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泊洛沙姆包衣对胶质母细胞瘤和胚胎肾模型中碳点体外毒性的影响

The Effect of Poloxamer Coating on the Toxicity of Carbon Dots in Glioblastoma and Embryonic Kidney Models In Vitro.

作者信息

Kudelkina V V, Musaeva D U, Syu A V, Kopylov A N, Kosyreva A M, Alekseeva A I, Makarova O V, Timoshenko V Yu

机构信息

Petrovsky National Research Center of Surgery, Avtsyn Research Institute of Human Morphology, Moscow, Russia.

Skolkovo Institute of Science and Technology, Moscow, Russia.

出版信息

Bull Exp Biol Med. 2025 Feb;178(4):491-495. doi: 10.1007/s10517-025-06362-6. Epub 2025 Mar 26.

Abstract

Carbon dots (CDs), produced by microwave or hydrothermal synthesis, are low-toxic, carbon-based semiconductor nanoparticles that can be used for imaging of biological objects and antitumor therapy. To impart new functional properties to the CDs for biomedical purposes, they are coated with surfactants, such as poloxamers or pluronics. These are block copolymers of polyoxyethylene and polyoxypropylene. We assessed the cytotoxicity of CDs with and without surfactant coatings in in vitro experiments conducted on mouse glioblastoma M6 and human kidney embryonic HEK293 cell lines. The cell viability evaluated in MTT test and morphological study showed that CDs at concentrations of 0.45 and 0.88 mg/ml without a surfactant coating did not significantly inhibit the growth of HEK293 or M6 cells. However, CDs coated with surfactant (1% poloxamer solution) at a concentration of 0.65 mg/ml significantly reduced the metabolic activity of both cell lines. Thus, the use of a surfactant-coated CDs reduced the metabolic activity of cells. This, combined with their luminescent properties, can be used for both the simultaneous therapy and diagnosis of tumors.

摘要

通过微波或水热合成制备的碳点(CDs)是低毒的碳基半导体纳米颗粒,可用于生物物体成像和抗肿瘤治疗。为了赋予碳点新的生物医学功能特性,会用表面活性剂(如泊洛沙姆或普朗尼克)对其进行包覆。这些是聚氧乙烯和聚氧丙烯的嵌段共聚物。我们在对小鼠胶质母细胞瘤M6和人肾胚胎HEK293细胞系进行的体外实验中评估了有无表面活性剂涂层的碳点的细胞毒性。MTT试验和形态学研究评估的细胞活力表明,浓度为0.45和0.88 mg/ml且无表面活性剂涂层的碳点不会显著抑制HEK293或M6细胞的生长。然而,浓度为0.65 mg/ml且涂有表面活性剂(1%泊洛沙姆溶液)的碳点显著降低了两种细胞系的代谢活性。因此,使用表面活性剂包覆的碳点降低了细胞的代谢活性。这与其发光特性相结合,可用于肿瘤的同步治疗和诊断。

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