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二维黑磷经带正电荷蛋白修饰后的稳定性和抗肿瘤活性评价。

Evaluation of stability and antitumor activity of two-dimensional black phosphorus modified with positively charged protein.

机构信息

Department of Biomedical Engineering, College of Engineering, Shantou University, Shantou, 515063, People's Republic of China.

出版信息

Nanotechnology. 2023 Jun 1;34(33). doi: 10.1088/1361-6528/acd647.

Abstract

Two-dimensional black phosphorus (2D BP), a novel 2D photoelectric material with excellent near-infrared optical absorption, biocompatibility, and degradability, has shown enormous potential in biomedical field. However, under the action of light, oxygen and water, 2D BP is easily degraded to phosphate and phosphonate. In this work, trastuzumab (Tmab) as a positively charged protein was used to modify 2D BP through electrostatic interaction to form BP-Tmab. The Tmab layer on the surface of 2D BP can effectively protect BP from water, which significantly enhanced the water stability of BP. PEGylated 2D BP (BP-PEG) as a control was also prepared. After 7 days in air-exposed water, the attenuation value of BP-Tmab was only 6.62 ± 2.72% at room temperature, which was much lower than that of naked 2D BP (52.47 ± 2.26%) and BP-PEG (25.84 ± 2.80%) under the same conditions. The result was further confirmed by the temperature changes at different time points under laser irradiation, suggesting that the degradation of BP was effectively reduced by Tmab modification. In addition, BP-Tmab displayed satisfactory biocompatibility and can effectively destroy cancer cells under laser irradiation, showing an excellent photothermal therapy effect.

摘要

二维黑磷(2D BP)是一种新型的二维光电材料,具有优异的近红外光吸收、生物相容性和可降解性,在生物医学领域显示出巨大的潜力。然而,在光、氧和水的作用下,2D BP 很容易降解为磷酸盐和膦酸盐。在这项工作中,曲妥珠单抗(Tmab)作为一种带正电荷的蛋白质,通过静电相互作用被用于修饰 2D BP 以形成 BP-Tmab。2D BP 表面的 Tmab 层可以有效地保护 BP 免受水的影响,显著提高了 BP 的水稳定性。作为对照,还制备了聚乙二醇化 2D BP(BP-PEG)。在空气中暴露于水 7 天后,BP-Tmab 在室温下的衰减值仅为 6.62 ± 2.72%,远低于相同条件下裸露 2D BP(52.47 ± 2.26%)和 BP-PEG(25.84 ± 2.80%)的衰减值。激光照射下不同时间点的温度变化进一步证实了这一结果,表明 Tmab 修饰有效地减少了 BP 的降解。此外,BP-Tmab 表现出令人满意的生物相容性,在激光照射下能有效破坏癌细胞,显示出优异的光热治疗效果。

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