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首页> 外文期刊>Nanoscale >Improving DNA double-strand repair inhibitor KU55933 therapeutic index in cancer radiotherapy using nanoparticle drug delivery
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Improving DNA double-strand repair inhibitor KU55933 therapeutic index in cancer radiotherapy using nanoparticle drug delivery

机译:改善修复DNA双链抑制剂在癌症放疗KU55933治疗指数使用纳米药物输送

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摘要

Radiotherapy is a key component of cancer treatment. Because of its importance, there has been high interest in developing agents and strategies to further improve the therapeutic index of radiotherapy. DNA double-strand repair inhibitors (DSBRIs) are among the most promising agents to improve radiotherapy. However, their clinical translation has been limited by their potential toxicity to normal tissue. Recent advances in nanomedicine offer an opportunity to overcome this limitation. In this study, we aim to demonstrate the proof of principle by developing and evaluating nanoparticle (NP) formulations of KU55933, a DSBRI. We engineered a NP formulation of KU55933 using nanoprecipitation method with different lipid polymer nanoparticle formulation. NP KU55933 using PLGA formulation has the best loading efficacy as well as prolonged drug release profile. We demonstrated that NP KU55933 is a potent radiosensitizer in vitro using clonogenic assay and is more effective as a radiosensitizer than free KU55933 in vivo using mouse xenograft models of non-small cell lung cancer (NSCLC). Western blots and immunofluorescence showed NP KU55933 exhibited more prolonged inhibition of DNA repair pathway. In addition, NP KU55933 leads to lower skin toxicity than KU55933. Our study supports further investigations using NP to deliver DSBRIs to improve cancer radiotherapy treatment.
机译:放射治疗癌症是一个关键组成部分治疗。在发展代理和高利息策略,以进一步提高治疗放射治疗指数。抑制剂(DSBRIs)是最有前途的代理提高放射治疗。临床翻译是有限的正常组织的潜在毒性。纳米技术的进步提供了一个机会克服这个限制。为了演示原理的证明开发和评估纳米颗粒(NP)DSBRI KU55933的配方。使用nanoprecipitation NP制定KU55933方法用不同的脂质聚合物纳米颗粒配方。最好的功效以及加载吗延长药物释放。NP KU55933是强有力的辐射敏化剂体外使用单独分析和比较比自由KU55933有效辐射敏化剂使用老鼠体内的异种移植模型非小细胞性肺癌(NSCLC)。免疫荧光显示NP KU55933展出更长期的抑制DNA修复途径。此外,NP KU55933导致较低的皮肤比KU55933毒性。使用NP提供DSBRIs调查提高癌症放疗治疗。

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