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等温滴定量热法(ITC)作为药物纳米技术中一种很有前途的工具。

Isothermal titration calorimetry (ITC) as a promising tool in pharmaceutical nanotechnology.

机构信息

Keizo Asami Institute (iLIKA), Federal University of Pernambuco (UFPE), Av. Prof. Moraes Rego, Cidade Universitária, Recife, PE, Brazil.

Keizo Asami Institute (iLIKA), Federal University of Pernambuco (UFPE), Av. Prof. Moraes Rego, Cidade Universitária, Recife, PE, Brazil; Department of Pharmacy, Pharmaceutical Biotechnology Laboratory (BioTecFarm), Federal University of Paraíba (UFPB), Campus I Lot. Cidade Universitaria, PB 58051-900, Brazil.

出版信息

Int J Pharm. 2023 Jun 25;641:123063. doi: 10.1016/j.ijpharm.2023.123063. Epub 2023 May 18.

Abstract

Isothermal titration calorimetry (ITC) is a technique for evaluating the thermodynamic profiles of connection between two molecules, allowing the experimental design of nanoparticles systems with drugs and/or biological molecules. Taking into account the relevance of ITC, we conducted, therefore, an integrative revision of the literature, from 2000 to 2023, on the main purposes of using this technique in pharmaceutical nanotechnology. The search were carried out in the Pubmed, Sciencedirect, Web of Science, and Scifinder databases using the descriptors "Nanoparticles", "Isothermal Titration Calorimetry", and "ITC". We have observed that the ITC technique has been increasingly used in pharmaceutical nanotechnology, seeking to understand the interaction mechanisms in the formation of nanoparticles. Additionally, to understand the behavior of nanoparticles with biological materials (proteins, DNA, cell membranes, among others), thereby helping to understand the behavior of nanocarriers in vivo studies. As a contribution, we intended to reveal the importance of ITC in the laboratory routine, which is itself a quick and easy technique to obtain relevant results that help to optimize the nanosystems formulation process.

摘要

等温滴定量热法(ITC)是一种评估两个分子之间连接热力学特性的技术,可以用于设计药物和/或生物分子的纳米粒子系统。考虑到 ITC 的重要性,我们对 2000 年至 2023 年期间,该技术在药物纳米技术中的主要应用进行了综合文献回顾。在 PubMed、Sciencedirect、Web of Science 和 Scifinder 数据库中,使用了“Nanoparticles”、“Isothermal Titration Calorimetry”和“ITC”这三个检索词进行检索。我们发现,ITC 技术在药物纳米技术中的应用越来越广泛,旨在了解纳米粒子形成过程中的相互作用机制。此外,还可以了解纳米粒子与生物材料(蛋白质、DNA、细胞膜等)的相互作用行为,从而有助于理解纳米载体在体内研究中的行为。作为一项贡献,我们旨在揭示 ITC 在实验室常规中的重要性,该技术本身快速、简单,可以获得有助于优化纳米系统配方过程的相关结果。

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