Ortega Alejandra, Valencia Silvia, Rivera Ernesto, Segura Tania, Burillo Guillermina
Departamento de Química de Radiaciones y Radioquímica, Instituto de Ciencias Nucleares, Universidad Nacional Autónoma de México (UNAM), Ciudad Universitaria, Ciudad de México 04510, Mexico.
Instituto de Investigaciones en Materiales, Universidad Nacional Autónoma de México (UNAM), Circuito de la Investigación Científica, Ciudad Universitaria, Ciudad de México 04510, Mexico.
Gels. 2023 Jul 26;9(8):602. doi: 10.3390/gels9080602.
In this paper, we report the synthesis of acrylamide hydrogels (-AAm) reinforced with cellulose nanocrystals (CNCs) using gamma radiation, a powerful tool to obtain crosslinked polymers without the use of chemical initiators and crosslinking agents. Some slight changes in the chemical structure and crystallinity of CNCs took place during gamma irradiation without affecting the nanofiller function. In fact, cellulose nanocrystals had a notable influence over the swelling and mechanical properties on the reinforced hydrogels (-AAm/CNC), obtaining more rigid material since the Young compression modulus increased from 11 kPa for unreinforced -AAm to 30 kPa for -AAm/CNC (4% /). Moreover, the studies of retention and release of ciprofloxacin (Cx), a quinolone antibiotic drug, showed that reinforced hydrogels were able to load large amounts of ciprofloxacin (1.2-2.8 mg g) but they distributed 100% of the drug very quickly (<100 min). Despite this, they exhibited better mechanical properties than the control sample, allowing their handling, and could be used as wound dressings of first response because they can absorb the exudate and at the same time deliver an antibiotic drug directly over the injury.
在本文中,我们报道了利用γ辐射合成纤维素纳米晶体(CNC)增强的丙烯酰胺水凝胶(-AAm),γ辐射是一种无需使用化学引发剂和交联剂就能获得交联聚合物的强大工具。在γ辐照过程中,CNC的化学结构和结晶度发生了一些细微变化,但并未影响纳米填料的功能。事实上,纤维素纳米晶体对增强水凝胶(-AAm/CNC)的溶胀和力学性能有显著影响,由于杨氏压缩模量从未增强的-AAm的11 kPa增加到-AAm/CNC(4%/)的30 kPa,从而获得了更坚硬的材料。此外,对喹诺酮类抗生素药物环丙沙星(Cx)的保留和释放研究表明,增强水凝胶能够负载大量环丙沙星(1.2 - 2.8 mg g),但它们能在非常短的时间内(<100分钟)将100%的药物释放出来。尽管如此,它们表现出比对照样品更好的力学性能,便于操作,并且可以用作应急伤口敷料,因为它们能够吸收渗出液,同时直接在伤口上释放抗生素药物。