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高通量筛选表面工程化菁纳米点用于治疗性抗体主动转运进入实体瘤。

High-Throughput Screening of Surface Engineered Cyanine Nanodots for Active Transport of Therapeutic Antibodies into Solid Tumor.

机构信息

Zhejiang Key Laboratory of Smart Biomaterials and Key Laboratory of Biomass Chemical Engineering of Ministry of Education, College of Chemical and Biological Engineering, Zhejiang University, Hangzhou, 310027, China.

ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou, 311200, China.

出版信息

Adv Mater. 2024 Mar;36(9):e2302292. doi: 10.1002/adma.202302292. Epub 2023 Dec 17.

Abstract

The successful delivery of therapeutic biomacromolecules into solid tumor holds great challenge due to their high resistance to penetrate through the complex tumor microenvironments. Here, active-transporting nanoparticles are harnessed to efficiently deliver biomacromolecular drugs into solid tumors through cell transcytosis. A series of molecularly precise cyanine 5-cored polylysine G5 dendrimers (Cy5 nanodots) with different peripheral amino acids (G5-AA) is prepared. The capability of these positively charged nanodots to induce cell endocytosis, exocytosis, and transcytosis is evaluated via fluorescence-based high-throughput screen. The optimized nanodots (G5-R) are conjugated with αPD-L1 (a therapeutic monoclonal antibody binding to programmed-death ligand 1) (αPD-L1-G5-R) to demonstrate the nanoparticle-mediated tumor active transport. The αPD-L1-G5-R can greatly enhance the tumor-penetration capability through adsorption-mediated transcytosis (AMT). The effectiveness of αPD-L1-G5-R is tested in treating mice bearing partially resected CT26 tumors, mimicking the local immunotherapy of residual tumors post-surgery in clinic. The αPD-L1-G5-R embedded in fibrin gel can efficiently mediate tumor cell transcytosis, and deliver αPD-L1 throughout the tumor, thereby enhancing immune checkpoint blockade, reducing tumor recurrence, and significantly prolonging the survival time. The active-transporting nanodots are promising platforms for efficient tumor delivery of therapeutic biomacromolecules.

摘要

由于治疗性生物大分子具有很高的穿透复杂肿瘤微环境的阻力,因此将其递送到实体瘤中是一个巨大的挑战。在这里,主动转运纳米颗粒被用于通过细胞胞吞作用将生物大分子药物有效地递送到实体瘤中。一系列具有不同外围氨基酸(G5-AA)的分子精确的Cy5 核聚赖氨酸 G5 树枝状大分子(Cy5 纳米点)被制备。通过基于荧光的高通量筛选评估这些带正电荷的纳米点诱导细胞内吞作用、胞吐作用和胞转作用的能力。优化的纳米点(G5-R)与 αPD-L1(与程序性死亡配体 1 结合的治疗性单克隆抗体)(αPD-L1-G5-R)偶联,以证明纳米颗粒介导的肿瘤主动转运。αPD-L1-G5-R 可以通过吸附介导的胞转作用(AMT)大大增强肿瘤穿透能力。在部分切除 CT26 肿瘤的小鼠中测试了 αPD-L1-G5-R 的有效性,模拟了临床手术后残留肿瘤的局部免疫治疗。嵌入纤维蛋白凝胶中的 αPD-L1-G5-R 可以有效地介导肿瘤细胞胞转作用,并将 αPD-L1 递送到整个肿瘤中,从而增强免疫检查点阻断,减少肿瘤复发,并显著延长生存时间。主动转运纳米点是治疗性生物大分子有效递送到肿瘤的有前途的平台。

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