Aditya Singh, Vaseem Ahamad Ansari, Tarique Mahmood, Farogh Ahsan, Rufaida Wasim, Shubhrat Maheshwari, Mohammad Shariq, Saba Parveen, Arshiya Shamim
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UA acid appears to have negligible toxicity and immunogenicity, as well as favorable biodistribution, according to the current study, and the dendritic structure improves drug solubility, prevents drug degradation, increases circulation time, and potentially targets by using different pathways with different routes of administration. Nanotechnology is a field in which materials are synthesized at the nanoscale. Nanotechnology could be the next frontier of humankind's technological advancement. Richard Feynman first used the term 'Nanotechnology' in his lecture, \"There is Plenty of Room at the Bottom\", on 29th December, 1959, and since then, interest has increased in the research on nanoparticles. Nanotechnology is capable of helping humanity by solving major challenges, particularly in neurological disorders like Alzheimer's disease (AD), the most prevalent type, which may account for 60-70% of cases. Other significant forms of dementia include vascular dementia, dementia with Lewy bodies (abnormal protein aggregates that form inside nerve cells), and a number of illnesses that exacerbate frontotemporal dementia. Dementia is an acquired loss of cognition in several cognitive domains that are severe enough to interfere with social or professional functioning. However, dementia frequently co-occurs with other neuropathologies, typically AD with cerebrovascular dysfunction. Clinical presentations show that neurodegenerative diseases are often incurable because patients permanently lose some neurons. A growing body of research suggests that they also advance our knowledge of the processes that are probably crucial for maintaining the health and functionality of the brain. Serious neurological impairment and neuronal death are the main features of neurodegenerative illnesses, which are also extremely crippling ailments. 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引用次数: 0
摘要
纳米技术是医学研究的最佳选择,而绿色合成法是合成纳米粒子的一种新颖、更好的方法。生物资源具有成本低、环境友好等特点,可以大规模生产纳米粒子。据报道,天然获得的 3 β-hydroxy-urs- 12-en-28-oic acids 具有神经保护和树突结构的作用,可作为溶解性增强剂。植物不含有毒物质,是天然的封顶剂。本综述讨论了熊果酸(UA)的药理特性和树突结构特性。根据目前的研究,熊果酸的毒性和免疫原性几乎可以忽略不计,而且具有良好的生物分布,树枝状结构可提高药物的溶解度,防止药物降解,延长循环时间,并可通过不同的给药途径发挥潜在的靶向作用。纳米技术是在纳米尺度上合成材料的领域。纳米技术可能是人类技术进步的下一个前沿领域。理查德-费曼(Richard Feynman)在 1959 年 12 月 29 日的演讲 "There is Plenty of Room at the Bottom "中首次使用了 "纳米技术 "一词,此后,人们对纳米粒子研究的兴趣与日俱增。纳米技术能够帮助人类解决重大挑战,特别是神经系统疾病,如阿尔茨海默病(AD),这是一种最常见的疾病,可能占病例的 60-70%。其他重要的痴呆形式包括血管性痴呆、路易体痴呆(神经细胞内形成的异常蛋白质聚集体),以及一些会加重额颞叶痴呆的疾病。痴呆症是一种后天性认知能力丧失,涉及多个认知领域,严重程度足以影响社会或职业功能。然而,痴呆症经常与其他神经病理学并发,典型的是伴有脑血管功能障碍的注意力缺失症。临床表现显示,神经退行性疾病通常无法治愈,因为患者会永久性地失去部分神经元。越来越多的研究表明,这些疾病也增进了我们对维持大脑健康和功能的关键过程的了解。严重的神经功能损伤和神经元死亡是神经退行性疾病的主要特征,也是极其严重的致残性疾病。最常见的神经退行性疾病会导致认知障碍和痴呆症,随着全球平均寿命的延长,这些疾病的影响也越来越明显。
Emerging Nanotechnology for the Treatment of Alzheimer's Disease.
Nanotechnology is a great choice for medical research, and the green synthesis approach is a novel and better way to synthesize nanoparticles. Biological sources are cost-effective, environmentally friendly, and allow large-scale production of nanoparticles. Naturally obtained 3 β-hydroxy-urs- 12-en-28-oic acids reported for neuroprotective and dendritic structure are reported as solubility enhancers. Plants are free from toxic substances and act as natural capping agents. In this review, the pharmacological properties of ursolic acid (UA) and the structural properties of the dendritic structure are discussed. UA acid appears to have negligible toxicity and immunogenicity, as well as favorable biodistribution, according to the current study, and the dendritic structure improves drug solubility, prevents drug degradation, increases circulation time, and potentially targets by using different pathways with different routes of administration. Nanotechnology is a field in which materials are synthesized at the nanoscale. Nanotechnology could be the next frontier of humankind's technological advancement. Richard Feynman first used the term 'Nanotechnology' in his lecture, "There is Plenty of Room at the Bottom", on 29th December, 1959, and since then, interest has increased in the research on nanoparticles. Nanotechnology is capable of helping humanity by solving major challenges, particularly in neurological disorders like Alzheimer's disease (AD), the most prevalent type, which may account for 60-70% of cases. Other significant forms of dementia include vascular dementia, dementia with Lewy bodies (abnormal protein aggregates that form inside nerve cells), and a number of illnesses that exacerbate frontotemporal dementia. Dementia is an acquired loss of cognition in several cognitive domains that are severe enough to interfere with social or professional functioning. However, dementia frequently co-occurs with other neuropathologies, typically AD with cerebrovascular dysfunction. Clinical presentations show that neurodegenerative diseases are often incurable because patients permanently lose some neurons. A growing body of research suggests that they also advance our knowledge of the processes that are probably crucial for maintaining the health and functionality of the brain. Serious neurological impairment and neuronal death are the main features of neurodegenerative illnesses, which are also extremely crippling ailments. The most prevalent neurodegenerative disorders cause cognitive impairment and dementia, and as average life expectancy rises globally, their effects become more noticeable.
期刊介绍:
Aims & Scope
CNS & Neurological Disorders - Drug Targets aims to cover all the latest and outstanding developments on the medicinal chemistry, pharmacology, molecular biology, genomics and biochemistry of contemporary molecular targets involved in neurological and central nervous system (CNS) disorders e.g. disease specific proteins, receptors, enzymes, genes.
CNS & Neurological Disorders - Drug Targets publishes guest edited thematic issues written by leaders in the field covering a range of current topics of CNS & neurological drug targets. The journal also accepts for publication original research articles, letters, reviews and drug clinical trial studies.
As the discovery, identification, characterization and validation of novel human drug targets for neurological and CNS drug discovery continues to grow; this journal is essential reading for all pharmaceutical scientists involved in drug discovery and development.