Batista Mary, Pinto Moisés L, Antunes Fernando, Pires João, Carvalho Silvia
Centro de Química Estrutural, Faculdade de Ciências da Universidade de Lisboa, 1749-016 Lisboa, Portugal.
CERENA, Departamento de Engenharia Química, Instituto Superior Técnico, Universidade de Lisboa, 1049-001 Lisboa, Portugal.
Materials (Basel). 2021 Nov 7;14(21):6701. doi: 10.3390/ma14216701.
The search for HS donors has been increasing due to the multiple therapeutic effects of the gas. However, the use of nanoporous materials has not been investigated despite their potential. Zeolites and activated carbons are known as good gas adsorbents and their modification with chitosan may increase the material biocompatibility and simultaneously its release time in aqueous solution, thus making them good HS donors. Herein, we modified with chitosan a series of A zeolites (3A, 4A and 5A) with different pore sizes and an activated carbon obtained from glycerin. The amount of HS adsorbed was evaluated by a volumetric method and their release capacity in aqueous solution was measured. These studies aimed to verify which of the materials had appropriate HS adsorption/release properties to be considered a potential HS donor. Additionally, cytotoxicity assays using HeLa cells were performed. Considering the obtained results, the chitosan composite with the A zeolite with the larger pore opening was the most promising material to be used as a HS donor so a further cytotoxicity assay using HS loaded was conducted and no toxicity was observed.
由于氢气具有多种治疗作用,对氢气供体的研究一直在增加。然而,尽管纳米多孔材料具有潜力,但尚未对其进行研究。沸石和活性炭是已知的良好气体吸附剂,用壳聚糖对其进行改性可能会提高材料的生物相容性,并同时延长其在水溶液中的释放时间,从而使其成为良好的氢气供体。在此,我们用壳聚糖对一系列具有不同孔径的A型沸石(3A、4A和5A)以及由甘油制得的活性炭进行了改性。通过容量法评估氢气的吸附量,并测量其在水溶液中的释放能力。这些研究旨在验证哪些材料具有合适的氢气吸附/释放特性,从而被视为潜在的氢气供体。此外,还使用HeLa细胞进行了细胞毒性试验。考虑到所获得的结果,具有较大孔径开口的A型沸石的壳聚糖复合材料是用作氢气供体最有前景的材料,因此进行了使用负载氢气的进一步细胞毒性试验,未观察到毒性。