Recent advances in nanotherapeutics for epilepsy and neurodegenerative diseases

Anant R Kuchik, Rohit R Doke, Pranav P Bhor, Ritik R Matade, P. Gosavi, Akash R Shinde
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引用次数: 1

Abstract

This review focuses on the potential of nanotherapeutics in the diagnosis and treatment of neuronal abnormal conditions particularly epilepsy, alzheimer's disease (AD), and Parkinson's disease (PD). The advancements in nanotechnology have paved the way for the development of nanocarrier systems that can target the underlying pathogenesis of these diseases. The study aimed to explore the efficacy of nanosystems in treating epilepsy, AD, and PD by analyzing relevant articles from databases such as Medline, PubMed and the national library of medicine. The review discusses the targeted delivery of active therapeutics to the central nervous system, with a focus on modulating neuronal and endothelial cell activity. It highlights various nanotherapeutic approaches, including pH-responsive nanomaterial-based therapeutics, nano-bioelectronic-implantable transient electronic devices, and electro-responsive nanosystems for the treatment of epilepsy. Additionally, the efficacy of nanodrug delivery systems loaded with curcumin, monoclonal anti-tau antibody-coated gold nanoparticles, Polyethylene Glycolpolylactide-Polyglycolide (PEG-PLGA) nanoparticles loaded with lactoferrin, dopamine-conjugated Albumin/PLGA nanosystems, and curcumin-loaded T807/RPCNP nanoparticles against neurodegeneration is discussed. The findings of this review provide valuable insights into the implications and challenges of nanotherapeutics in the field of neurological diseases. Neurologists and clinicians can benefit from this knowledge to better understand the potential applications of nanotherapeutics in the diagnosis and treatment of these conditions.
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纳米治疗癫痫和神经退行性疾病的最新进展
本文综述了纳米疗法在神经异常疾病特别是癫痫、阿尔茨海默病(AD)和帕金森病(PD)的诊断和治疗方面的潜力。纳米技术的进步为纳米载体系统的发展铺平了道路,这些系统可以靶向这些疾病的潜在发病机制。该研究旨在通过分析Medline、PubMed和国家医学图书馆等数据库中的相关文章,探索纳米系统在治疗癫痫、AD和PD方面的功效。这篇综述讨论了中枢神经系统主动疗法的靶向递送,重点是调节神经元和内皮细胞的活性。它强调了各种纳米治疗方法,包括基于ph响应的纳米材料治疗,纳米生物电子植入瞬态电子设备,以及用于治疗癫痫的电响应纳米系统。此外,还讨论了姜黄素纳米药物递送系统、单克隆抗tau抗体包被的金纳米颗粒、乳铁蛋白负载的聚乙二醇聚乳酸-聚乙二醇(PEG-PLGA)纳米颗粒、多巴胺偶联白蛋白/PLGA纳米系统和姜黄素负载的T807/RPCNP纳米颗粒对神经退行性变的影响。本综述的发现为纳米治疗在神经疾病领域的意义和挑战提供了有价值的见解。神经学家和临床医生可以从这些知识中受益,以更好地了解纳米疗法在这些疾病的诊断和治疗中的潜在应用。
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