用于药物纳米化的成像和非成像分析技术及其专利综述。

IF 2 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
Vijay Agarwal, Meenakshi Bajpai
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引用次数: 0

摘要

背景:纳米技术被广泛认为是一种有效的技术,可以提高水溶性差药物的溶解度、溶解速度、起效和生物利用度。为了控制输出产品的执行和行为,需要更先进和有价值的分析技术。目的:这篇综述的主要目的是通过对相关专利的关注,提供对与纳米尺寸分析相关的成像和非成像技术的理解。此外,本研究还旨在收集和说明各种经典(激光衍射、光子相关光谱、zeta电位、激光多普勒电泳、x射线衍射、差示扫描量热计、扫描电镜、透射电镜)、新型和先进的分析技术(改进的动态光散射法、brunauer - emmetttteller法、超声波衰减法、生物传感器法)的信息。以及商业技术,如电感耦合等离子体质谱,空气动力学粒度仪,扫描迁移率粒度仪,和基质辅助激光解吸/电离质谱,这些都与纳米级颗粒有关。方法:目前的手稿已经采取了新的眼光在纳米化过程中使用的分析技术的各个方面,并已通过广泛的同行评议的文献分析实现了这一点。所有综述的文献研究都提供了满足纳米技术基本需求的信息。结果:与纳米化工艺相关的各种分析技术已经建立,并具有很大的潜力来消除一些问题。然而,目前的情况需要更相关、更准确和更先进的分析技术,这些技术可以最大限度地减少与不同仪器和工艺参数相关的时间和偏差。为了满足这一需求,近年来发现了一些新的、更先进的分析技术,如超声衰减技术、BET技术、生物传感器等。结论:本综述证明了不同分析技术在纳米化过程中的重要性。概述还提供了与复杂分析工具相关的各种专利的信息,可以满足这样一个先进领域的需求。数据表明,纳米技术领域将在未来蓬勃发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Imaging and Non-imaging Analytical Techniques Used for Drug Nanosizing and their Patents: An Overview.

Background: Nanosizing is widely recognized as an effective technique for improving the solubility, dissolution rate, onset of action, and bioavailability of poorly water-soluble drugs. To control the execution and behavior of the output product, more advanced and valuable analytical techniques are required.

Objective: The primary intent of this review manuscript was to furnish the understanding of imaging and non-imaging techniques related to nanosizing analysis by focusing on related patents. In addition, the study also aimed to collect and illustrate the information on various classical (laser diffractometry, photon correlation spectroscopy, zeta potential, laser Doppler electrophoresis, X-ray diffractometry, differential scanning calorimeter, scanning electron microscopy, transmission electron microscopy), new, and advanced analytical techniques (improved dynamic light scattering method, Brunauer-Emmett- Teller method, ultrasonic attenuation, biosensor), as well as commercial techniques, like inductively coupled plasma mass spectroscopy, aerodynamic particle sizer, scanning mobility particle sizer, and matrix- assisted laser desorption/ionization mass spectroscopy, which all relate to nano-sized particles.

Methods: The present manuscript has taken a fresh look at the various aspects of the analytical techniques utilized in the process of nanosizing, and has achieved this through the analysis of a wide range of peer-reviewed literature. All summarized literature studies provide the information that can meet the basic needs of nanotechnology.

Results: A variety of analytical techniques related to the nanosizing process have already been established and have great potential to weed out several issues. However, the current scenarios require more relevant, accurate, and advanced analytical techniques that can minimize the time and deviations associated with different instrumental and process parameters. To meet this requirement, some new and more advanced analytical techniques have recently been discovered, like ultrasonic attenuation technique, BET technique, biosensors, etc. Conclusion: The present overview certifies the significance of different analytical techniques utilized in the nanosizing process. The overview also provides information on various patents related to sophisticated analytical tools that can meet the needs of such an advanced field. The data show that the nanotechnology field will flourish in the coming future.

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来源期刊
Recent Patents on Nanotechnology
Recent Patents on Nanotechnology NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
4.70
自引率
10.00%
发文量
50
审稿时长
3 months
期刊介绍: Recent Patents on Nanotechnology publishes full-length/mini reviews and research articles that reflect or deal with studies in relation to a patent, application of reported patents in a study, discussion of comparison of results regarding application of a given patent, etc., and also guest edited thematic issues on recent patents in the field of nanotechnology. A selection of important and recent patents on nanotechnology is also included in the journal. The journal is essential reading for all researchers involved in nanotechnology.
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