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Challenges for cysteamine stabilization quantification and biological effects improvement

机译:半胱胺稳定定量和生物效应改善的挑战

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摘要

The aminothiol cysteamine, derived from coenzyme A degradation in mammalian cells, presents several biological applications. However, the bitter taste and sickening odor, chemical instability, hygroscopicity, and poor pharmacokinetic profile of cysteamine limit its efficacy. The use of encapsulation systems is a good methodology to overcome these undesirable properties and improve the pharmacokinetic behavior of cysteamine. Besides, the conjugation of cysteamine to the surface of nanoparticles is generally proposed to improve the intra-oral delivery of cyclodextrin-drug inclusion complexes, as well as to enhance the colorimetric detection of compounds by a gold nanoparticle aggregation method. On the other hand, the detection and quantification of cysteamine is a challenging mission due to the lack of a chromophore in its structure and its susceptibility to oxidation before or during the analysis. Derivatization agents are therefore applied for the quantification of this molecule. To our knowledge, the derivatization techniques and the encapsulation systems used for cysteamine delivery were not reviewed previously. Thus, this review aims to compile all the data on these methods as well as to provide an overview of the various biological applications of cysteamine focusing on its skin application.
机译:氨基硫醇氨基胱胺,衍生自哺乳动物细胞中的辅酶降解,呈现了几种生物学应用。然而,令人痛苦的味道和令人作呕的气味,化学不稳定性,吸湿性,囊麦粉的差的药代动力学曲线限制其功效。封装系统的使用是克服这些不希望的性质的良好方法,并改善半胱胺的药代动力学行为。此外,通常提出将半胱胺与纳米颗粒表面的缀合以改善环糊精 - 药物包合物的口腔内递送,以及通过金纳米颗粒聚集方法增强化合物的比例检测。另一方面,由于其结构中缺乏发色团及其在分析之前或期间,由于缺乏发色团及其在分析期间的氧化敏感性,囊芯筒的检测和定量是一个具有挑战性的使命。因此,衍生化试剂适用于该分子的定量。据我们所知,先前未审查用于半胱胺递送的衍生化技术和用于半胱胺递送的封装系统。因此,本综述旨在编制这些方法的所有数据,以及提供囊序聚焦在其皮肤应用上的各种生物应用的概述。

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