纳米颗粒
锰
材料科学
纳米技术
磁共振成像
磁性纳米粒子
组合化学
化学
医学
放射科
冶金
作者
Joseph M. Keca,Juan Chen,Marta Overchuk,Nidal Muhanna,Christina M. MacLaughlin,Cheng Jin,Warren D. Foltz,Jonathan C. Irish,Gang Zheng
标识
DOI:10.1002/anie.201600234
摘要
Abstract The discovery and synthesis of novel multifunctional organic building blocks for nanoparticles is challenging. Texaphyrin macrocycles are capable and multifunctional chelators. However, they remain elusive as building blocks for nanoparticles because of the difficulty associated with synthesis of texaphyrin constructs capable of self‐assembly. A novel manganese (Mn)‐texaphyrin‐phospholipid building block is described, along with its one‐pot synthesis and self‐assembly into a Mn‐nanotexaphyrin. This nanoparticle possesses strong resilience to manganese dissociation, structural stability, in vivo bio‐safety, and structure‐dependent T 1 and T 2 relaxivities. Magnetic resonance imaging (MRI) contrast enhanced visualization of lymphatic drainage is demonstrated with respect to proximal lymph nodes on the head and neck VX‐2 tumors of a rabbit. Synthesis of 17 additional metallo‐texaphyrin building blocks suggests that this novel one‐pot synthetic procedure for nanotexaphyrins may lead to a wide range of applications in the field of nanomedicines.
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