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Receptor specific, stimuli responsive and subcellular targeted approaches for effective therapy of Alzheimer: Role of surface engineered nanocarriers

机译:受体特异性,刺激响应性和亚细胞靶向方法,用于有效治疗阿尔茨海默氏症:表面工程纳米载体的作用

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The present review deals in-depth with the current application of nanotechnology in targeting the major pathological hallmarks of Alzheimer's disease. This review further focuses on the surface modification of the nanocarriers using antibody, aptamers, proteins and peptides for specific targeting in the brain by overcoming the biological barriers such as blood brain barrier. The stimuli responsive/pulsatile drug delivery nanoplatforms using stimuli such as pH, temperature, photo-thermal, reactive oxygen species, ultrasonic stimulation and electrical stimulation, which help to create a micro-environment to either trigger the site-specific drug release from the nanoplatform or to reduce the disease burden in the brain, have been discussed. The targeting of nanoplatforms to sub-cellular compartments such as mitochondria, nuclei, endoplasmic reticulum, golgi apparatus and lysosomes along with receptor specific interactions such as such folate, lactoferrin, transferrin, insulin and low-density lipoprotein (LDL) receptors has been included to give reader an idea about strategies to enhance cellular co-localization and receptor based targeting of nanoparticles to enhance efficacy of delivery platform. This article describes the various type of nanoplatforms which include lipidic nanoplatforms, polymeric nanoplatforms, inorganic nanoplatforms (metallic nanocarriers, quantum dots, ceramic based nanocarriers), carbon based nanocarriers and cell derived or biomimetic (exosomes and virus based) nanoplatforms, to either deliver the active ingredient or to themselves target the Alzheimer's disease pathology. Thus the review gives a detailed insight of all the recent research studies carried out using nanotechnology in the field of Alzheimer's disease.
机译:本综述有助于目前应用纳米技术在靶向阿尔茨海默病的主要病态标志方面的应用。通过克服血脑屏障如血脑屏障等生物屏障,进一步侧重于使用抗体,适体,蛋白质和肽的纳米载体的表面改性,所述抗体,适体,蛋白质和肽在大脑中靶向。使用刺激的刺激响应/脉动药物递送纳米载物,例如pH,温度,光 - 热,反应性氧,超声刺激和电刺激,有助于创造微环境以触发从纳米纳米纳米纳米纳米液体释放的特异性药物释放或者已经讨论过大脑中的疾病负担。已包括纳米粒细胞,诸如线粒体,核,内质网,高压装置和溶酶体的亚细胞室,以及受体特异性相互作用,例如这种叶酸,乳蛋白,转移素,胰岛素和低密度脂蛋白(LDL)受体。为读者提供关于增强细胞共定位和基于纳米颗粒的受体靶向的策略的想法,以提高递送平台的疗效。本文介绍了各种类型的纳米片,其包括脂质纳米纳薄,聚合物纳米载物,无机纳米纳薄(金属纳米载体,量子点,陶瓷基纳米载体),碳的纳米载体和细胞衍生的或染色(外肌肉和病毒的基础)纳米载体,以提供活性成分或自己靶向阿尔茨海默病病理学。因此,审查详细介绍了在阿尔茨海默氏病领域使用纳米技术进行的所有研究研究。

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