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Stem cells as anticancer drug carrier to reduce the chemotherapy side effect

机译:干细胞作为抗癌药物载体减少化疗副作用

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Chemotherapy used for cancer treatment, due to the lack of specificity of drugs, is associated to various damaging side effects that have severe impact on patients' quality of life. Over the past 30 years, increasing efforts have been placed on optimizing chemotherapy dosing with the main goal of increasing antitumor efficacy while reducing drug-associated toxicity. A novel research shows that stem cells may act as a reservoir for the anticancer agent, which will subsequently release some of the drug's metabolites, or even the drug in its original form, in vicinity of the cancer cells. These cells may play a dual role in controlling drug toxicity depending on their capacity to uptake and release the chemotherapeutic drug. In our study, we show that Dental Pulp Stem Cells DPSCs are able to rapidly uptake Paclitaxel PTX, and to release it in the culture medium in a time-dependent manner. This resulting conditioned culture medium is to be transferred to breast cancer cells, the MCF-7. By applying Confocal Raman Microscopy, the anticancer drug uptake by the MCF-7 was measured. Surprisingly, the cancer cells -without any direct contact with PTX- showed a drug uptake. This proves that the stem cells carried and delivered the anticancer drug without its modification. It could be a revolution in chemotherapy to avoid the drug's side effects and increase its efficacy.
机译:由于缺乏药物特异性,用于癌症治疗的化学疗法与各种有害的副作用有关,这些副作用严重影响患者的生活质量。在过去的30年中,人们加大了对优化化疗剂量的投入,其主要目标是提高抗肿瘤功效,同时降低与药物相关的毒性。一项新的研究表明,干细胞可以充当抗癌剂的储存库,随后它会在癌细胞附近释放出某些药物的代谢产物,甚至释放出其原始形式的药物。这些细胞根据其吸收和释放化疗药物的能力,在控制药物毒性中可能起双重作用。在我们的研究中,我们显示了牙髓干细胞DPSC能够快速摄取紫杉醇PTX,并以时间依赖性方式将其释放到培养基中。所得的条件培养基将转移至乳腺癌细胞MCF-7。通过应用共聚焦拉曼显微镜,测量了MCF-7的抗癌药物吸收。令人惊讶地,没有直接与PTX接触的癌细胞显示出药物吸收。这证明干细胞不经修饰即可携带和递送抗癌药。为避免该药的副作用并提高其疗效,这可能是一场化学革命。

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