树枝状大分子
磁共振成像
纳米探针
材料科学
荧光寿命成像显微镜
纳米技术
医学影像学
分子成像
两亲性
生物医学工程
荧光
纳米颗粒
放射科
医学
体内
聚合物
共聚物
物理
生物技术
生物
复合材料
高分子化学
量子力学
作者
Ling Ding,Zhenbin Lyu,Teodora‐Adriana Perles‐Barbacaru,Adela Ya‐Ting Huang,Baoping Lian,Yifan Jiang,Tangi Roussel,Christina Galanakou,S. Giorgio,Chai‐Lin Kao,Xiaoxuan Liu,Juan Iovanna,Monique Bernard,Angèle Viola,Ling Peng
标识
DOI:10.1002/adma.202308262
摘要
Abstract Bioimaging is a powerful tool for diagnosing tumors but remains limited in terms of sensitivity and specificity. Nanotechnology‐based imaging probes able to accommodate abundant imaging units with different imaging modalities are particularly promising for overcoming these limitations. In addition, the nanosized imaging agents can specifically increase the contrast of tumors by exploiting the enhanced permeability and retention effect. A proof‐of‐concept study is performed on pancreatic cancer to demonstrate the use of modular amphiphilic dendrimer‐based nanoprobes for magnetic resonance (MR) imaging (MRI) or MR/near‐infrared fluorescence (NIRF) multimodality imaging. Specifically, the self‐assembly of an amphiphilic dendrimer bearing multiple Gd 3+ units at its terminals, generates a nanomicellar agent exhibiting favorable relaxivity for MRI with a good safety profile. MRI reveals an up to two‐fold higher contrast enhancement in tumors than in normal muscle. Encapsulating the NIRF dye within the core of the nanoprobe yields an MR/NIRF bimodal imaging agent for tumor detection that is efficient both for MRI, at Gd 3+ concentrations 1/10 the standard clinical dose, and for NIRF imaging, allowing over two‐fold stronger fluorescence intensities. These self‐assembling dendrimer nanosystems thus constitute effective probes for MRI and MR/NIRF multimodality imaging, offering a promising nanotechnology platform for elaborating multimodality imaging probes in biomedical applications.
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