Salimbeigi Golestan, McGuinness Garrett B
School of Mechanical and Manufacturing Engineering, Dublin City University Dublin 9 Ireland
RSC Adv. 2025 Jan 31;15(5):3259-3272. doi: 10.1039/d4ra07881k. eCollection 2025 Jan 29.
Electrospun scaffolds fabricated from poly(lactic--glycolic acid) (PLGA) have garnered widespread interest in biomedical applications due to their ability to mimic the extracellular matrix (ECM) structure with a tunable degradability profile. The properties of electrospun scaffolds are meticulously tailored for specific applications through the adjustment of polymer properties, solution parameters, and processing conditions. Solvent selection is crucial, influencing polymer spinnability and scaffold topographical, physical and mechanical features. Hansen solubility theory aids in predicting suitable solvent systems. The absence of specific data prompted a solubility experiment to determine Hansen solubility parameters for PLGA. Subsequently, various solvent systems were investigated for their impact on the microstructure of electrospun PLGA scaffolds. Optimizing the electrospinning process resulted in fibrous scaffolds with consistent average fibre diameter from different solvent systems, allowing a focused examination of the solvent's isolated influence on mechanical properties. PLGA samples electrospun using hexafluoro isopropanol (HFIP) displayed lower Young's modulus and ultimate tensile strength but higher failure strains than those created using binary solvent systems composed of tetrahydrofuran (THF), dichloromethane (DCM), and dimethylformamide (DMF). This research advances the understanding and optimization of electrospun PLGA scaffolds, enhancing their potential for biomedical applications.
由聚乳酸 - 乙醇酸共聚物(PLGA)制成的电纺支架因其能够模拟细胞外基质(ECM)结构并具有可调节的降解特性而在生物医学应用中引起了广泛关注。通过调整聚合物特性、溶液参数和加工条件,可以针对特定应用精心定制电纺支架的性能。溶剂的选择至关重要,它会影响聚合物的可纺性以及支架的形貌、物理和机械特性。汉森溶解度理论有助于预测合适的溶剂体系。由于缺乏具体数据,因此进行了一项溶解度实验来确定PLGA的汉森溶解度参数。随后,研究了各种溶剂体系对电纺PLGA支架微观结构的影响。优化电纺工艺后,不同溶剂体系制备的纤维支架具有一致的平均纤维直径,从而能够重点研究溶剂对机械性能的单独影响。使用六氟异丙醇(HFIP)电纺的PLGA样品与使用由四氢呋喃(THF)、二氯甲烷(DCM)和二甲基甲酰胺(DMF)组成的二元溶剂体系制备的样品相比,杨氏模量和极限拉伸强度较低,但断裂应变较高。这项研究推动了对电纺PLGA支架的理解和优化,提高了它们在生物医学应用中的潜力。