Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, IBB 2310, 315 Ferst Drive NW, Atlanta, GA 30332, USA.
School of Chemical & Biomolecular Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA.
Biomater Sci. 2024 Oct 22;12(21):5582-5597. doi: 10.1039/d4bm00910j.
Lymph nodes (LNs) house a large proportion of the body's leukocytes. Accordingly, engineered nanomaterials are increasingly developed to direct therapeutics to LNs to enhance their efficacy. Yet while lymphatic delivery of nanomaterials to LNs upon locoregional injection has been extensively evaluated, nanomaterial delivery to LN-localized leukocytes after intravenous administration has not been systematically explored nor benchmarked. In this work, a panel of inert, fluorescent nanoscale tracers and drug delivery vehicles were utilized to interrogate intravenous locoregionally administered nanomaterial access to LNs and leukocyte subsets therein. Hydrodynamic size and material effects on LN accumulation extents were similar between intravenous intradermal injection routes. Nanomaterial distribution to various LN leukocyte subsets differed substantially with injection route, however, in a manner not proportional to total LN accumulation. While intravenously administered nanomaterials accumulated in LNs lowly compared to systemic tissues, in sharp contrast to locoregional delivery, they exhibited size-dependent but material-independent access to immune cells within the LN parenchyma, which are not easily accessed with locoregional delivery.
淋巴结 (LNs) 容纳了体内大量的白细胞。因此,越来越多的工程纳米材料被开发出来,以将治疗药物靶向淋巴结,从而提高其疗效。然而,尽管已经广泛评估了局部注射时纳米材料向 LNs 的淋巴递送来增强其疗效,但尚未系统地探索或基准化静脉内给药后纳米材料向 LN 定位白细胞的递送来增强其疗效。在这项工作中,一组惰性、荧光纳米级示踪剂和药物递送载体被用于研究静脉内和局部给药途径的纳米材料对 LNs 及其内部白细胞亚群的摄取。静脉内和皮内注射途径的 LN 积累程度的流体力学大小和材料效应相似。然而,纳米材料的分布到各种 LN 白细胞亚群的差异与注射途径有很大关系,但与总 LN 积累不成比例。虽然与全身组织相比,静脉内给药的纳米材料在 LNs 中的积累量较低,但与局部递送形成鲜明对比的是,它们具有依赖于尺寸但不依赖于材料的方式进入 LN 实质内的免疫细胞,而局部递送则不容易进入这些细胞。