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Interactions of a Water-Soluble Glycofullerene with Glucose Transporter 1. Analysis of the Cellular Effects on a Pancreatic Tumor Model

机译:水溶性甘油蛋白与葡萄糖转运蛋白的相互作用1.分析胰腺肿瘤模型的细胞作用

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摘要

In recent years, carbon nanomaterials have been intensively investigated for their possible applications in biomedical studies, especially as drug delivery vehicles. Several surface modifications can modulate the unique molecular structure of [60]fullerene derivatives, as well as their physicochemical properties. For this reason, covalent modifications that would enable a greater water solubilization of the fullerene buckyball have been rapidly investigated. The most exciting applications of fullerene nanomaterials are as drug delivery vectors, photosensitizers in photodynamic therapy (PDT), astransfection or MRI contrast agents, antimicrobials and antioxidants. From these perspectives, the glucose derivatives of [60]fullerene seem to be an interesting carbon nanomaterial for biological studies. It is well-known that cancer cells are characterized by an increased glucose uptake and it has also been previously reported that the glucose transporters (GLUTs) are overexpressed in several types of cancers, which make them attractive molecular targets for many drugs. This study explored the use of a highly water-soluble glycofullerene (called Sweet-C60) in pancreatic cancer studies. Here, we describe the PANC-1 cell proliferation, migration, metabolic activity and glycolysis rate after incubations with different concentrations of  Sweet-C60. The final results did not show any influence of the Sweet-C60 on various cancer cellular events and glycolysis, suggesting that synthesized glycofullerene is a promising drug delivery vehicle for treating pancreatic cancer.
机译:近年来,碳纳米材料被密集地研究了他们在生物医学研究中可能的应用,特别是作为药物递送载体。几种表面改性可以调节[60]富勒烯衍生物的独特分子结构,以及它们的物理化学性质。因此,已经迅速研究了能够使富勒烯Buckyball的更大水溶性的共价修饰。富勒烯纳米材料最令人兴奋的应用是药物递送载体,光动力疗法(PDT),山毒糖或MRI造影剂,抗微生物和抗氧化剂中的光敏剂。从这些观点来看,[60]富勒烯的葡萄糖衍生物似乎是一种有趣的生物学研究碳纳米材料。众所周知,癌细胞的特征在于葡萄糖摄取增加,并且还报道了葡萄糖转运蛋白(凝乳)在几种类型的癌症中过表达,这使得许多药物具有吸引力的分子靶标。本研究探讨了在胰腺癌研究中使用高度水溶性的糖蛋白酶(称为甜味C60)。在这里,我们描述了与不同浓度的甜叔C60一起孵育后的Panc-1细胞增殖,迁移,代谢活性和糖酵解率。最终结果并未显示甜味-C60对各种癌症细胞事件和糖酵解的任何影响,这表明合成的Glycullerene是治疗胰腺癌的有望的药物递送型载体。

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