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多价性在纳米颗粒靶向转铁蛋白受体用于癌症治疗中的复杂作用。

The complex role of multivalency in nanoparticles targeting the transferrin receptor for cancer therapies.

机构信息

Departments of Chemistry, University of North Carolina, Chapel Hill, NC 27599, USA.

出版信息

J Am Chem Soc. 2010 Aug 18;132(32):11306-13. doi: 10.1021/ja1043177.

Abstract

Transferrin receptor (TfR, CD71) has long been a therapeutic target due to its overexpression in many malignant tissues. In this study, PRINT() nanoparticles were conjugated with TfR ligands for targeted drug delivery. Cylindrical poly(ethylene glycol)-based PRINT nanoparticles (diameter (d) = 200 nm, height (h) = 200 nm) labeled with transferrin receptor antibody (NP-OKT9) or human transferrin (NP-hTf) showed highly specific TfR-mediated uptake by all human tumor cell lines tested, relative to negative controls (IgG1 for OKT9 or bovine transferrin (bTf) for hTf). The targeting efficiency was dependent on particle concentration, ligand density, dosing time, and cell surface receptor expression level. Interestingly, NP-OKT9 or NP-hTf showed little cytotoxicity on all solid tumor cell lines tested but were very toxic to Ramos B-cell lymphoma, whereas free OKT9 or hTf was not toxic. There was a strong correlation between TfR ligand density on the particle surface and cell viability and particle uptake. NP-OKT9 and NP-hTf were internalized into acidic intracellular compartments but were not localized in EEA1-enriched early endosomes or lysosomes. Elevated caspase 3/7 activity indicates activation of apoptosis pathways upon particle treatment. Supplementation of iron suppressed the toxicity of NP-OKT9 but not NP-hTf, suggesting different mechanisms by which NP-hTf and NP-OKT9 exerts cytotoxicity on Ramos cells. On the basis of such an observation, the complex role of multivalency in nanoparticles is discussed. In addition, our data clearly reveal that one must be careful in making claims of "lack of toxicity" when a targeting molecule is used on nanoparticles and also raise concerns for unanticipated off-target effects when one is designing targeted chemotherapy nanodelivery agents.

摘要

转铁蛋白受体(TfR,CD71)在许多恶性组织中过度表达,因此长期以来一直是治疗的靶点。在这项研究中,PRINT()纳米颗粒与 TfR 配体缀合用于靶向药物递送。用转铁蛋白受体抗体(NP-OKT9)或人转铁蛋白(NP-hTf)标记的圆柱形聚乙二醇(PEG)基 PRINT 纳米颗粒(直径(d)=200nm,高度(h)=200nm)显示出对所有测试的人类肿瘤细胞系的高度特异性 TfR 介导摄取,相对于阴性对照(OKT9 的 IgG1 或 hTf 的牛转铁蛋白(bTf))。靶向效率取决于颗粒浓度、配体密度、给药时间和细胞表面受体表达水平。有趣的是,NP-OKT9 或 NP-hTf 对所有测试的实体瘤细胞系均显示出低细胞毒性,但对 Ramos B 细胞淋巴瘤非常有毒,而游离 OKT9 或 hTf 则没有毒性。颗粒表面 TfR 配体密度与细胞活力和颗粒摄取之间存在很强的相关性。NP-OKT9 和 NP-hTf 被内化到酸性细胞内隔室中,但不定位在富含 EEA1 的早期内体或溶酶体中。升高的 caspase 3/7 活性表明颗粒处理后激活了凋亡途径。铁的补充抑制了 NP-OKT9 的毒性,但不抑制 NP-hTf 的毒性,这表明 NP-hTf 和 NP-OKT9 对 Ramos 细胞产生细胞毒性的机制不同。基于这样的观察结果,讨论了纳米颗粒中多价的复杂作用。此外,我们的数据清楚地表明,当在纳米颗粒上使用靶向分子时,必须小心地声称“缺乏毒性”,并且在设计靶向化疗纳米递药剂时,必须考虑到意想不到的脱靶效应。

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