Department of Surgical Sciences, Otorhinolaryngology Unit, Fondazione IRCCS Policlinico San Matteo, 27100, Pavia, Italy.
Department of Drug Sciences, University of Pavia, 27100, Pavia, Italy.
Drug Deliv Transl Res. 2023 Feb;13(2):593-607. doi: 10.1007/s13346-022-01218-2. Epub 2022 Aug 17.
This study is a proof of concept performed to evaluate process parameters affecting shape memory effect of copolymer poly-L-lactide-co-poly-ε-caprolactone (PLA:PCL) 70:30 ratio based nanofibrous scaffolds. A design of experiment (DOE) statistical approach was used to define the interaction between independent material and process variables related to electrospun scaffold manufacturing, such as polymer solution concentration (w/v%), spinning time (min), and needle size (Gauge), and their influence on Rf% (ability of the scaffold to maintain the induced temporary shape) and Rr% (ability of the scaffold to recover its original shape) outputs. A mathematical model was obtained from DOE useful to predict scaffold Rf% and Rr% values. PLA-PCL 15% w/v, 22G needle, and 20-min spinning time were selected to confirm the data obtained from theoretical model. Subsequent morphological (SEM), chemical-physical (GPC and DSC), mechanical (uniaxial tensile tests), and biological (cell viability and adhesion) characterizations were performed.
本研究是一项概念验证,旨在评估影响共聚物聚 L-丙交酯-聚 ε-己内酯(PLA:PCL)70:30 比例的纳米纤维支架形状记忆效应的工艺参数。采用实验设计(DOE)统计方法来定义与电纺支架制造相关的独立材料和工艺变量之间的相互作用,例如聚合物溶液浓度(w/v%)、纺丝时间(min)和针大小(Gauge),以及它们对 Rf%(支架保持诱导临时形状的能力)和 Rr%(支架恢复原始形状的能力)输出的影响。从 DOE 中获得了一个数学模型,可用于预测支架的 Rf%和 Rr%值。选择 PLA-PCL 15%w/v、22G 针和 20 分钟的纺丝时间来验证理论模型获得的数据。随后进行了形态学(SEM)、物理化学(GPC 和 DSC)、机械(单轴拉伸试验)和生物学(细胞活力和粘附)特性分析。