摘要
背景:硼双吡啶平台上的荧光团(4,4-二氟-4-硼氮烷,4a-diaza-s-indacene,也称为BODIPY)在分子传感学领域引起了极大的关注,包括感测生物分子和生物过程。现有BODIPY的结构多样性具有有针对性地修饰化合物的机会,使得该类荧光团对医疗和生物目的具有吸引力。 BODIPY的设计和功能化最近的进展允许使用它们来修饰药物微观和纳米载体,以提高其在癌症治疗中的治疗效果。同时,将BODIPY整合到药物载体中提供了使用药物载体的体外和体内实时成像的可能性。 BODIPY的高荧光强度和低毒性被授予与不同生物分子的缀合。 结果:本评论侧重于在医学诊断,抗菌活性中应用个体BODIPY的最新进展,以及确定BODIPY在生物分子(例如蛋白质,激素和DNA)标记中的作用。此外,该评论突出了BODIPY在药物微纳米载体的功能化方面的潜力,以获得比未改性材料更好的治疗效果。从使用BODIPY制备和修改药物载体的优点得到了极大的评估,未来的挑战,特别是关于创新的多功能BODIPY的纳米载体的设计的潜力,将从文献中的代表性实例进行详细的讨论。 结论:我们的目标是显示BODIPY是生物成像,生物分子标记和新型多功能药物载体构建的强大工具。
关键词: 高级功能和保健材料,抗菌活性,硼双歧杆菌(BODIPY),DNA和RNA,体内和体外细胞成像,医学诊断,分子传感学,多功能药物载体,蛋白质。
Current Medicinal Chemistry
Title:Recent Advances of Individual BODIPY and BODIPY-Based Functional Materials in Medical Diagnostics and Treatment
Volume: 24 Issue: 25
关键词: 高级功能和保健材料,抗菌活性,硼双歧杆菌(BODIPY),DNA和RNA,体内和体外细胞成像,医学诊断,分子传感学,多功能药物载体,蛋白质。
摘要: Background: The group of fluorophores on boron dipyrrin platform (4,4- difluoro-4-bora3a,4a-diaza-s-indacene, also known as BODIPY) has attracted much attention in the field of molecular sensorics, including sensing of biomolecules and bioprocesses. Structural diversity of existing BODIPY with ample opportunities of directed modification of compounds makes this class of fluorophores attractive for medical and biological purposes. The recent progress in the design and functionalization of BODIPY allows using them for modification of drug micro- and nanocarriers in order to improve their therapeutic effect in cancer treatment. At the same time, integration of BODIPY into drug carriers provides the possibility of in vitro and in vivo real time imaging of used drug carriers. The high fluorescent intensity and low toxicity of BODIPY granted for conjugation with different biomolecules.
Results: The present review focuses on the recent advances for application of individual BODIPY in medical diagnostics, antimicrobial activity, as well as establishing the role of BODIPY in labeling of biomolecules (e.g. proteins, hormones and DNA). Also the review highlights the potential of BODIPY in functionalization of drug micro- and nanocarriers in order to achieve better therapeutic efficiency compared with non-modified materials. The advantages derived from the use of BODIPY for preparation and modification of drug carriers are critically evaluated and potential for future challenges, especially concerning the design of innovative multi-functional BODIPY-based nanocarriers, is discussed in detail using representative examples from literature. Conclusion: Our objective was to show that BODIPY are powerful tools for bioimaging, labeling of biomolecules and construction of new multifunctional drug carriers.Export Options
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Cite this article as:
Recent Advances of Individual BODIPY and BODIPY-Based Functional Materials in Medical Diagnostics and Treatment, Current Medicinal Chemistry 2017; 24 (25) . https://dx.doi.org/10.2174/0929867324666170601092327
DOI https://dx.doi.org/10.2174/0929867324666170601092327 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |
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