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通过尺寸选择的水相 AgInS/ZnS 量子点对 2D 和 3D 组织模型进行可视化。

Visualization of 2D and 3D Tissue Models via Size-Selected Aqueous AgInS/ZnS Quantum Dots.

机构信息

Saratov State University, 410012 Saratov, Russia.

Fudan University, 200000 Shanghai, China.

出版信息

ACS Appl Mater Interfaces. 2024 Aug 7;16(31):40483-40498. doi: 10.1021/acsami.4c05681. Epub 2024 Jul 26.

DOI:10.1021/acsami.4c05681
PMID:39058959
Abstract

Three-dimensional (3D) spheroid cell cultures of fibroblast (L929) and tumor mammary mouse (4T1) were chosen as in vitro tissue models for tissue imaging of ternary AgInS/ZnS fraction quantum dots (QDs). We showed that the tissue-mimetic morphology of cell spheroids through well-developed cell-cell and cell-matrix interactions and distinct diffusion/transport characteristics makes it possible to predict the effect of ternary AgInS/ZnS fraction QDs on the vital activity of cells while simultaneously comparing with classical two-dimensional (2D) cell cultures. The AgInS/ZnS fractions, emitting in a wide spectral range from 635 to 535 nm with a mean size from ∼3.1 ± 0.8 to ∼1.8 ± 0.4 nm and a long photoluminescence lifetime, were separated from the initial QD ensemble by using antisolvent-induced precipitation. For ternary AgInS/ZnS fraction QDs, the absence of toxicity at different QD concentrations was demonstrated on 2D and 3D cell structures. QDs show a robust correlation between numerous factors: their sizes in biological fluids over time, penetration capabilities into 2D and 3D cell structures, and selectivity with respect to penetration into cancerous and healthy cell spheroids. A reproducible protocol for the preparation of QDs along with their unique biological properties allows us to consider ternary AgInS/ZnS fraction QDs as attractive fluorescent contrast agents for tissue imaging.

摘要

选择成纤维细胞(L929)和乳腺癌鼠(4T1)的三维(3D)球体细胞培养物作为三元 AgInS/ZnS 分量子点(QD)的组织成像的体外组织模型。我们表明,通过发达的细胞-细胞和细胞-基质相互作用以及明显的扩散/传输特性,细胞球体的组织模拟形态使得有可能预测三元 AgInS/ZnS 分 QD 对细胞活力的影响,同时与经典的二维(2D)细胞培养进行比较。AgInS/ZnS 分,在 635 到 535nm 的宽光谱范围内发射,平均尺寸为 3.1 ± 0.8 到 1.8 ± 0.4nm,光致发光寿命长,通过反溶剂诱导沉淀从初始 QD 集合体中分离出来。对于三元 AgInS/ZnS 分 QD,在不同 QD 浓度下,在 2D 和 3D 细胞结构上均未显示出毒性。QD 显示出许多因素之间的稳健相关性:它们在生物流体中的大小随时间变化,穿透 2D 和 3D 细胞结构的能力以及对穿透癌细胞和健康细胞球体的选择性。QD 的制备可重现的方案及其独特的生物学特性使我们能够将三元 AgInS/ZnS 分 QD 视为组织成像有吸引力的荧光对比剂。

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