[Development of a nanomachine for efficient drug delivery to the brain].

Hayato Laurence Mizuno, Yasutaka Anraku
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引用次数: 0

Abstract

Recently, bottom-up technologies, in particular the utilization of self-assembly of functional polymers to form nanostructures in solutions have been collecting attention. These technologies are being explored for various applications, especially for usage in therapeutics. One of the goals of such studies is to develop a drug delivery system (DDS) that delivers bioactive substances to specific targets within our body, eliciting the desired functionality. The authors have been developing "nanomachines" using biocompatible polymers to safely and efficiently deliver drugs mainly to tumors. The aim of this study is to utilize our expertise in designing a nanomachine to develop a cutting-edge nanomachine that can efficiently penetrate the blood-brain barrier (BBB) and deliver drugs to the brain parenchyma. Furthermore, leveraging this "nanomachine" technology, the authors are advancing the "Hayabusa Nanomachine," which can non-invasively collect and detect brain molecules, correlating them with various biological processes, ultimately leading to a better understanding of brain function and diseases. This paper also introduces the concept and ongoing efforts to the development of "Hayabusa Nanomachines," which have the potential to revolutionize existing approaches in this field.

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[开发向大脑高效递送药物的纳米机械]。
最近,自下而上的技术,特别是利用功能聚合物的自组装在溶液中形成纳米结构的技术受到了关注。人们正在探索这些技术的各种应用,尤其是在治疗方面的应用。此类研究的目标之一是开发一种药物输送系统(DDS),将生物活性物质输送到人体内的特定靶点,激发所需的功能。作者一直在开发使用生物相容性聚合物的 "纳米机器",以安全高效地将药物主要输送到肿瘤部位。本研究的目的是利用我们在设计纳米机械方面的专业知识,开发一种能有效穿透血脑屏障(BBB)并将药物输送到脑实质的尖端纳米机械。此外,作者利用这种 "纳米机械 "技术,正在推进 "隼鸟纳米机械",它可以无创收集和检测脑分子,并将其与各种生物过程相关联,最终使人们更好地了解大脑功能和疾病。本文还介绍了 "隼鸟纳米机械 "的概念和正在进行的开发工作,它有可能彻底改变这一领域的现有方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Folia Pharmacologica Japonica
Folia Pharmacologica Japonica Pharmacology, Toxicology and Pharmaceutics-Pharmacology
CiteScore
0.40
自引率
0.00%
发文量
132
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[Deep brain imaging by using GRIN lens].
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