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Hapten-derivatized nanoparticle targeting and imaging of gene expression by multimodality imaging systems

机译:半抗原衍生的纳米颗粒靶向和多模态成像系统对基因表达的成像

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Non-invasive gene monitoring is important for most gene therapy applications to ensure selective gene transfer to specific cells or tissues. We developed a non-invasive imaging system to assess the location and persistence of gene expression by anchoring an anti-dansyl (DNS) single-chain antibody (DNS receptor) on the cell surface to trap DNS-derivatized imaging probes. DNS hapten was covalently attached to cross-linked iron oxide (CLIO) to form a 39±0.5?nm DNS-CLIO nanoparticle imaging probe. DNS-CLIO specifically bound to DNS receptors but not to a control single-chain antibody receptor. DNS-CLIO (100?μM Fe) was non-toxic to both B16/DNS (DNS receptor positive) and B16/phOx (control receptor positive) cells. Magnetic resonance (MR) imaging could detect as few as 10% B16/DNS cells in a mixture in vitro. Importantly, DNS-CLIO specifically bound to a B16/DNS tumor, which markedly reduced signal intensity. Similar results were also shown with DNS quantum dots, which specifically targeted CT26/DNS cells but not control CT26/phOx cells both in vitro and in vivo. These results demonstrate that DNS nanoparticles can systemically monitor the expression of DNS receptor in vivo by feasible imaging systems. This targeting strategy may provide a valuable tool to estimate the efficacy and specificity of different gene delivery systems and optimize gene therapy protocols in the clinic.
机译:对于大多数基因治疗应用而言,非侵入性基因监测非常重要,以确保选择性地将基因转移至特定细胞或组织。我们开发了一种非侵入性成像系统,通过在细胞表面锚定抗丹磺酰基(DNS)单链抗体(DNS受体)来捕获基因衍生的DNS成像探针,从而评估基因表达的位置和持久性。将DNS半抗原共价连接到交联的氧化铁(CLIO)上,形成39±0.5?nm的DNS-CLIO纳米颗粒成像探针。 DNS-CLIO特异性结合DNS受体,但不结合对照单链抗体受体。 DNS-CLIO(100?μMFe)对B16 / DNS(DNS受体阳性)和B16 / phOx(对照受体阳性)细胞均无毒。磁共振(MR)成像可以在体外检测出混合物中少至10%的B16 / DNS细胞。重要的是,DNS-CLIO与B16 / DNS肿瘤特异性结合,从而显着降低了信号强度。 DNS量子点也显示了相似的结果,DNS量子点在体外和体内都专门针对CT26 / DNS细胞,但不控制CT26 / phOx细胞。这些结果表明,DNS纳米颗粒可以通过可行的成​​像系统全身监测DNS受体在体内的表达。该靶向策略可以提供有价值的工具来评估不同基因递送系统的功效和特异性,并优化临床中的基因治疗方案。

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