首页> 外文期刊>International Journal of Nanomedicine >Nanoengineered drug-releasing Ti wires as an alternative for local delivery of chemotherapeutics in the brain
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Nanoengineered drug-releasing Ti wires as an alternative for local delivery of chemotherapeutics in the brain

机译:纳米工程药物释放钛丝可替代在大脑中局部递送化学治疗药物

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Abstract: The blood–brain barrier (BBB) blocks the passage of active molecules from the blood which makes drug delivery to the brain a challenging problem. Oral drug delivery using chemically modified drugs to enhance their transport properties or remove the blocking of drug transport across the BBB is explored as a common approach to address these problems, but with limited success. Local delivery of drugs directly to the brain interstitium using implants such as polymeric wafers, gels, and catheters has been recognized as a promising alternative particularly for the treatment of brain cancer (glioma) and neurodegenerative disorders. The aim of this study was to introduce a new solution by engineering a drug-releasing implant for local drug delivery in the brain, based on titanium (Ti) wires with titania nanotube (TNT) arrays on their surfaces. Drug loading and drug release characteristics of this system were explored using two drugs commonly used in oral brain therapy: dopamine (DOPA), a neurotransmitter agent; and doxorubicin (DOXO), an anticancer drug. Results showed that TNT/Ti wires could provide a considerable amount of drugs (>170 μg to 1000 μg) with desirable release kinetics and controllable release time (1 to several weeks) and proved their feasibility for use as drug-releasing implants for local drug delivery in the brain.Purpose: In this report, a new drug-releasing platform in the form of nanoengineered Ti wires with TNT arrays is proposed as an alternative for local delivery of chemotherapeutics in the brain to bypass the BBB. To prove this concept, drug loading and release characteristics of two drugs important for brain therapy (the neurotransmitter DOPA and the anticancer drug DOXO) were explored.Methods: Titania nanotube arrays on the surface of Ti wires (TNT/Ti) were fabricated using a simple anodization process, followed by separate loading of two drugs (DOPA and DOXO) inside the nanotube structures. The loading and in vitro release characteristics of prepared TNT/Ti implants were examined using thermogravimetric analysis (TGA) UV-Vis spectroscopy.Results: Scanning electron microscopy studies confirmed that well-ordered, vertically aligned, densely packed nanotube arrays with an average diameter of 170 nm and length 70 μm were formed on the surface of TNT/Ti wires. TGA results showed a total drug loading of 170 μg and 1200 μg inside the TNTs for DOPA and DOXO respectively. Two-phase drug release behavior was observed including a fast release (burst) for the first 6 hours and a prolonged slow release phase for 8 days, both with acceptable dosage and desirable release kinetics. The physical, structural, loading and release characteristics of prepared TNT/Ti implants showed several advantages in comparison with existing and clinically proved brain implants.Conclusion: Our results confirmed that TNT/Ti wires can be successfully employed as a suitable platform to release neurotransmitters such as DOPA and anticancer drugs such as DOXO. Hence, they are a feasible alternative as drug-releasing implants for local drug delivery in the brain to combat neurodegenerative disorders or brain tumors.
机译:摘要:血脑屏障(BBB)阻止了活性分子从血液中通过,这使药物向大脑的递送成为一个具有挑战性的问题。作为解决这些问题的一种通用方法,人们探索了使用化学修饰的药物来增强其转运性能或消除跨BBB的药物转运的口服药物,但取得的成功有限。人们已经认识到使用植入物(例如聚合物晶片,凝胶和导管)将药物直接递送至脑间质局部给药是一种有前途的替代方法,尤其是在治疗脑癌(神经胶质瘤)和神经退行性疾病方面。这项研究的目的是通过设计一种在表面上具有二氧化钛纳米管(TNT)阵列的钛(Ti)线,设计一种用于大脑局部药物输送的释药植入物,从而提供一种新的解决方案。使用口腔脑疗法中常用的两种药物探索了该系统的药物负载和药物释放特征:多巴胺(DOPA),一种神经递质;一种药物。和阿霉素(DOXO),一种抗癌药物。结果表明,TNT / Ti线可提供相当数量的药物(> 170μg至1000μg),并具有理想的释放动力学和可控的释放时间(1至几周),并证明了它们可作为局部药物的释药植入物目的:在本报告中,提出了一种新的药物释放平台,其形式为带有TNT阵列的纳米工程Ti线,作为绕过BBB在大脑中局部递送化学治疗药物的替代方法。为证明这一概念,探索了两种对脑治疗重要的药物(神经递质DOPA和抗癌药物DOXO)的载药量和释放特征。方法:使用碳纳米管在Ti线表面(TNT / Ti)上制备二氧化钛纳米管阵列。简单的阳极氧化工艺,然后在纳米管结构内分别加载两种药物(DOPA和DOXO)。使用热重分析(TGA)UV-Vis光谱技术检查了制备的TNT / Ti植入物的负载和体外释放特性。结果:扫描电子显微镜研究证实,排列整齐,垂直排列,密集排列的纳米管阵列平均直径为在TNT / Ti线的表面上形成170nm且长度为70μm的线。 TGA结果显示DOPA和DOXO的TNT内部总药物装载量分别为170μg和1200μg。观察到两阶段的药物释放行为,包括前6小时的快速释放(爆发)和8天的延长的缓慢释放阶段,均具有可接受的剂量和理想的释放动力学。制备的TNT / Ti植入物的物理,结构,负载和释放特性与现有和临床证明的脑植入物相比显示出一些优势。结论:我们的结果证实TNT / Ti线可以成功地用作释放神经递质的合适平台,例如作为DOPA和抗癌药物,例如DOXO。因此,它们是作为药物释放植入物的可行替代方案,用于在大脑中局部递送药物以对抗神经退行性疾病或脑瘤。

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