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通过治疗用桦褐孔菌提取物合成多孔钯纳米粒子,实现高效三模态癌症治疗。

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

机构信息

Department of Chemistry, Kwangwoon University, 20, Gwangwoon-ro, Nowon-gu, Seoul 01897, Republic of Korea.

出版信息

Nanoscale. 2018 Nov 1;10(42):19810-19817. doi: 10.1039/c8nr07172a.


DOI:10.1039/c8nr07172a
PMID:30334053
Abstract

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.

摘要

多孔钯纳米粒子被设计和合成,以最大限度地提高具有抗癌和抗菌活性的桦褐孔菌(Inonotus obliquus)提取物的药理活性。在本研究中,我们使用桦褐孔菌提取物浓度依赖性还原剂介导的合成,合成了具有紫外-可见-近红外全波长区域吸收的各向异性多孔 Pd 纳米结构。多孔 Pd 纳米粒子表现出表面桦褐孔菌提取物衍生的抗癌作用、通过静电相互作用控制阿霉素的递送以及在 808nm 激光照射下的光热转换效应。三种癌症治疗方法的联合应用清楚地证明了协同三模态治疗的可行性。本研究使用了 Pd(纳米催化剂的关键组成元素,但在生物应用中并不常见)作为平台,这表明可以利用 Pd 纳米结构进行多种应用,并为新的癌症治疗方法的开发提供了潜力。

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Pharmaceutics. 2024-9-3

[2]
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Nanotheranostics. 2024

[3]
Theoretical and experimental study on the photothermal effect of palladium nanoparticles based on a finite element model.

Lasers Med Sci. 2023-12-12

[4]
Nanoparticles in Cancer Diagnosis and Treatment.

Materials (Basel). 2023-7-30

[5]
Plasmonic nanotechnology for photothermal applications - an evaluation.

Beilstein J Nanotechnol. 2023-3-27

[6]
Diversity of Biogenic Nanoparticles Obtained by the Fungi-Mediated Synthesis: A Review.

Biomimetics (Basel). 2022-12-20

[7]
Recent Insights into NIR-Light-Responsive Materials for Photothermal Cell Treatments.

Nanomaterials (Basel). 2022-9-23

[8]
A Systemic Review on the Synthesis, Characterization, and Applications of Palladium Nanoparticles in Biomedicine.

Appl Biochem Biotechnol. 2023-6

[9]
Recent advances in porous nanostructures for cancer theranostics.

Nano Today. 2021-6

[10]
Palladium-based nanomaterials for cancer imaging and therapy.

Theranostics. 2020

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