Viñas Clara, Núñez Rosario, Bennour Ines, Teixidor Francesc
Institut de Ciencia de Materials de Barcelona (ICMAB-CSIC). Campus UAB, 08193 Bellaterra, Barcelona,Spain.
Curr Med Chem. 2019;26(26):5036-5076. doi: 10.2174/0929867326666190603123838.
A mini-review based on radial growing macromolecules and core initiated Borane periphery decorated with o-carboranes and metallacarboranes that has been developed in the authors laboratories is reported. The review is divided into four sections; three of them are related to the design and synthesis of these large boron-containing molecules and the fourth deals with the unique properties of anionic metallacarborane molecules that provide a glimpse of their potential for their promising use in medicinal applications. Their unique stability along with their geometrical and electronic properties, as well as the precise steric structure of 1,2-closo-C2B10H12 (o-carborane) that has the potential for the incorporation of many substituents: at the carbon (Cc), at the boron and at both carbon and boron vertices, suggests this cluster as an innovative building block or platform for novel applications that cannot be achieved with organic hydrocarbon compounds. Poly(aryl-ether) dendrimers grown from fluorescent cores, such as 1,3,5-triarylbenzene or meso-porphyrins, have been decorated with boron clusters to attain rich boron containing dendrimers. Octasilsesquioxane cubes have been used as a core for its radial growth to get boron-rich large molecules. The unique properties of cobaltabisdicarbollide cluster, which include: i) self-assembly in water to produce monolayer nano-vesicles, ii) crossing lipid bilayer membranes, iii) interacting with membrane cells, iv) facilitating its visualization within cells by Raman and fluorescence techniques and v) their use as molecular platform for "in vivo" imaging are discussed in detail.
本文报道了一篇基于作者实验室开发的径向生长大分子以及用邻碳硼烷和金属碳硼烷修饰的核心引发硼烷的小型综述。该综述分为四个部分;其中三个部分涉及这些含硼大分子的设计与合成,第四部分则讨论了阴离子金属碳硼烷分子的独特性质,这些性质展示了它们在医学应用中潜在的广阔前景。它们独特的稳定性以及几何和电子性质,还有1,2-闭式-C₂B₁₀H₁₂(邻碳硼烷)精确的空间结构,该结构有潜力在碳(Cc)、硼以及碳和硼顶点处引入许多取代基,这表明该簇合物是一种创新的构建单元或平台,可用于有机碳氢化合物无法实现的新型应用。从荧光核心(如1,3,5-三芳基苯或中位卟啉)生长的聚(芳基醚)树枝状大分子已用硼簇进行修饰,以获得富含硼的树枝状大分子。八硅倍半氧烷立方体已被用作径向生长的核心,以得到富含硼的大分子。文中详细讨论了钴双二碳硼烷簇的独特性质,包括:i)在水中自组装形成单层纳米囊泡;ii)穿过脂质双分子层膜;iii)与膜细胞相互作用;iv)通过拉曼和荧光技术促进其在细胞内的可视化;v)其作为“体内”成像分子平台的应用。