CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, Anhui, 230026, People's Republic of China.
J Phys Chem B. 2012 Mar 15;116(10):3075-82. doi: 10.1021/jp211384p. Epub 2012 Mar 1.
Drug molecules bearing multiple charges usually form precipitates with cationic dendrimers, which presents a challenge during the preparation of dendrimer inclusions for these drugs. In the present study, fully acetylated polyamidoamine (PAMAM) dendrimers were proposed as stable vehicles for drug molecules bearing two negative charges such as Congo red and indocyanine green. NMR techniques including (1)H NMR and (1)H-(1)H NOESY were used to characterize the host-guest chemistry of acetylated dendrimer and these guest molecules. The cationic PAMAM dendrimer was found to form a precipitate with Congo red and indocyanine green, but the acetylated one avoided the formation of cross-linking structures in aqueous solutions. NOESY studies revealed the encapsulation of Congo red and indocyanine green within the interior cavities of PAMAM dendrimers at mild acidic conditions and acetylated dendrimers show much stronger ability to encapsulate the guest molecules than cationic ones. Also, UV-vis-NIR studies suggest that acetylated dendrimers significantly improve the photostability of indocyanine green and prevent the formation of indocyanine green J-aggregates in aqueous solutions. The present study provides a new insight into dendrimer-based host-guest systems, especially for those guest molecules bearing multiple charges.
带多个电荷的药物分子通常与阳离子树状聚合物形成沉淀物,这在为这些药物制备树状聚合物包合物时带来了挑战。在本研究中,全乙酰化聚酰胺-胺(PAMAM)树状聚合物被提议作为带两个负电荷的药物分子(如刚果红和吲哚菁绿)的稳定载体。NMR 技术,包括(1)H NMR 和(1)H-(1)H NOESY,用于表征乙酰化树状聚合物和这些客体分子的主客体化学。发现阳离子 PAMAM 树状聚合物与刚果红和吲哚菁绿形成沉淀物,但乙酰化的树状聚合物在水溶液中避免了交联结构的形成。NOESY 研究表明,在温和的酸性条件下,刚果红和吲哚菁绿被包封在 PAMAM 树状聚合物的内部腔室中,而乙酰化树状聚合物比阳离子树状聚合物具有更强的包封客体分子的能力。此外,UV-vis-NIR 研究表明,乙酰化树状聚合物显著提高了吲哚菁绿的光稳定性,并防止了在水溶液中形成吲哚菁绿 J-聚集体。本研究为基于树状聚合物的主客体体系提供了新的见解,特别是对于那些带多个电荷的客体分子。