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Ultrasound- and Protein-Receptor-Targeting in Cancer Treatment

机译:癌症治疗中的超声波和蛋白质受体靶向

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The main disadvantage of chemotherapy for cancer treatment is that the drug is delivered throughout the body, causing various side effects. A plausible solution to overcome these unwanted effects is to use "smart" molecular vehicles to sequester the therapeutic drug in a p ackage and release it to the specific tumor site at the appropriate time. In so doing, the drug will have minimal interactions with healthy cells in the body, thus reducing many of the unwanted side effects associated with conventional chemotherapy, increasing the efficacy of the drug, and greatly improving the quality of life for cancer patients. The "smart" drug delivery system that we envision encapsulates the chemical drug in an ano-sized capsule which is tagged with a molecular recognition moiety specific for cancer cells. Once it reaches the tumor site, ultrasound is applied to release the chemotherapeutic agent directly to the cancer site. We have synthesized new chemotherapy carriers with conjugated target proteins. T hese target molecules (including Albumin and plasminogen) have a higher affinity towards cancerous tissues than normal healthy cells and thus will lead the cancer drug to the tumor site. In particular, Albumin targets prostate cancer cells, while plasminogen molecules target certain types of colorectal cancers. Both of these cancers are currently among the most prevalent in the world. After synthesis, our research group used different ultrasound parameters (frequency, power intensity, pulse duration) to release the carriers' contents.
机译:癌症治疗的化疗的主要缺点是药物在整个身体中递送,导致各种副作用。克服这些不需要的效果的合理解决方案是使用“智能”分子载体在P Ackage中螯合治疗药物,并在适当的时间将其释放到特定的肿瘤部位。在这样做时,该药物将与身体中健康细胞的相互作用最小,从而减少了与常规化疗相关的许多不需要的副作用,增加了药物的功效,以及大大提高癌症患者的生活质量。我们设想的“智能”药物递送系统将化学药物封装在一种肿瘤中,用对癌细胞的分子识别部分标记标记。一旦它到达肿瘤部位,施加超声以将化学治疗剂直接释放到癌症遗迹。我们已经合成了具有共轭靶蛋白的新化疗载体。 T Hese Target分子(包括白蛋白和纤溶酶原)对癌组织具有比正常健康细胞更高的亲和力,因此将癌症药物引导至肿瘤部位。特别是,白蛋白靶向前列腺癌细胞,而纤溶酶原分子靶向某些类型的结肠直肠癌。这两种癌症目前都是世界上最普遍的。合成后,我们的研究组使用了不同的超声参数(频率,功率强度,脉冲持续时间)来释放载体的内容。

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