Department of Radiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Mol Pharm. 2013 Mar 4;10(3):793-812. doi: 10.1021/mp3005325. Epub 2013 Jan 24.
Dendrimers are a class of structurally defined macromolecules featured with a central core, a low-density interior formed by repetitive branching units, and a high-density exterior terminated with surface functional groups. In contrast to their polymeric counterparts, dendrimers are nanosized and symmetrically shaped, which can be reproducibly synthesized on a large scale with monodispersity. These unique features have made dendrimers of increasing interest for drug delivery and other biomedical applications as nanoscaffold systems. Intended to address the potential use of dendrimers for the development of theranostic agents, which combines therapeutics and diagnostics in a single entity for personalized medicine, this review focuses on the reported methodologies of using dendrimer nanoscaffolds for targeted imaging and therapy of prostate cancer. Of particular interest, relevant chemistry strategies are discussed due to their important roles in the design and synthesis of diagnostic and therapeutic dendrimer-based nanoconjugates and potential theranostic agents, targeted or nontargeted. Given the developing status of nanoscaffolded theranostics, major challenges and potential hurdles are discussed along with the examples representing current advances.
树状聚合物是一类结构明确的大分子,具有中心核、由重复分支单元形成的低密度内部和表面功能基团终止的高密度外部。与它们的聚合物对应物相比,树状聚合物是纳米级的且形状对称,可以大规模、单分散性地重复合成。这些独特的特性使得树状聚合物作为纳米支架系统在药物输送和其他生物医学应用中越来越受到关注。本综述旨在探讨树状聚合物作为治疗诊断试剂的潜在用途,即将治疗和诊断结合在一个单一实体中用于个性化医疗,重点介绍了报道的使用树状聚合物纳米支架进行前列腺癌靶向成像和治疗的方法。特别感兴趣的是,讨论了相关的化学策略,因为它们在设计和合成基于树状聚合物的诊断和治疗纳米缀合物以及靶向或非靶向的潜在治疗诊断试剂中起着重要作用。鉴于纳米支架治疗学的发展状况,讨论了主要的挑战和潜在的障碍,并举例说明了当前的进展。