Levine Mindy, Kenesky Craig S, Zheng Shengping, Quinn Jordan, Breslow Ronald
Columbia University, Department of Chemistry, 3000 Broadway, New York 10027, USA.
Tetrahedron Lett. 2008 Sep 29;49(40):5746-5750. doi: 10.1016/j.tetlet.2008.07.108.
Chiral polyamines can be utilized for a variety of potential applications, ranging from asymmetric catalysis to nonviral gene delivery systems for DNA and RNA. They can also be utilized to solubilize carbon nanotubes. Thus, methods for the straightforward synthesis of chiral polyamines are needed. We present herein two synthetic strategies for accessing chiral polyamines. The potential of these chiral amines to catalyze two organic reactions with a high degree of chiral induction was also explored.Text: Chiral polyamines have been utilized for a variety of applications. First, polyamines are polycationic at neutral pH; as such, they interact strongly with both DNA and RNA.1 They can therefore be utilized as effective nonviral gene delivery agents.2 Second, chiral polyamines are efficient catalysts for various organic transformations.3 Polyamines have also been used to solubilize carbon nanotubes.4 Finally, chiral polyamines are excellent ligands for many transition metals.5 Due to their numerous applications, high-yielding synthetic strategies for their preparation are in great demand. We present herein two synthetic strategies for accessing chiral polyamines, and the potential of these chiral amines to catalyze two organic reactions.
手性多胺已被用于多种应用。首先,多胺在中性pH值下呈多阳离子状态;因此,它们与DNA和RNA都有很强的相互作用。1 因此,它们可用作有效的非病毒基因传递剂。2 其次,手性多胺是各种有机转化的有效催化剂。3 多胺也被用于溶解碳纳米管。4 最后,手性多胺是许多过渡金属的优良配体。5 由于它们有众多应用,因此迫切需要高产率的合成策略来制备它们。我们在此介绍两种合成手性多胺的策略,以及这些手性胺催化两种有机反应的潜力。