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Synergistic Effect of Cold Atmospheric Plasma and Drug Loaded Core-shell Nanoparticles on Inhibiting Breast Cancer Cell Growth

机译:冷大气等离子体和载药核壳纳米颗粒对乳腺癌细胞生长的协同作用

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摘要

Nano-based drug delivery devices allowing for effective and sustained targeted delivery of therapeutic agents to solid tumors have revolutionized cancer treatment. As an emerging biomedical technique, cold atmospheric plasma (CAP), an ionized non-thermal gas mixture composed of various reactive oxygen species, reactive nitrogen species, and UV photons, shows great potential for cancer treatment. Here we seek to develop a new dual cancer therapeutic method by integrating promising CAP and novel drug loaded core-shell nanoparticles and evaluate its underlying mechanism for targeted breast cancer treatment. For this purpose, core-shell nanoparticles were synthesized via co-axial electrospraying. Biocompatible poly (lactic-co-glycolic acid) was selected as the polymer shell to encapsulate anti-cancer therapeutics. Results demonstrated uniform size distribution and high drug encapsulation efficacy of the electrosprayed nanoparticles. Cell studies demonstrated the effectiveness of drug loaded nanoparticles and CAP for synergistic inhibition of breast cancer cell growth when compared to each treatment separately. Importantly, we found CAP induced down-regulation of metastasis related gene expression (VEGF, MTDH, MMP9, and MMP2) as well as facilitated drug loaded nanoparticle uptake which may aid in minimizing drug resistance-a major problem in chemotherapy. Thus, the integration of CAP and drug encapsulated nanoparticles provides a promising tool for the development of a new cancer treatment strategy.
机译:基于纳米的药物递送装置允许将治疗剂有效且持续地靶向递送至实体瘤,彻底改变了癌症治疗。作为一种新兴的生物医学技术,冷大气等离子体(CAP)是一种由多种活性氧,活性氮和紫外线光子组成的电离非热气体混合物,具有巨大的癌症治疗潜力。在这里,我们寻求通过整合有前途的CAP和新型载药核壳纳米粒子,开发一种新型的双重癌症治疗方法,并评估其靶向乳腺癌治疗的潜在机制。为此目的,通过同轴电喷雾合成核-壳纳米颗粒。选择生物相容性聚(乳酸-乙醇酸共聚物)作为包裹抗癌治疗剂的聚合物外壳。结果表明,电喷雾纳米颗粒具有均匀的尺寸分布和较高的药物封装功效。细胞研究表明,与每种疗法分别比较时,载有药物的纳米颗粒和CAP可以有效抑制乳腺癌细胞的生长。重要的是,我们发现CAP诱导了与转移相关的基因表达(VEGF,MTDH,MMP9和MMP2)的下调,并且促进了载药纳米颗粒的吸收,这可能有助于最大程度地降低耐药性,这是化疗中的一个主要问题。因此,CAP和药物包封的纳米颗粒的整合为开发新的癌症治疗策略提供了有希望的工具。

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