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Biobased Cryogels from Enzymatically Oxidized Starch: Functionalized Materials as Carriers of Active Molecules

机译:酶氧化淀粉的生物基冰晶:功能材料作为活性分子的载体。

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摘要

Starch recovered from an agrifood waste, pea pods, was enzymatically modified and used to prepare cryogels applied as drug carriers. The enzymatic modification of starch was performed using the laccase/(2,2,6,6-tetramethylpiperidin-1-yl)oxyl TEMPO system, at a variable molar ratio. The characterization of the ensuing starches by solution NMR spectroscopy showed partial conversion of the primary hydroxyl groups versus aldehyde and carboxyl groups and successive creation of hemiacetal and ester bonds. Enzymatically modified starch after simple freezing and lyophilization process provided stable and compact cryogels with a morphology characterized by irregular pores, as determined by atomic force (AFM) and scanning electron microscopy (SEM). The application of cryogels as carriers of active molecules was successfully evaluated by following two different approaches of loading with drugs: a) as loaded sponge, by adsorption of drug from the liquid phase; and b) as dry-loaded cryogel, from a dehydration step added to loaded cryogel from route (a). The efficiency of the two routes was studied and compared by determining the drug release profile by proton NMR studies over time. Preliminary results demonstrated that cryogels from modified starch are good candidates to act as drug delivery systems due to their stability and prolonged residence times of loaded molecules, opening promising applications in biomedical and food packaging scenarios.
机译:从农业废料豌豆荚中回收的淀粉经过酶促改性,并用于制备用作药物载体的冷冻凝胶。使用漆酶/(2,2,6,6-四甲基哌啶-1-基)氧基TEMPO系统以可变的摩尔比进行淀粉的酶促改性。通过溶液NMR光谱对随后的淀粉的表征显示伯羟基相对于醛和羧基的部分转化以及半缩醛和酯键的连续产生。经过简单的冷冻和冻干过程后,酶促改性淀粉可提供稳定,致密的冰晶,其形态具有不规则的孔,如原子力(AFM)和扫描电子显微镜(SEM)所确定。通过以下两种不同的药物装载方法,成功评估了冷冻凝胶作为活性分子载体的应用:a)作为装载的海绵,通过从液相吸附药物来完成; b)作为干燥负载的冷冻凝胶,来自脱水步骤,从路线(a)添加到负载的冷冻凝胶中。通过质子核磁共振研究确定药物释放曲线,研究并比较了这两种途径的效率。初步结果表明,改性淀粉的冷冻凝胶由于其稳定性和负载分子的延长停留时间而成为药物递送系统的良好候选者,为生物医学和食品包装中的应用开辟了广阔的前景。

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