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Optical properties and biomedical applications of gold nanorods / 国际生物医学工程杂志
International Journal of Biomedical Engineering ; (6): 151-156, 2021.
Article in Chinese | WPRIM | ID: wpr-907408
ABSTRACT
In recent years, the research on gold nanoparticles has made great progress. Gold nanoparticles with different morphologies have good application prospects in drug delivery and tumor treatment. Some gold nanoparticles have entered the stage of clinical trials. Gold nanorods have become important research objects due to their special optical properties and photothermal treatment potential. In this paper, the optical properties and main applications of gold nanorods were reviewed. Gold nanorods have good surface modifiable properties and can be modified through surface ligand exchange to improve their biocompatibility. The photothermal properties of gold nanorods can be improved by adjusting the aspect ratio to adjust the surface plasmon resonance (SPR) peak to achieve near-infrared light excitation. These characteristics make gold nanorods show good application prospects in the detection of biological macromolecules, real-time imaging in vivo, and early diagnosis and treatment of tumors. Using gold nanorods as a carrier and modified with different targeting molecules can improve the targeting of its drug delivery system and reduce damage to normal cells, so as to realize the combined application of chemotherapy and photothermal therapy, and finally achieve a better therapeutic effect. Combining gold nanorods with stem cells or certain specific biomolecules can form a hybrid gold nanorod system which provides new ideas for further improving the efficiency of tumor treatment.

Full text: Available Index: WPRIM (Western Pacific) Type of study: Screening study Language: Chinese Journal: International Journal of Biomedical Engineering Year: 2021 Type: Article

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Full text: Available Index: WPRIM (Western Pacific) Type of study: Screening study Language: Chinese Journal: International Journal of Biomedical Engineering Year: 2021 Type: Article