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通过同轴静电纺丝制备玉米醇溶蛋白-二甲双胍/明胶纳米纤维及其表征

Preparation and Characterization of Zein-Metformin/Gelatin Nanofibers by Coaxial Electrospinning.

作者信息

Montaño-Grijalva Eneida Azaret, Rodríguez-Félix Francisco, Armenta-Villegas Lorena, Del Toro-Sanchez Carmen Lizette, Carvajal-Millan Elizabeth, Torres-Arreola Wilfrido, Rodríguez-Félix Dora Evelia, Tapia-Hernández José Agustín, Barreras-Urbina Carlos Gregorio, López-Peña Itzel Yanira, Burruel-Ibarra Silvia Elena, Santos-Sauceda Irela, Pompa-Ramos José Luis

机构信息

Department of Food Research and Graduate Program, University of Sonora, Hermosillo, Sonora C.P. 83000, Mexico.

Department of Chemical Biological Sciences, University of Sonora, Hermosillo, Sonora C.P. 83000, Mexico.

出版信息

ACS Omega. 2024 Sep 5;9(37):38423-38436. doi: 10.1021/acsomega.4c02016. eCollection 2024 Sep 17.

Abstract

Metformin is a drug commonly used for the treatment of type 2 diabetes. However, it has been associated with damaging side effects when used over a long period of time. A potential solution to this problem is the implementation of a prolonged-release system for metformin, which would enhance the efficiency of the doses administered to patients. To achieve this, it is necessary to use materials compatible with humans. Electrospinning is an efficient technique that can be employed for this purpose, utilizing solvents that are safe for human use. Therefore, the objective of this study was to prepare and characterize a system for the prolonged release of metformin from zein and gelatin through coaxial electrospinning as well as to investigate its in vitro release. Metformin-loaded zein/gelatin coaxial nanofibers were prepared using the coaxial electrospinning technique and then characterized by morphological, structural, and thermal analysis. Morphologically, metformin-loaded zein/gelatin coaxial nanofibers were obtained with an average diameter of 322.6 ± 44.5 nm and a smooth surface. Fourier transform infrared spectroscopy (FTIR) analysis showed band shifts at a higher wavenumber due to drug-protein interactions by hydrogen bonding between N-H and C=O groups. Thermal gravimetric analysis (TGA) results suggested a possible interaction between materials due to an increase in the degradation temperatures of zein and gelatin when metformin was included. The transition of the crystallinity of metformin to the amorphous form was also confirmed by differential scanning calorimetry (DSC). Coaxial nanofibers exhibited an encapsulation efficiency of 66% and a profile release that showed an initial release of metformin (40%) in the first hour, followed by a gradual release until it reached equilibrium at 60 h and a cumulative release of 97% of metformin. It was concluded that using the coaxial electrospinning technique, it is possible to obtain nanofibers from polymeric solutions of zein and gelatin to encapsulate metformin, with a potential application as a prolonged-release system.

摘要

二甲双胍是一种常用于治疗2型糖尿病的药物。然而,长期使用时它会产生有害的副作用。解决这个问题的一个潜在办法是为二甲双胍实施一种缓释系统,这将提高给予患者的剂量的效率。要实现这一点,有必要使用与人体兼容的材料。静电纺丝是一种可用于此目的的有效技术,它使用对人体安全的溶剂。因此,本研究的目的是通过同轴静电纺丝制备并表征一种用于从玉米醇溶蛋白和明胶中缓释二甲双胍的系统,并研究其体外释放情况。使用同轴静电纺丝技术制备了负载二甲双胍的玉米醇溶蛋白/明胶同轴纳米纤维,然后通过形态学、结构和热分析对其进行表征。从形态上看,获得了负载二甲双胍的玉米醇溶蛋白/明胶同轴纳米纤维,其平均直径为322.6±44.5纳米,表面光滑。傅里叶变换红外光谱(FTIR)分析表明,由于N-H和C=O基团之间通过氢键形成的药物-蛋白质相互作用,在较高波数处出现了谱带位移。热重分析(TGA)结果表明,当加入二甲双胍时,玉米醇溶蛋白和明胶的降解温度升高,材料之间可能存在相互作用。差示扫描量热法(DSC)也证实了二甲双胍的结晶度向无定形形式的转变。同轴纳米纤维的包封率为66%,其释放曲线显示,二甲双胍在第一小时初始释放(40%),随后逐渐释放,直到60小时达到平衡,二甲双胍的累积释放率为97%。得出的结论是,使用同轴静电纺丝技术,可以从玉米醇溶蛋白和明胶的聚合物溶液中获得纳米纤维来包封二甲双胍,具有作为缓释系统的潜在应用价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca78/11411526/26d8a18d73fe/ao4c02016_0001.jpg

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