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载维生素 B 的壳聚糖基纳米粒子嵌入聚合物纳米纤维用于舌下和透皮应用:维生素 B 的两种替代应用途径。

Vitamin B-loaded chitosan-based nanoparticle-embedded polymeric nanofibers for sublingual and transdermal applications: Two alternative application routes for vitamin B.

机构信息

Department of Pharmacology, Faculty of Pharmacy, İstanbul Kent University, İstanbul 34406, Türkiye; Department of Pharmacology, Faculty of Pharmacy, Marmara University, İstanbul 34854, Türkiye; Center for Nanotechnology and Biomaterials Application and Research, Marmara University, İstanbul 34722, Türkiye; UCL Division of Surgery and Interventional Sciences, Rowland Hill Street, NW3 2PF London, UK; MecNano Technologies, Cube Incibation, Teknopark İstanbul, İstanbul 34906, Türkiye.

Department of Pharmacology, Faculty of Pharmacy, Marmara University, İstanbul 34854, Türkiye; Center for Nanotechnology and Biomaterials Application and Research, Marmara University, İstanbul 34722, Türkiye; UCL Division of Surgery and Interventional Sciences, Rowland Hill Street, NW3 2PF London, UK; MecNano Technologies, Cube Incibation, Teknopark İstanbul, İstanbul 34906, Türkiye.

出版信息

Int J Biol Macromol. 2024 Feb;258(Pt 2):128635. doi: 10.1016/j.ijbiomac.2023.128635. Epub 2023 Dec 6.

Abstract

Alzheimer's disease (AD) is a neurodegeneration type that is biologically recognizable via β-amyloid plaques and tau neurofibril tangles. Global estimation for the total count of individuals enduring AD will rise up to 131 million by 2050. Investigations suggested the existence of a direct proportion between the likelihood of AD occurrence and vitamin B (VB) hypovitaminosis. Approved VB administrations, intramuscular and oral, each has serious defects broaching the demand for alternative routes. This work developed VB-loaded chitosan/tripolyphosphate/polyvinyl alcohol (CS/TPP/PVA) nanoparticles (NPs) embedded in polyvinylpyrrolidone (PVP) and polyvinylpyrrolidone/polycaprolactone (PVP/PCL) nanofibrous (NFs) produced by pressurized gyration (PG) for sublingual and transdermal routes, respectively. Biomaterials were investigated morphologically, chemically, and thermally. Moreover, degradation, disintegration, release behavior, and release kinetics were analyzed. The effectiveness and safety of nanomaterials were assessed and proven with the alamarBlue test on the Aβ-induced SH-SY5Y model. The final evaluation suggested the feasibility, safety, and effectiveness of produced systems. Consequently, two alternative VB application routes were developed with high effectivity and low toxicity with the power of nanotechnology.

摘要

阿尔茨海默病(AD)是一种神经退行性疾病,可通过β-淀粉样斑块和 tau 神经原纤维缠结在生物学上识别。到 2050 年,全球受 AD 影响的人数预计将增加到 1.31 亿。研究表明,AD 的发生概率与维生素 B(VB)缺乏之间存在直接比例关系。批准的 VB 给药途径,包括肌肉内和口服,都存在严重缺陷,这就需要寻求替代途径。本工作开发了负载 VB 的壳聚糖/三聚磷酸酯/聚乙烯醇(CS/TPP/PVA)纳米颗粒(NPs),并将其嵌入聚维酮(PVP)和聚维酮/聚己内酯(PVP/PCL)纳米纤维(NFs)中,分别通过加压旋转(PG)用于舌下和透皮途径。对生物材料进行了形态、化学和热学方面的研究。此外,还分析了降解、崩解、释放行为和释放动力学。通过在 Aβ诱导的 SH-SY5Y 模型上进行 alamarBlue 测试,评估和证明了纳米材料的有效性和安全性。最终评估表明,所产生的系统具有可行性、安全性和有效性。因此,通过纳米技术的力量,开发了两种替代 VB 应用途径,具有高效性和低毒性。

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