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Alkalization of Tumor Microenvironment for Cancer Treatment

机译:癌症治疗肿瘤微环境的碱化

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The paper is devoted to describing how boehmite, magnesium hydroxide and calcium hydroxide nanoparticles in the form of nanoplates with a size of 20-200 nm having cytotoxic properties to tumor cells were synthesized. It is shown that calcium hydroxide has the highest cytotoxicity, while boehmite has the lowest one. The characterization of the synthesized nanostructures demonstrated that the major antitumor factors probably are the acid-base surface properties. It is established that calcium hydroxide raises the pH of the cell culture medium up to 12.8, magnesium hydroxide-up to 10.8, boehmite-up to 8.6. At the same time, synthesized nanoplates are less toxic to the normal cell lines. The approach presented can be used for synthesis of materials that are able to change tumor cells microenvironment acidity in the defined range for anticancer therapy, and also potentiating standard chemotherapy drugs effect due to extracellular acidosis decreasing.
机译:本文致专用于描述甲型矿,纳米镁和氢氧化钙纳米粒子的纳米层,其尺寸为20-200nm,其具有对肿瘤细胞的细胞毒性特性。结果表明,氢氧化钙具有最高的细胞毒性,而Boehmite具有最低的细胞毒性。合成纳米结构的表征证明主要抗肿瘤因子可能是酸碱表面性质。建立氢氧化钙将细胞培养基的pH升高至12.8,氢氧化镁 - 高达10.8,勃姆石高达8.6。同时,合成的纳米间电压板对正常细胞系毒性较小。所呈现的方法可用于合成能够在抗癌疗法范围内改变肿瘤细胞微环境酸度的材料,并且还具有由于细胞外酸中毒减少而增强标准化疗药物的作用。

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