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Gold-mediated Drug Delivery for Improved Outcome in Chemotherapy

机译:黄金介导的药物递送可改善化疗的疗效

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Nanoparticles can be used to overcome the side effects due to poor distribution of anticancer drugs. Among other NPs, colloidal gold nanoparticles (GNPs) offer the possibility of transporting major quantities of drugs due to their large surface-to volume ratio while confining anticancer drugs as closely as possible to their biological targets through passive and active targeting ensuring limited harmful systemic distribution. In this study, we chose bleomycin (BLM) as the anticancer drug since its therapeutic efficiency is severely limited because of its side effects. Bleomycin was conjugated to GNPs through a thiol bond. The effectiveness of the chemotherapeutic drug, bleomycin, is observed by visualizing DNA double strand breaks and calculating the survival fraction. The action of the drug is known to be in the nucleus and our experiments have shown GNPs in the nucleus along with bleomycin. Use of GNPs to deliver bleomycin increased the therapeutic efficacy of the drug. Having a better understanding of the interaction of GNPs and drugs will establish a more successful NP-based platform for combined therapeutic approach in cancer research since GNPs can be used as radiation dose enhancers.
机译:纳米颗粒可用于克服由于抗癌药物分布不均而引起的副作用。在胶体金纳米颗粒(NPs)中,胶体金纳米颗粒(GNP)的表面积与体积之比大,提供了运输大量药物的可能性,同时通过被动和主动靶向确保尽可能有限的有害全身分布,将抗癌药物限制在尽可能接近其生物学靶标的范围。在这项研究中,我们选择博来霉素(BLM)作为抗癌药,因为其副作用严重限制了其治疗效果。博来霉素通过硫醇键与GNP结合。通过可视化DNA双链断裂并计算存活分数,观察到了化疗药物博来霉素的有效性。已知该药物的作用是在细胞核中,我们的实验表明核素中的GNP与博来霉素一起。使用GNP递送博来霉素可提高药物的治疗功效。对GNP和药物相互作用的更好理解将为癌症研究中的联合治疗方法建立一个更成功的基于NP的平台,因为GNP可用作辐射剂量增强剂。

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