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Updated: Aug 7, 2026

Preparation and Photoacoustic Analysis of Cellular Vehicles Containing Gold Nanorods
Published on: May 2, 2016
Construction of Intelligent Responsive Drug Delivery System and Multi-Mode Imaging Based on Gold Nanodots
Ze Wang1, Yueqi Zhao1, Zhe Yang1
1State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, 130012, P. R. China.
Abstract:
Cancer remains a formidable global problem with a high mortality rate. There are many effective anti-cancer drugs in clinical use, among which paclitaxel (PTX) has good effects on non-small cell lung cancer, ovarian cancer, and breast cancer. However, when applied to the clinic, PTX still has many limitations, such as poor water solubility, drug resistance, and side effects on healthy tissues. A gold nanodots-paclitaxel-polylysine (AuNDs-PTX-PLL) core-shell nano-system of integrated diagnosis and treatment is constructed to achieve intelligent responsive drug delivery. On the one hand, the problem of poor water-solubility and drug resistance of PTX are solved. On the other hand, the nano-system has an excellent intelligent response effect. Drugs can only be released in the weakly acidic environment of the tumor, which reduces the damage and side effects to normal tissues. Moreover, the nano-system can be used for real-time tracking and auxiliary diagnosis for the tumor through the multi-mode imaging mode, such as fluorescence, photoacoustic, and computed tomography to achieve accurate visualization. The photothermal effect of AuNDs is beneficial to promote the release of drugs. The nano-system integrates multi-mode imaging, chemotherapy, intelligent drug release in tumor weakly acidic environment, and has excellent practical application prospects in tumor diagnosis and treatment.
Insights
A novel gold nanodots-paclitaxel-polylysine nano-system enhances cancer treatment by improving paclitaxel delivery and enabling intelligent drug release. This integrated diagnostic and therapeutic approach offers improved tumor visualization and reduced side effects.
Area of Science:
- Biomedical Engineering
- Nanotechnology
- Oncology
Background:
- Paclitaxel (PTX) is effective against lung, ovarian, and breast cancers but faces limitations like poor water solubility, drug resistance, and side effects.
- Developing advanced drug delivery systems is crucial to overcome PTX limitations and improve therapeutic outcomes.
Purpose of the Study:
- To construct a core-shell nano-system integrating diagnosis and treatment for intelligent responsive drug delivery of paclitaxel.
- To address PTX's poor water solubility and drug resistance while enabling targeted release in the tumor microenvironment.
Main Methods:
- Fabrication of a gold nanodots-paclitaxel-polylysine (AuNDs-PTX-PLL) core-shell nano-system.
- Utilizing multi-modal imaging (fluorescence, photoacoustic, computed tomography) for tumor tracking and diagnosis.
- Leveraging the weakly acidic tumor environment and photothermal effects for intelligent drug release.
Main Results:
- The AuNDs-PTX-PLL nano-system successfully addressed PTX's solubility and resistance issues.
- Intelligent drug release was achieved specifically in the tumor's weakly acidic environment, minimizing damage to healthy tissues.
- Multi-modal imaging capabilities provided accurate tumor visualization and real-time tracking.
Conclusions:
- The developed nano-system offers a promising integrated approach for tumor diagnosis and treatment.
- Intelligent drug delivery and multi-modal imaging capabilities enhance therapeutic efficacy and patient safety.
- This technology holds significant potential for clinical application in oncology.
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