Marine-Integrated Bionics Research Center, Pukyong National University, Busan, 48513, Republic of Korea.
Department of Biomedical Engineering and Center for Marine-Integrated Biotechnology (BK21 Plus), Pukyong National University, Busan, 48513, Republic of Korea.
Sci Rep. 2018 Jan 11;8(1):500. doi: 10.1038/s41598-017-18966-8.
Palladium, a near-infrared plasmonic material has been recognized for its use in photothermal therapy as an alternative to gold nanomaterials. However, its potential application has not been explored well in biomedical applications. In the present study, palladium nanoparticles were synthesized and the surface of the particles was successfully modified with chitosan oligosaccharide (COS), which improved the biocompatibility of the particles. More importantly, the particles were functionalized with RGD peptide, which improves particle accumulation in MDA-MB-231 breast cancer cells and results in enhanced photothermal therapeutic effects under an 808-nm laser. The RGD peptide-linked, COS-coated palladium nanoparticles (Pd@COS-RGD) have good biocompatibility, water dispersity, and colloidal and physiological stability. They destroy the tumor effectively under 808-nm laser illumination at 2 W cm power density. Further, Pd@COS-RGD gives good amplitude of photoacoustic signals, which facilitates the imaging of tumor tissues using a non-invasive photoacoustic tomography system. Finally, the fabricated Pd@COS-RGD acts as an ideal nanotheranostic agent for enhanced imaging and therapy of tumors using a non-invasive near-infrared laser.
钯是一种近红外等离子体材料,由于其在光热疗法中作为金纳米材料的替代品的应用而受到关注。然而,其在生物医学应用中的潜在应用尚未得到充分探索。在本研究中,合成了钯纳米粒子,并成功地将其表面用壳寡糖(COS)修饰,从而提高了粒子的生物相容性。更重要的是,粒子被 RGD 肽功能化,这提高了粒子在 MDA-MB-231 乳腺癌细胞中的积累,从而在 808nm 激光下增强了光热治疗效果。RGD 肽偶联的、COS 包裹的钯纳米粒子(Pd@COS-RGD)具有良好的生物相容性、水分散性、胶体和生理稳定性。在 808nm 激光照射下,它们在 2W/cm 的功率密度下能有效破坏肿瘤。此外,Pd@COS-RGD 产生良好的光声信号幅度,这有利于使用非侵入性光声断层扫描系统对肿瘤组织进行成像。最后,所制备的 Pd@COS-RGD 作为一种理想的纳米治疗剂,用于使用非侵入性近红外激光增强肿瘤的成像和治疗。