Vigani Barbara, Valentino Caterina, Cavalloro Valeria, Catenacci Laura, Sorrenti Milena, Sandri Giuseppina, Bonferoni Maria Cristina, Bozzi Chiara, Collina Simona, Rossi Silvia, Ferrari Franca
Department of Drug Sciences, University of Pavia, Viale Taramelli, 12, 27100 Pavia, Italy.
Pharmaceutics. 2021 Jan 26;13(2):164. doi: 10.3390/pharmaceutics13020164.
Injuries to the nervous system affect more than one billion people worldwide, and dramatically impact on the patient's quality of life. The present work aimed to design and develop a gellan gum (GG)-based composite system for the local delivery of the neuroprotective sigma-1 receptor agonist, 1-[3-(1,1'-biphen)-4-yl] butylpiperidine (RC-33), as a potential tool for the treatment of tissue nervous injuries. The system, consisting of cross-linked electrospun nanofibers embedded in a RC-33-loaded freeze-dried matrix, was designed to bridge the lesion gap, control drug delivery and enhance axonal regrowth. The gradual matrix degradation should ensure the progressive interaction between the inner fibrous mat and the surrounding cellular environment. Nanofibers, prepared by electrospinning polymeric solutions containing GG, two different grades of poly (ethylene oxide) and poloxamer, were cross-linked with calcium ions. GG-based matrices, loaded with different amounts of RC-33, were prepared by freeze-drying. Dialysis studies and solid-state characterization pointed out the formation of an interaction product between GG and RC-33. RC-33-loaded freeze-dried matrices were characterized by the capability to absorb a high buffer content, forming a gel with marked viscoelastic properties, and by RC-33 controlled release properties. The presence of cross-linked nanofibers increased matrix mechanical resistance.
神经系统损伤影响着全球超过10亿人,并对患者的生活质量产生巨大影响。目前的工作旨在设计和开发一种基于结冷胶(GG)的复合系统,用于局部递送神经保护性σ-1受体激动剂1-[3-(1,1'-联苯)-4-基]丁基哌啶(RC-33),作为治疗组织神经损伤的潜在工具。该系统由嵌入载有RC-33的冻干基质中的交联电纺纳米纤维组成,旨在弥合损伤间隙、控制药物递送并促进轴突再生。基质的逐渐降解应确保内部纤维垫与周围细胞环境之间的逐步相互作用。通过静电纺丝含有GG、两种不同等级的聚环氧乙烷和泊洛沙姆的聚合物溶液制备纳米纤维,并用钙离子进行交联。通过冷冻干燥制备负载不同量RC-33的基于GG的基质。透析研究和固态表征指出GG与RC-33之间形成了一种相互作用产物。负载RC-33的冻干基质的特征在于能够吸收高缓冲液含量,形成具有显著粘弹性的凝胶,以及具有RC-33控释特性。交联纳米纤维的存在增加了基质的机械抗性。