Clemens-Schöpf Institute of Organic Chemistry and Biochemistry, Technische Universität Darmstadt, Petersenstr. 22, 64287 Darmstadt, Germany.
Org Biomol Chem. 2013 Apr 14;11(14):2224-36. doi: 10.1039/c2ob26807h.
Small, compact, and highly symmetric cube-octameric silsesquioxanes have recently attracted increased attention as scaffolds for tailor-made bioconjugates. The expanded arsenal of effective conjugation methods (CuAAC, TEC, oxime ligation) allows one to decorate these nanoparticles bearing up to eight addressable organic substituents, with a wide range of biorelevant ligands, among them carbohydrates, peptides, miniproteins, reporter molecules, and rare-earth chelates. Low toxicity of COSS-based molecules combined with solubility in aqueous systems and half-life sufficient for in vivo studies make these structures attractive targets for a number of applications, among them drug delivery, tumor diagnostics and therapy.
最近,作为定制生物缀合物的支架,小型、紧凑且高度对称的立方八聚倍半硅氧烷受到了越来越多的关注。扩展的有效缀合方法(CuAAC、TEC、肟连接)武器库允许用各种生物相关配体(包括碳水化合物、肽、迷你蛋白、报告分子和稀土螯合物)来修饰这些带有多达 8 个可寻址有机取代基的纳米颗粒。基于 COSS 的分子的低毒性、在水相系统中的溶解度以及足够的体内研究半衰期使得这些结构成为许多应用的有吸引力的目标,包括药物输送、肿瘤诊断和治疗。