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Drug Delivery System and Breast Cancer Cells

机译:药物递送系统和乳腺癌细胞

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Recently, nanomedicine has received increasing attention for its ability to improve the efficacy of cancer therapeutics. Nanosized polymer therapeutic agents offer the advantage of prolonged circulation in the blood stream, targeting to specific sites, improved efficacy and reduced side effects. In this way, local, controlled delivery of the drug will be achieved with the advantage of a high concentration of drug release at the target site while keeping the systemic concentration of the drug low, thus reducing side effects due to bioaccumulation. Various drug delivery systems such as nanoparticles, liposomes, microparticles and implants have been demonstrated to significantly enhance the preventive/therapeutic efficacy of many drugs by increasing their bioavailability and targetability. As these carriers significantly increase the therapeutic effect of drugs, their administration would become less cost effective in the near future. The purpose of our research work is to develop a delivery system for breast cancer cells using a microvector of drugs. These results highlight the potential uses of these responsive platforms suited for biomedical and pharmaceutical applications.
机译:近日,纳米医生已经收到了提高癌症治疗剂疗效的能力。纳米化聚合物治疗剂提供血流延长循环的优势,靶向特定位点,提高疗效和减少副作用。以这种方式,将通过在靶位点处的高浓度的药物释放的优点来实现药物的局部受控递送,同时保持药物的全身浓度低,因此降低了由于生物累积而降低副作用。已经证明了各种药物递送系统,例如纳米颗粒,脂质体,微粒和植入物,以通过提高其生物利用度和靶性来显着提高许多药物的预防/治疗效果。由于这些载体显着提高了药物的治疗效果,因此在不久的将来,他们的政府将变得较低。我们的研究工作的目的是使用药物的微伏制作用于乳腺癌细胞的输送系统。这些结果突出了适用于生物医学和药物应用的这些响应平台的潜在用途。

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