min−1 and 1.27 × 10−1 nmol mg−1 min−1, respectively, opening new perspectives for the use of CS as a platform for localized NO delivery in biomedical applications.

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释放一氧化氮的光交联壳聚糖低温凝胶
壳聚糖低温凝胶具有亚公制大小的孔壁,其高孔形态提供了很大的表面积,从而导致快速吸水和膨胀度升高。这些特性对于一氧化氮(NO)释放生物材料的应用至关重要,因为材料的水化会触发 NO 的释放。在本研究中,我们报告了壳聚糖低温凝胶(CS)的开发情况,这种凝胶具有由相互连接的细胞组成的多孔结构,壁厚在 340-881 nm 之间,能够在快速水化过程中释放一氧化氮。这种特性是通过一种创新策略获得的,该策略基于用两种之前合成的 S-亚硝基硫醇对 CS 进行官能化:S-亚硝基硫代甘醇酸(TGA(SNO))和 S-亚硝基巯基丁二酸(MSA(SNO))。为此,先用甲基丙烯酸缩水甘油酯对 CS 进行甲基丙烯酸化,然后进行光交联和冷冻干燥处理。这样得到的光交联水凝胶在碳化二亚胺介导的反应中被 TGA(SNO) 和 MSA(SNO) 功能化。功能化后的水凝胶经过冷冻和冷冻干燥,得到了具有高溶胀能力的多孔 S-亚硝基壳聚糖冷冻凝胶。通过化学发光测量,我们证明了 CS-TGA(SNO) 和 CS-MSA(SNO) 低温凝胶在吸水后会自发释放 NO,释放率分别为 3.34 × 10-2 nmol mg-1 min-1 和 1.27 × 10-1 nmol mg-1 min-1,这为将 CS 用作生物医学应用中的局部 NO 释放平台开辟了新的前景。
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来源期刊
Nitric oxide : biology and chemistry
Nitric oxide : biology and chemistry 生物-生化与分子生物学
CiteScore
7.50
自引率
7.70%
发文量
74
审稿时长
52 days
期刊介绍: Nitric Oxide includes original research, methodology papers and reviews relating to nitric oxide and other gasotransmitters such as hydrogen sulfide and carbon monoxide. Special emphasis is placed on the biological chemistry, physiology, pharmacology, enzymology and pathological significance of these molecules in human health and disease. The journal also accepts manuscripts relating to plant and microbial studies involving these molecules.
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