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Synthesis of porous Pd nanoparticles by therapeutic chaga extract for highly efficient tri-modal cancer treatment

机译:合成的多孔钯纳米颗粒治疗白桦茸高效提取tri-modal癌症治疗

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Porous palladium nanoparticles were designed and synthesized to maximize the pharmacological activity of the chaga mushroom (Inonotus obliquus) extract, which has anticancer and antibacterial activities. In the present study, we synthesized anisotropic porous Pd nanostructures with ultraviolet-visible-near infrared whole wavelength region absorption using chaga extract concentration-dependent reductant-mediated synthesis. The porous Pd nanoparticles exhibited a surface chaga extract-derived anticancer effect, controlled delivery of doxorubicin through electrostatic interaction, and a photothermal conversion effect under 808 nm laser irradiation. The combined application of the three cancer treatment approaches clearly demonstrated the feasibility of synergistic tri-modal therapy. The present platform using Pd, which is a key constituent element of nanocatalysts but is not commonly used in biological applications, suggests numerous applications utilizing Pd nanostructures, as well as the potential development of new cancer therapies.
机译:设计和多孔钯纳米颗粒合成最大化药理活动的白桦茸蘑菇(纤孔菌属obliquus)提取,抗癌抗菌活性。我们合成了各向异性多孔Pd纳米结构与ultraviolet-visible-near整个红外波长区域吸收使用白桦茸萃取液浓度reductant-mediated合成。纳米粒子表面白桦茸展出extract-derived抗癌效果,控制交付通过静电阿霉素互动,和一种光热光谱分析转换效果在波长808纳米的激光辐照。三个癌症治疗的应用方法显然证明了可行性协同tri-modal疗法。平台使用Pd,这是一个关键组成部分nanocatalysts但不常用的元素在生物应用,表明许多应用程序利用Pd纳米结构新癌症的潜在发展疗法。

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