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糖蛋白结合的 pH 响应介孔硅纳米颗粒用于靶向骨癌治疗。

Lectin-conjugated pH-responsive mesoporous silica nanoparticles for targeted bone cancer treatment.

机构信息

Dpto. Química Inorgánica y Bioinorgánica, Universidad Complutense de Madrid, Instituto de Investigación Sanitaria, Hospital 12 de Octubre i+12, Plaza Ramón y Cajal s/n, 28040 Madrid, Spain; CIBER de Bioingeniería, Biomateriales y Nanomedicina, CIBER-BBN, Madrid, Spain.

Dpto. Química Inorgánica y Bioinorgánica, Universidad Complutense de Madrid, Instituto de Investigación Sanitaria, Hospital 12 de Octubre i+12, Plaza Ramón y Cajal s/n, 28040 Madrid, Spain; CIBER de Bioingeniería, Biomateriales y Nanomedicina, CIBER-BBN, Madrid, Spain.

出版信息

Acta Biomater. 2018 Jan;65:393-404. doi: 10.1016/j.actbio.2017.11.007. Epub 2017 Nov 7.

Abstract

UNLABELLED

A novel multifunctional nanodevice based in doxorubicin (DOX)-loaded mesoporous silica nanoparticles (MSNs) as nanoplatforms for the assembly of different building blocks has been developed for bone cancer treatment. These building blocks consists of: i) a polyacrylic acid (PAA) capping layer grafted to MSNs via an acid-cleavable acetal linker, to minimize premature cargo release and provide the nanosystem of pH-responsive drug delivery ability; and ii) a targeting ligand, the plant lectin concanavalin A (ConA), able to selectively recognize, bind and internalize owing to certain cell-surface glycans, such as sialic acids (SA), overexpressed in given tumor cells. This multifunctional nanosystem exhibits a noticeable higher internalization degree into human osteosarcoma cells (HOS), overexpressing SA, compared to healthy preosteoblast cells (MC3T3-E1). Moreover, the results indicate that small DOX loading (2.5 µg mL) leads to almost 100% of osteosarcoma cell death in comparison with healthy bone cells, which significantly preserve their viability. Besides, this nanodevice has a cytotoxicity on tumor cells 8-fold higher than that caused by the free drug. These findings demonstrate that the synergistic combination of different building blocks into a unique nanoplatform increases antitumor effectiveness and decreases toxicity towards normal cells. This line of attack opens up new insights in targeted bone cancer therapy.

STATEMENT OF SIGNIFICANCE

The development of highly selective and efficient tumor-targeted smart drug delivery nanodevices remains a great challenge in nanomedicine. This work reports the design and optimization of a multifunctional nanosystem based on mesoporous silica nanoparticles (MSNs) featuring selectivity towards human osteosarcoma cells and pH-responsive antitumor drug delivery capability. The novelty and originality of this manuscript relies on proving that the synergistic assembly of different building blocks into a unique nanoplatform increases antitumor effectiveness and decreases toxicity towards healthy cells, which constitutes a new paradigm in targeted bone cancer therapy.

摘要

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一种新型多功能纳米装置,以负载多柔比星(DOX)的介孔硅纳米粒子(MSNs)为纳米平台,用于组装不同的构建块,用于骨癌治疗。这些构建块包括:i)通过酸可裂解缩醛键接枝到 MSNs 上的聚丙烯酸(PAA)封端层,以最小化过早的货物释放并提供纳米系统的 pH 响应药物输送能力;和 ii)靶向配体,植物凝集素伴刀豆球蛋白 A(ConA),由于某些肿瘤细胞表面糖链(如唾液酸(SA))的存在,能够选择性地识别、结合和内化。这种多功能纳米系统显示出更高的内化程度进入人骨肉瘤细胞(HOS),与健康成骨前体细胞(MC3T3-E1)相比,表达 SA。此外,结果表明,与健康骨细胞相比,小剂量 DOX 负载(2.5µg•mL)导致骨肉瘤细胞几乎 100%死亡,显著保留了它们的活力。此外,这种纳米装置对肿瘤细胞的细胞毒性比游离药物高 8 倍。这些发现表明,不同构建块的协同组合成一个独特的纳米平台增加了抗肿瘤的有效性,并降低了对正常细胞的毒性。这种攻击策略为靶向骨癌治疗开辟了新的思路。

意义声明

开发高度选择性和高效的肿瘤靶向智能药物输送纳米装置仍然是纳米医学的一大挑战。本工作报道了一种基于介孔硅纳米粒子(MSNs)的多功能纳米系统的设计和优化,该系统具有对人骨肉瘤细胞的选择性和 pH 响应性抗肿瘤药物输送能力。本手稿的新颖性和原创性在于证明了不同构建块的协同组装成一个独特的纳米平台增加了抗肿瘤的有效性,并降低了对健康细胞的毒性,这构成了靶向骨癌治疗的一个新范例。

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