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Nanocarrier-mediated brain delivery of bioactives for treatment/prevention of neurodegenerative diseases

机译:纳米载流子介导的脑递送生物递送治疗/预防神经变性疾病

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The treatment for brain disorders specifically neurodegenerative diseases (NDDs) has been a main challenge in the medical field. NDDs are progressive, disabling, and non-curable disorders that exhibit not only critical health issues on human sufferings but also the economic burden on the medicare systems. Due to the lack of efficient therapies to fight NDDs, it remains a challenging problem for physicians to find out new therapeutics to enhance the life quality of patients suffering from NDDs. In addition to genetics and environmental risk factors, high cell level oxidative stress has been stated as one of the most known etiologies in NDDs. Given the high anti-inflammatory and antioxidant potentials of naturally occurring bioactive compounds, they have been becoming interested therapeutics for brain disorders, which could provide ameliorating effects on different brain disorders. These substances can be involved in various neurodegeneration pathways to exhibit their health-promoting effects. Despite their health-promoting effects, they have a low bioavailability and poorly delivered into central nervous systems due to blood-central nervous system (CNS) barriers, which causes inefficient delivery of bioactives. A potential solution for tackling these obstacles lies in revolutionary nanoengineered platforms. Therefore, this review will focus on bioactive-loaded nanocarriers that can improve the efficiency of bioactive compounds including their blood circulation time, bioavailability, evade immune system, and transporting them to CNS to release their potential effects on treating and/or preventing neurodegeneration progress in NDDs.
机译:脑疾病的治疗特别是神经退行性疾病(NDDS)是医学领域的主要挑战。 NDDS是进步,禁用和不可治疗的疾病,其不仅表现出对人类遭受的关键健康问题,也是医疗保险系统的经济负担。由于缺乏对抗NDD的有效疗法,医生仍然是一个有挑战性的问题,以了解新的治疗方法,以提高患有NDD的患者的患者的生活质量。除了遗传和环境风险因素之外,高细胞水平氧化应激已经被称为NDDS中最着名的病因之一。鉴于天然存在的生物活性化合物的高抗炎和抗氧化潜力,它们已成为脑疾病的疗法感兴趣,这可能为不同的脑疾病提供改善作用。这些物质可以参与各种神经变性途径,以表现出他们的健康促进效果。尽管他们的健康效果,但由于血 - 中枢神经系统(CNS)屏障,它们具有低生物利用度,并且由于血液中枢神经系统(CNS)障碍而差,这导致生物效率低下。解决这些障碍的潜在解决方案位于革命性的纳米工程平台上。因此,本综述将专注于生物活性加载的纳米载体,可以提高生物活性化合物的效率,包括它们的血液循环时间,生物利用度,逃避免疫系统,并将它们输送到CNS,以释放它们对治疗和/或预防神经变性进展的潜在影响NDDS。

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